{"group":{"id":1,"name":"Community","lockable":false,"created_at":"2012-01-18T18:02:15.000Z","updated_at":"2026-04-06T14:01:22.000Z","description":"Problems submitted by members of the MATLAB Central community.","is_default":true,"created_by":161519,"badge_id":null,"featured":false,"trending":false,"solution_count_in_trending_period":0,"trending_last_calculated":"2026-04-06T00:00:00.000Z","image_id":null,"published":true,"community_created":false,"status_id":2,"is_default_group_for_player":false,"deleted_by":null,"deleted_at":null,"restored_by":null,"restored_at":null,"description_opc":null,"description_html":null,"published_at":null},"problems":[{"id":1796,"title":"02 - Vector Variables 5","description":"_eVec_ = _Hello_ \r\n\r\n( _eVec_ is a string, which is a vector of characters )","description_html":"\u003cp\u003e\u003ci\u003eeVec\u003c/i\u003e = \u003ci\u003eHello\u003c/i\u003e\u003c/p\u003e\u003cp\u003e( \u003ci\u003eeVec\u003c/i\u003e is a string, which is a vector of characters )\u003c/p\u003e","function_template":"function eVec = VectorFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\neVec = 'Hello';\r\ne = VectorFunc();\r\nassert(isequal(e,eVec))\r\n","published":true,"deleted":false,"likes_count":3,"comments_count":1,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":645,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-13T13:40:44.000Z","updated_at":"2026-02-14T16:18:20.000Z","published_at":"2013-08-13T13:40:44.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003eeVec\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e =\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003eHello\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003e(\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003eeVec\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e is a string, which is a vector of characters )\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"}]}"},{"id":1806,"title":"04 - Scalar Equations 1","description":"Define the variable a:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_4-a.png\u003e\u003e\r\n \r\nUse this to calculate x:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_4a.png\u003e\u003e","description_html":"\u003cp\u003eDefine the variable a:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_4-a.png\"\u003e\u003cp\u003eUse this to calculate x:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_4a.png\"\u003e","function_template":"function [x a] = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\na=10;\r\nref = 1/(1+exp(-(a-15)/6));\r\nuser = MyFunc();\r\nassert(isequal(user,ref))\r\n\r\n%%\r\n[x a] = MyFunc();\r\nassert(a==10);","published":true,"deleted":false,"likes_count":6,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":578,"test_suite_updated_at":"2013-08-14T08:43:29.000Z","rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T08:30:55.000Z","updated_at":"2026-03-02T22:28:07.000Z","published_at":"2013-08-14T08:31:27.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/media/image2.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eDefine the variable a:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eUse this to calculate x:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId2\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"},{\"partUri\":\"/media/image1.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,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\"},{\"partUri\":\"/media/image2.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,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\"}]}"},{"id":1791,"title":"02 - Vector Variables 1","description":"Make the following variable:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_2a.png\u003e\u003e","description_html":"\u003cp\u003eMake the following variable:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_2a.png\"\u003e","function_template":"function aVec = VectorFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\naVec = [3.14 15 9 26];\r\na = VectorFunc();\r\nassert(isequal(a,aVec))\r\n","published":true,"deleted":false,"likes_count":2,"comments_count":1,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":721,"test_suite_updated_at":"2013-08-27T09:52:03.000Z","rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-13T13:23:08.000Z","updated_at":"2026-03-05T09:24:53.000Z","published_at":"2013-08-13T13:23:08.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eMake the following variable:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"},{\"partUri\":\"/media/image1.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,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\"}]}"},{"id":1801,"title":"03 - Matrix Variables 5","description":"Make the following variable:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3e.png\u003e\u003e\r\n","description_html":"\u003cp\u003eMake the following variable:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3e.png\"\u003e","function_template":"function eMat = MatrixFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\nref = [13 -1 5;-22 10 -87];\r\nuser = MatrixFunc();\r\nassert(isequal(user,ref))","published":true,"deleted":false,"likes_count":3,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":632,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-13T14:06:57.000Z","updated_at":"2026-02-09T13:43:25.000Z","published_at":"2013-08-13T14:06:57.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eMake the following variable:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"},{\"partUri\":\"/media/image1.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,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\"}]}"},{"id":1797,"title":"03 - Matrix Variables 1","description":"Make the following variable:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3a.png\u003e\u003e\r\n\r\nA 9x9 matrix full of 2's\r\n\r\n(Hint: use *ones* or *zeros*)\r\n","description_html":"\u003cp\u003eMake the following variable:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3a.png\"\u003e\u003cp\u003eA 9x9 matrix full of 2's\u003c/p\u003e\u003cp\u003e(Hint: use \u003cb\u003eones\u003c/b\u003e or \u003cb\u003ezeros\u003c/b\u003e)\u003c/p\u003e","function_template":"function aMat = MatrixFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\nref = ones(9,9)*2;\r\nuser = MatrixFunc();\r\nassert(isequal(user,ref))","published":true,"deleted":false,"likes_count":5,"comments_count":2,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":715,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-13T13:48:16.000Z","updated_at":"2026-02-24T03:00:51.000Z","published_at":"2013-08-13T13:48:16.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eMake the following variable:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eA 9x9 matrix full of 2's\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003e(Hint: use\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:b/\u003e\u003c/w:rPr\u003e\u003cw:t\u003eones\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e or\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:b/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ezeros\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e)\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"},{\"partUri\":\"/media/image1.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,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\"}]}"},{"id":1792,"title":"02 - Vector Variables 2","description":"Make the following variable:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_2b.png\u003e\u003e","description_html":"\u003cp\u003eMake the following variable:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_2b.png\"\u003e","function_template":"function bVec = VectorFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\nbVec = [2.71;8;28;182];\r\nb = VectorFunc();\r\nassert(isequal(b,bVec))","published":true,"deleted":false,"likes_count":2,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":719,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-13T13:30:23.000Z","updated_at":"2026-02-24T03:00:14.000Z","published_at":"2013-08-13T13:30:23.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eMake the following variable:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"},{\"partUri\":\"/media/image1.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,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\"}]}"},{"id":1790,"title":"01 - Scalar variables","description":"Create the following variables:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_1.png\u003e\u003e","description_html":"\u003cp\u003eCreate the following variables:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_1.png\"\u003e","function_template":"function [a b c] = ScalarVars()\r\n  \r\n  * Insert code here!\r\n\r\nend","test_suite":"%%\r\na = 10;\r\nb = 2.5*10^23;\r\nc = exp(2*pi/3);\r\n[au bu cu] = ScalarVars;\r\nassert(isequal(a,au));\r\nassert(isequal(b,bu));\r\nassert(isequal(c,cu));","published":true,"deleted":false,"likes_count":0,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":742,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-13T12:49:29.000Z","updated_at":"2026-02-24T02:52:41.000Z","published_at":"2013-08-13T12:49:29.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eCreate the following variables:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"},{\"partUri\":\"/media/image1.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,iVBORw0KGgoAAAANSUhEUgAAAIwAAABMCAIAAAAwSsjdAAAI0UlEQVR42u1cK5qzMBRlReyBFbABNBqLxSHjcCgUCoXCoGIwGAwCg4mIiImI6J8X5TmddtppO/1zxHwdSlvIyX3k3kOsk8HbwzJDYEgyMCQZkgwMSQb/IUl0yGJQj2z3ButhAeIoDKO0aKgh6UVgbQlsSyCGePNWFTn8uO2HoSdP8TNiSHoySF8Fih8J0KxIIm0iicmlfZHUFf+F1fhpJI1NHnie63pxDh/pKxijlE0vf/41feZbHugphcDdkcSq0FkeRFWkOKOfRBJpU2sBN2keETz6NHT1N9qOy+3AARsnRSkhdAN+5BKZbeLtSCKJ+B13doGoEqQ5CfkkktSdz3ASfK8B9aH8pihvMBlz6arssFpPjcaxDuFAcgtJtJVX7zXnT9FGHvFbakj6GnUsxt9LW/Vvl4rvD8thTeSYgzgGG/Aj+chuIqlRBluiDUkuJB9EEm7AiqMY3ufo1NT2u2msVeqVD+z+OzkgiSiS3J0lLWzrIxIH1pWJ69i27QSgvNOMVK5lh+XEySBdX9Cx3dyoDlBWl8b20N35hyS5nxWTHpwuS5LO2cdYSo68bBsgCLS+QH1TTNKJg5V2+mO0y+Qvpoakb0mSAQnXKjs4x6elWxz7Q4z0kiUJQpJ1SqDyci+ZQmDmywy8N4vZb0jiq/+sSKcc3IprdGe+iBHqm0JlOE6QdsOIMJlSkFKudO2sxaQvHOVd/1pp6MkVB5RN5YEggzD11evknjg+pXAruLNDw20+n+CEELHTyZD07agSvix9wW9y/D1+PqN29z/AkGRIMjAkGZIMDEkGhiRD0p0lAtGUpfT1i5bfvwaG+rYqywp283Kd4q6p+bG2x+9Kku5WfNPBuwl47KoiiyOBJKu+KPAxcVI+oSiS0LFscNMlDDCLU3hALO6LFAg5Upw2888rSUVQlKlzriPTlh9zozRPQvne8K6WRKC4eAegR3CeT3UmPwxd/fKwXUTAvt1rA3ytRbTAtw8/wkbZkrfsMNKXkrXqFFoCXZjEMNYdE9onoJQ0sswR4qY3JYkNxQP6h9McllIup9It21E2fi0/6/YkJfwtH1Q1dz8T6u4Kf0fqJFj2ptcTQCuQ8l6MPGkSpQ3YyJE6cVKMVqxDb9+S/jFJD1cLDbKNFEtnx+4OC31dFPWwGA7vixkgSHKS9vY51fncfKqeYekANg1DVWWfhTRjJK0p6+nyHFlEnk6hfawUgF5x5b0/Xy3EqpBfolc2daj9j1cNdBfSb1YLae8nnVJYjteTRDtxjzaHqM33Jyb6ueIfy1s1p466usp0XDDPCSXiAGeHK2NwUCw7WBQj1EHh7Y4s/naSHq8WmjySuLcoAYGUl0b1ejx/ohYS/Pe5Ck9HHSPl7pKqzNMkSbOiHeemeq1vU6mIONOynwvXTB+R1KbeZu6qEZs6mSi2ecagmNjOsBY4VwbFp5M0NWT1jRHoWDvd3Y/UQtwvqdCRtodMknTXd4rKfmOCXgJHCI5bkYckqfEJqs0RFzRTKArbEY1DE9puTYTV2vpmmZgKQfUAS3qwWkjkOfILz6mduvMHGChScoboQihmBGNlYqzNlfrPnQX8tDunB3565NW/JklRsjrC/aoIZkuInJMOhcxsXY/PTSdqySNi0mPVQhyNFB3ENZ48dnqk+71VLUQLmf0GeXf1hUjvJzQRZGHksXVBlXdEkhJN7N0duNhr5ukSuSVhenIKrnzOPApKKLJd092oFlIjxT3VPAjfq8u191uoi+Zgabkpvo4krdrw0mmS0cy74HL/RFlIlRvOEUitarkf2CV316uF2JArXdg5nSqDaZFIOp4kqGeSaJfZlrtI+pTkzzmbdBHIjIMgNcrePo9VYgo3pWv3vboF7eL8/qH1pqeSpGVvfLAGTMZGqlet6K4HUUh2rjIJn2yrNb8KEkQFVJlB6ddu1IyY4CELncWzSqQCnrwSNC99ONFTWsFj2Tj2Raz1SGnNUwE06SXUisKygxwzXMpbujKxflOSlF+y7YWopx4eYJp7sZC0Az0npIPiK/zQXSX2flygxVUpc2QnVsyPO+mMXyn6NlgEM5yH8wlB2jy8avtcd8eomoD0Vdodxn5JNiQlUIT8Tlnd9JP+AAxJhiQDQ5IhycCQZGBIMiS9OygeoBDkwAFftXBhQxmEuVydan1P3fTUkPSLdQ3ZiIvzQtZ6ztW5S6gjywprXXW1w1w94/Y2e3J8IEljlQBVdmOtc7Db0N6OOlc/AU8roB9oIzBaPiVvSPotKFlSLgQUaFleU2XYcxMIVeFOgIdFPS8o2F+xpN/aW0hJhR41DFIUuz4k1V6R6E8PZRwXMPO4S0NEyE5ciMj00yR1LH9uaNFSV7vd99l17RV7CzFUgIWSzQ5XuhEma5VboRD5ik7cVXqPNFnHLrXwiImukrvcCgBxe6npCfE3nEVPaCw2fFCMxr4RTNkx+hMk/Z5aKMwbjJpgJzdswLFSyI4P5geqVcco4GlcV4TnaSREPFNrkc1kRPxIFayEXeLnjtQgrEv4977J7jbPJklpHCbFEw/UQbzSpJ1GmO+FQiCOM7jrDSql0SQqVgoFFzQqFKXNgMahjDyVOAjhjiCDApFKDFg/Wj3w0JPMhkwS1y3kHjpIJHzum+wT9Vy1kO4uew+5+UmX01AywkLtHGnzId706ES6xnpfKyapTK7tBApPJiXa0cKn0UJ0bG0egvnfFL7L3oUv2FvIietL5wwNX4XuhEJlM2xcj5b7zIqpANT9Fe5pVjbT3LPcfatbNAbpW20m8IIdURxwKfuA8RdCoWhjxEru49cDwvhHg4qERLvGp/fHc0lqkqXPZAgmSUW2FZ0jpVDXj9sCj9rcKTjnzn0R+3F9PVmUR7+i+RPbbzyVJC2/4nGkqMosUknbTx2/Vmx7cVbXZew7Sjj/R/c8eauKA4NpsNTr3OVsEFzsY+wmVX/6ULziITJKfhhFDl0oecFWRaZ2Z2BIMiQZGJIMSQaGJANDkiHJwJBkYEgyJBkYkgw4/gEGZWErSWAwJQAAAABJRU5ErkJggg==\"}]}"},{"id":1800,"title":"03 - Matrix Variables 4","description":"Make the following variable:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3d.png\u003e\u003e\r\n\r\nA 3x4 NaN (Not a Number) matrix \r\n\r\n(Hint: use *nan*)","description_html":"\u003cp\u003eMake the following variable:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3d.png\"\u003e\u003cp\u003eA 3x4 NaN (Not a Number) matrix\u003c/p\u003e\u003cp\u003e(Hint: use \u003cb\u003enan\u003c/b\u003e)\u003c/p\u003e","function_template":"function dMat = MatrixFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\nrefSize = 12;\r\nuserAns = MatrixFunc();\r\nuser = sum(sum(isnan(userAns)));\r\nassert(isequal(refSize,user))","published":true,"deleted":false,"likes_count":3,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":644,"test_suite_updated_at":"2013-08-13T14:05:21.000Z","rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-13T14:01:32.000Z","updated_at":"2026-02-07T10:34:53.000Z","published_at":"2013-08-13T14:01:32.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eMake the following variable:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eA 3x4 NaN (Not a Number) matrix\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003e(Hint: use\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:b/\u003e\u003c/w:rPr\u003e\u003cw:t\u003enan\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e)\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"},{\"partUri\":\"/media/image1.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,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- Scalar Equations 2","description":"Define the variables a and b:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_4-a.png\u003e\u003e\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_4-b.png\u003e\u003e\r\n \r\nUse these to calculate y:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_4b.png\u003e\u003e\r\n\r\nHint: remember that:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_4b2.png\u003e\u003e","description_html":"\u003cp\u003eDefine the variables a and b:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_4-a.png\"\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_4-b.png\"\u003e\u003cp\u003eUse these to calculate y:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_4b.png\"\u003e\u003cp\u003eHint: remember that:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_4b2.png\"\u003e","function_template":"function [y a b] = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\na=10;\r\nb=2.5e23;\r\nref = (sqrt(a)+b^(1/21))^pi;\r\nuser = MyFunc();\r\nassert(isequal(user,ref))\r\n\r\n%%\r\n[y a b] = MyFunc();\r\nassert(a==10);\r\n\r\n\r\n%%\r\n[y a b] = MyFunc();\r\nassert(b==2.5e23);","published":true,"deleted":false,"likes_count":3,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":540,"test_suite_updated_at":"2013-08-14T08:44:04.000Z","rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T08:40:54.000Z","updated_at":"2026-02-10T14:06:46.000Z","published_at":"2013-08-14T08:42:07.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/media/image2.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId3\",\"target\":\"/media/image3.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId4\",\"target\":\"/media/image4.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eDefine the variables a and b:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId2\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eUse these to calculate y:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId3\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eHint: remember that:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId4\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"},{\"partUri\":\"/media/image1.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,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\"},{\"partUri\":\"/media/image2.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,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\"},{\"partUri\":\"/media/image3.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,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- Vector Variables 3","description":"Make the following variable:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_2c.png\u003e\u003e\r\n\r\n(all the numbers from 5 to -5 in increments of -0.2)","description_html":"\u003cp\u003eMake the following variable:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_2c.png\"\u003e\u003cp\u003e(all the numbers from 5 to -5 in increments of -0.2)\u003c/p\u003e","function_template":"function cVec = VectorFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\ncVec = 5:-.2:-5;\r\nc = 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- Common functions and indexing 2","description":"Define _eMat_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3e.png\u003e\u003e\r\n\r\nCalculate eMean as the mean across the rows of _eMat_. The answer should be a column vector.","description_html":"\u003cp\u003eDefine \u003ci\u003eeMat\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3e.png\"\u003e\u003cp\u003eCalculate eMean as the mean across the rows of \u003ci\u003eeMat\u003c/i\u003e. The answer should be a column vector.\u003c/p\u003e","function_template":"function [eMean eMat] = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\neMat = [13 -1 5;-22 10 -87];\r\nRef = mean(eMat,2);\r\nuser = MyFunc();\r\nassert(isequal(Ref,user))\r\n\r\n%%\r\nRef = [13 -1 5;-22 10 -87];\r\n[eMean Mat] = MyFunc();\r\nassert(isequal(Ref,Mat))","published":true,"deleted":false,"likes_count":3,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":423,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T10:38:19.000Z","updated_at":"2026-02-27T14:10:16.000Z","published_at":"2013-08-14T10:38:19.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eDefine\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003eeMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eCalculate eMean as the mean across the rows of\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003eeMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e. The answer should be a column vector.\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray 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- Matrix Equations 2","description":"Define the vectors _aVec_ and _bVec_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_2a.png\u003e\u003e\r\n\r\nand \r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_2b.png\u003e\u003e\r\n\r\nUsing matrix operations, calculate _yMat_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_6b.png\u003e\u003e","description_html":"\u003cp\u003eDefine the vectors \u003ci\u003eaVec\u003c/i\u003e and \u003ci\u003ebVec\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_2a.png\"\u003e\u003cp\u003eand\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_2b.png\"\u003e\u003cp\u003eUsing matrix operations, calculate \u003ci\u003eyMat\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_6b.png\"\u003e","function_template":"function [yMat aVec bVec] = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\naVec = [3.14 15 9 26];\r\nbVec = [2.71;8;28;182];\r\nref = bVec*aVec;\r\nuser = MyFunc();\r\nassert(isequal(user,ref))\r\n\r\n%%\r\naRef = [3.14 15 9 26];\r\n[xMat aVec] = MyFunc();\r\nassert(isequal(aRef,aVec))\r\n\r\n%%\r\nbRef = [2.71;8;28;182];\r\n[xMat aVec bVec] = MyFunc();\r\nassert(isequal(bRef,bVec))","published":true,"deleted":false,"likes_count":2,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":477,"test_suite_updated_at":"2013-08-27T11:15:54.000Z","rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T09:59:55.000Z","updated_at":"2026-03-15T14:42:30.000Z","published_at":"2013-08-14T09:59:55.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/media/image2.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId3\",\"target\":\"/media/image3.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml 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- Common functions and indexing 1","description":"Define _cMat_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3c.png\u003e\u003e\r\n\r\n( _cMat_ = 10x10 matrix where the numbers from 1 to 100 runs down the columns)\r\n\r\nCalculate _cSum_ as the column-wise sum of _cMat_. The answer should be a row vector","description_html":"\u003cp\u003eDefine \u003ci\u003ecMat\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3c.png\"\u003e\u003cp\u003e( \u003ci\u003ecMat\u003c/i\u003e = 10x10 matrix where the numbers from 1 to 100 runs down the columns)\u003c/p\u003e\u003cp\u003eCalculate \u003ci\u003ecSum\u003c/i\u003e as the column-wise sum of \u003ci\u003ecMat\u003c/i\u003e. The answer should be a row vector\u003c/p\u003e","function_template":"function [cSum cMat] = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\ncMat = reshape(1:100,10,10);\r\nRef = sum(cMat);\r\nuser = MyFunc();\r\nassert(isequal(Ref,user))\r\n\r\n%%\r\nRef = reshape(1:100,10,10);\r\n[cSum Mat] = MyFunc();\r\nassert(isequal(Ref,Mat))","published":true,"deleted":false,"likes_count":3,"comments_count":1,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":454,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T10:33:10.000Z","updated_at":"2026-02-24T11:06:33.000Z","published_at":"2013-08-14T10:33:10.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eDefine\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003e(\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e = 10x10 matrix where the numbers from 1 to 100 runs down the columns)\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eCalculate\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecSum\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e as the column-wise sum of\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e. The answer should be a row vector\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"},{\"partUri\":\"/media/image1.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,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\"}]}"},{"id":1821,"title":"07 - Common functions and indexing 6","description":"Create a variable _m_ as a magic square with the size 6 x 6 \r\n\r\nMagic squares are defined as square matrices, where the sum of all rows and columns are equal.\r\n\r\n(Hint: see *help magic*)\r\n\r\nReplace all the numbers above or equal to 20 with zero.","description_html":"\u003cp\u003eCreate a variable \u003ci\u003em\u003c/i\u003e as a magic square with the size 6 x 6\u003c/p\u003e\u003cp\u003eMagic squares are defined as square matrices, where the sum of all rows and columns are equal.\u003c/p\u003e\u003cp\u003e(Hint: see \u003cb\u003ehelp magic\u003c/b\u003e)\u003c/p\u003e\u003cp\u003eReplace all the numbers above or equal to 20 with zero.\u003c/p\u003e","function_template":"function m = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\nm = magic(6);\r\nm(m\u003e=20) = 0;\r\nuser = 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version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eCreate a variable\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003em\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e as a magic square with the size 6 x 6\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eMagic squares are defined as square matrices, where the sum of all rows and columns are equal.\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003e(Hint: see\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:b/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ehelp magic\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e)\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eReplace all the numbers above or equal to 20 with zero.\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"}]}"},{"id":1799,"title":"03 - Matrix Variables 3","description":"Make the following variable:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3c.png\u003e\u003e\r\n\r\nA 10x10 matrix where the numbers from 1 to 100 runs down the columns\r\n\r\n(Hint: use *reshape*)","description_html":"\u003cp\u003eMake the following variable:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3c.png\"\u003e\u003cp\u003eA 10x10 matrix where the numbers from 1 to 100 runs down the columns\u003c/p\u003e\u003cp\u003e(Hint: use \u003cb\u003ereshape\u003c/b\u003e)\u003c/p\u003e","function_template":"function cMat = MatrixFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\nref = reshape(1:100,10,10);\r\nuser = MatrixFunc();\r\nassert(isequal(user,ref))","published":true,"deleted":false,"likes_count":5,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":662,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-13T13:57:10.000Z","updated_at":"2026-02-18T10:14:54.000Z","published_at":"2013-08-13T13:57:10.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eMake the following variable:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eA 10x10 matrix where the numbers from 1 to 100 runs down the columns\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003e(Hint: use\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:b/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ereshape\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e)\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"},{\"partUri\":\"/media/image1.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,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\"}]}"},{"id":1798,"title":"03 - Matrix Variables 2","description":"Make the following variable:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3b.png\u003e\u003e\r\n\r\nA 9x9 matrix of zeros, but with the following values on the main diagonal:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3bx.png\u003e\u003e\r\n\r\n(Hint: use *diag*)","description_html":"\u003cp\u003eMake the following variable:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3b.png\"\u003e\u003cp\u003eA 9x9 matrix of zeros, but with the following values on the main diagonal:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3bx.png\"\u003e\u003cp\u003e(Hint: use \u003cb\u003ediag\u003c/b\u003e)\u003c/p\u003e","function_template":"function bMat = MatrixFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\ndVar = [1:5 4:-1:1];\r\nref = diag(dVar);\r\nuser = MatrixFunc();\r\nassert(isequal(user,ref))","published":true,"deleted":false,"likes_count":2,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":617,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-13T13:53:58.000Z","updated_at":"2026-02-18T14:11:53.000Z","published_at":"2013-08-13T13:53:58.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/media/image2.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eMake the following variable:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eA 9x9 matrix of zeros, but with the following values on the main 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- Scalar Equations 3","description":"Define the variables a, b, and c:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_4-a.png\u003e\u003e\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_4-b.png\u003e\u003e\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_4-c.png\u003e\u003e\r\n \r\nUse these to calculate z:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_4c.png\u003e\u003e","description_html":"\u003cp\u003eDefine the variables a, b, and c:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_4-a.png\"\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_4-b.png\"\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_4-c.png\"\u003e\u003cp\u003eUse these to calculate z:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_4c.png\"\u003e","function_template":"function [z a b c] = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\na=10;\r\nb=2.5e23;\r\nc=exp(2*pi/3);\r\nref = (log(c/b^a)*sin(a*pi/3))/abs(c-a);\r\nuser = MyFunc();\r\nassert(isequal(user,ref))\r\n\r\n%%\r\n[z a] = MyFunc();\r\nassert(a==10);\r\n\r\n%%\r\n[z a b] = MyFunc();\r\nassert(b==2.5e23);\r\n\r\n%%\r\n[z a b c] = MyFunc();\r\nassert(c==exp(2*pi/3));","published":true,"deleted":false,"likes_count":3,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":510,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T08:50:42.000Z","updated_at":"2026-03-04T15:40:25.000Z","published_at":"2013-08-14T08:50:42.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/media/image2.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId3\",\"target\":\"/media/image3.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId4\",\"target\":\"/media/image4.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eDefine the variables a, b, and c:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId2\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId3\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eUse these to calculate z:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId4\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray 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- Vector Variables 4","description":"Make the following variable:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_2d.png\u003e\u003e\r\n\r\n(Logarithmically spaced numbers between 1 and 10)\r\n\r\n(Hint: Use *logspace*, make sure you get the length right!)","description_html":"\u003cp\u003eMake the following variable:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_2d.png\"\u003e\u003cp\u003e(Logarithmically spaced numbers between 1 and 10)\u003c/p\u003e\u003cp\u003e(Hint: Use \u003cb\u003elogspace\u003c/b\u003e, make sure you get the length right!)\u003c/p\u003e","function_template":"function dVec = VectorFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\ndVec = logspace(0,1,101);\r\nd = VectorFunc();\r\nassert(isequal(d,dVec))","published":true,"deleted":false,"likes_count":3,"comments_count":2,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":565,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-13T13:37:50.000Z","updated_at":"2026-03-04T15:47:01.000Z","published_at":"2013-08-13T13:37:50.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eMake the following variable:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003e(Logarithmically spaced numbers between 1 and 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- Common functions and indexing 4","description":"Define the matrix _cMat_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3c.png\u003e\u003e\r\n\r\n( _cMat_ = 10x10 matrix where the numbers from 1 to 100 runs down the columns )\r\n\r\nCreate the variable cSub, defined as the submatrix of _cMat_ containing rows 2-9 and columns 2-9 of _cMat_","description_html":"\u003cp\u003eDefine the matrix \u003ci\u003ecMat\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3c.png\"\u003e\u003cp\u003e( \u003ci\u003ecMat\u003c/i\u003e = 10x10 matrix where the numbers from 1 to 100 runs down the columns )\u003c/p\u003e\u003cp\u003eCreate the variable cSub, defined as the submatrix of \u003ci\u003ecMat\u003c/i\u003e containing rows 2-9 and columns 2-9 of \u003ci\u003ecMat\u003c/i\u003e\u003c/p\u003e","function_template":"function [cSub cMat] = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\ncMat = reshape(1:100,10,10);\r\nRef = cMat(2:9,2:9);\r\nuser = MyFunc();\r\nassert(isequal(Ref,user))\r\n\r\n%%\r\nRef = reshape(1:100,10,10);\r\n[CSub Mat] = MyFunc();\r\nassert(isequal(Ref,Mat))","published":true,"deleted":false,"likes_count":2,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":423,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T10:47:29.000Z","updated_at":"2026-03-04T15:47:58.000Z","published_at":"2013-08-14T10:47:29.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eDefine the matrix\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003e(\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e = 10x10 matrix where the numbers from 1 to 100 runs down the columns )\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eCreate the variable cSub, defined as the submatrix of\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e containing rows 2-9 and columns 2-9 of\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecMat\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray 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MatrixFunc();\r\nassert(~all(user(:)==user(1)))\r\n","published":true,"deleted":false,"likes_count":3,"comments_count":1,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":610,"test_suite_updated_at":"2013-08-14T08:11:25.000Z","rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-13T14:23:26.000Z","updated_at":"2026-02-18T11:08:23.000Z","published_at":"2013-08-13T14:23:26.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml 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\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:b/\u003e\u003c/w:rPr\u003e\u003cw:t\u003erandi\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e)\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"}]}"},{"id":1811,"title":"05 - Vector Equations 3","description":"Define the vector _dVec_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_2d.png\u003e\u003e\r\n\r\n(Logarithmically spaced numbers between 1 and 10)\r\n\r\nUsing elementwise operations, calculate _zVec_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_5c.png\u003e\u003e","description_html":"\u003cp\u003eDefine the vector \u003ci\u003edVec\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_2d.png\"\u003e\u003cp\u003e(Logarithmically spaced numbers between 1 and 10)\u003c/p\u003e\u003cp\u003eUsing elementwise operations, calculate \u003ci\u003ezVec\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_5c.png\"\u003e","function_template":"function [zVec dVec] = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\ndVec = logspace(0,1,101);\r\nref = log10(1./dVec);\r\nuser = MyFunc();\r\nassert(isequal(user,ref))\r\n\r\n%%\r\ndRef = logspace(0,1,101);\r\n[zVec dVec] = MyFunc();\r\nassert(isequal(dRef,dVec))","published":true,"deleted":false,"likes_count":1,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":430,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T09:28:38.000Z","updated_at":"2026-03-05T11:45:29.000Z","published_at":"2013-08-14T09:28:38.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/media/image2.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml 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- Matrix Equations 1","description":"Define the vectors _aVec_ and _bVec_ and the matrix _aMat_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_2a.png\u003e\u003e\r\n\r\nand \r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_2b.png\u003e\u003e\r\n\r\nand \r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3a.png\u003e\u003e\r\n\r\n( _aMat_ = 9x9 matrix full of 2's )\r\n\r\nUsing matrix operations, calculate _xMat_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_6a.png\u003e\u003e","description_html":"\u003cp\u003eDefine the vectors \u003ci\u003eaVec\u003c/i\u003e and \u003ci\u003ebVec\u003c/i\u003e and the matrix \u003ci\u003eaMat\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_2a.png\"\u003e\u003cp\u003eand\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_2b.png\"\u003e\u003cp\u003eand\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3a.png\"\u003e\u003cp\u003e( \u003ci\u003eaMat\u003c/i\u003e = 9x9 matrix full of 2's )\u003c/p\u003e\u003cp\u003eUsing matrix operations, calculate \u003ci\u003exMat\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_6a.png\"\u003e","function_template":"function [xMat aVec bVec aMat] = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\naVec = [3.14 15 9 26];\r\nbVec = [2.71;8;28;182];\r\naMat = ones(9,9)*2;\r\nref = (aVec*bVec)*aMat^2;\r\nuser = MyFunc();\r\nassert(isequal(user,ref))\r\n\r\n%%\r\naRef = [3.14 15 9 26];\r\n[xMat aVec] = MyFunc();\r\nassert(isequal(aRef,aVec))\r\n\r\n%%\r\nbRef = [2.71;8;28;182];\r\n[xMat aVec bVec] = MyFunc();\r\nassert(isequal(bRef,bVec))\r\n\r\n%%\r\naRef = ones(9,9)*2;\r\n[xMat aVec bVec aMat] = MyFunc();\r\nassert(isequal(aRef,aMat))","published":true,"deleted":false,"likes_count":3,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":454,"test_suite_updated_at":"2013-08-27T11:19:21.000Z","rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T09:56:17.000Z","updated_at":"2026-03-05T14:04:09.000Z","published_at":"2013-08-14T09:56:17.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/media/image2.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId3\",\"target\":\"/media/image3.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId4\",\"target\":\"/media/image4.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml 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- Vector Equations 1","description":"Define the vector _cVec_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_2c.png\u003e\u003e\r\n\r\n(all the numbers from 5 to -5 in increments of -0.2)\r\n\r\nUsing elementwise operations, calculate _xVec_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_5a.png\u003e\u003e","description_html":"\u003cp\u003eDefine the vector \u003ci\u003ecVec\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_2c.png\"\u003e\u003cp\u003e(all the numbers from 5 to -5 in increments of -0.2)\u003c/p\u003e\u003cp\u003eUsing elementwise operations, calculate \u003ci\u003exVec\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_5a.png\"\u003e","function_template":"function [xVec cVec] = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\ncVec = 5:-.2:-5;\r\nref = (1/sqrt(2*pi*2.5^2))*exp((-1*cVec.^2)/(2*2.5^2));\r\nuser = MyFunc();\r\nassert(isequal(user,ref))\r\n\r\n%%\r\n[xVec cVec] = MyFunc();\r\ncRef = 5:-.2:-5;\r\nassert(isequal(cRef,cVec))","published":true,"deleted":false,"likes_count":2,"comments_count":1,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":491,"test_suite_updated_at":"2013-08-14T09:12:16.000Z","rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T09:06:01.000Z","updated_at":"2026-03-16T10:45:43.000Z","published_at":"2013-08-14T09:10:26.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/media/image2.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eDefine the vector\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecVec\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" 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- Common functions and indexing 5","description":"Create the vector _lin_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_7e.png\u003e\u003e\r\n\r\n(the integers from 1 to 20)\r\n\r\nMake every other value in it negative to get:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_7e2.png\u003e\u003e","description_html":"\u003cp\u003eCreate the vector \u003ci\u003elin\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_7e.png\"\u003e\u003cp\u003e(the integers from 1 to 20)\u003c/p\u003e\u003cp\u003eMake every other value in it negative to get:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_7e2.png\"\u003e","function_template":"function lin = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\nRef = 1:20;\r\nRef(2:2:20)=Ref(2:2:20)*-1;\r\nuser = MyFunc();\r\nassert(isequal(user,Ref))\r\n","published":true,"deleted":false,"likes_count":2,"comments_count":1,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":430,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T10:55:14.000Z","updated_at":"2026-03-06T14:24:31.000Z","published_at":"2013-08-14T10:55:14.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/media/image2.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml 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w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003e(the integers from 1 to 20)\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eMake every other value in it negative to get:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" 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- Vector Equations 2","description":"Define the vectors _aVec_ and _bVec_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_2a.png\u003e\u003e\r\n\r\nand \r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_2b.png\u003e\u003e\r\n\r\nUsing elementwise operations, calculate _yVec_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_5b.png\u003e\u003e","description_html":"\u003cp\u003eDefine the vectors \u003ci\u003eaVec\u003c/i\u003e and \u003ci\u003ebVec\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_2a.png\"\u003e\u003cp\u003eand\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_2b.png\"\u003e\u003cp\u003eUsing elementwise operations, calculate \u003ci\u003eyVec\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_5b.png\"\u003e","function_template":"function [yVec aVec bVec] = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\naVec = [3.14 15 9 26];\r\nbVec = [2.71;8;28;182];\r\nref = sqrt((aVec').^2+bVec.^2)\r\nuser = MyFunc();\r\nassert(isequal(user,ref))\r\n\r\n%%\r\naRef = [3.14 15 9 26];\r\n[yVec aVec] = MyFunc();\r\nassert(isequal(aRef,aVec))\r\n\r\n%%\r\nbRef = [2.71;8;28;182];\r\n[yVec aVec bVec] = MyFunc();\r\nassert(isequal(bRef,bVec))","published":true,"deleted":false,"likes_count":3,"comments_count":1,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":439,"test_suite_updated_at":"2013-08-29T11:56:18.000Z","rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T09:22:15.000Z","updated_at":"2026-03-16T11:05:08.000Z","published_at":"2013-08-14T09:22:15.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/media/image2.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId3\",\"target\":\"/media/image3.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml 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- Matrix Equations 3","description":"Define the matrices _aMat_, _bMat_, and _cMat_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3a.png\u003e\u003e\r\n\r\n( _aMat_ = 9x9 matrix full of 2's )\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3b.png\u003e\u003e\r\n\r\n( _bMat_ = 9x9 matrix of zeros, but with the following values on the main diagonal: )\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3bx.png\u003e\u003e\r\n\r\nand \r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3c.png\u003e\u003e\r\n\r\n( _cMat_ = 10x10 matrix where the numbers from 1 to 100 runs down the columns )\r\n\r\nUsing matrix operations, calculate _zMat_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_6c.png\u003e\u003e\r\n\r\nwhere l _*cMat*_ l is the determinant of _*cMat*_ (use *det*), and *_T_* indicates the transpose of the matrix","description_html":"\u003cp\u003eDefine the matrices \u003ci\u003eaMat\u003c/i\u003e, \u003ci\u003ebMat\u003c/i\u003e, and \u003ci\u003ecMat\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3a.png\"\u003e\u003cp\u003e( \u003ci\u003eaMat\u003c/i\u003e = 9x9 matrix full of 2's )\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3b.png\"\u003e\u003cp\u003e( \u003ci\u003ebMat\u003c/i\u003e = 9x9 matrix of zeros, but with the following values on the main diagonal: )\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3bx.png\"\u003e\u003cp\u003eand\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3c.png\"\u003e\u003cp\u003e( \u003ci\u003ecMat\u003c/i\u003e = 10x10 matrix where the numbers from 1 to 100 runs down the columns )\u003c/p\u003e\u003cp\u003eUsing matrix operations, calculate \u003ci\u003ezMat\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_6c.png\"\u003e\u003cp\u003ewhere l \u003ci\u003e\u003cb\u003ecMat\u003c/b\u003e\u003c/i\u003e l is the determinant of \u003ci\u003e\u003cb\u003ecMat\u003c/b\u003e\u003c/i\u003e (use \u003cb\u003edet\u003c/b\u003e), and \u003cb\u003e\u003ci\u003eT\u003c/i\u003e\u003c/b\u003e indicates the transpose of the matrix\u003c/p\u003e","function_template":"function [zMat aMat bMat cMat] = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\naMat = ones(9,9)*2;\r\nbMat = diag([1:5 4:-1:1]);\r\ncMat = reshape(1:100,10,10);\r\nzRef = det(cMat)*(aMat*bMat)'\r\nzMat = MyFunc();\r\nassert(isequal(zRef,zMat))\r\n\r\n%%\r\nRef = ones(9,9)*2;\r\n[zMat Mat] = MyFunc();\r\nassert(isequal(Ref,Mat))\r\n\r\n%%\r\nRef = diag([1:5 4:-1:1]);\r\n[zMat a Mat] = MyFunc();\r\nassert(isequal(Ref,Mat))\r\n\r\n%%\r\nRef = reshape(1:100,10,10);\r\n[zMat a b Mat] = MyFunc();\r\nassert(isequal(Ref,Mat))","published":true,"deleted":false,"likes_count":1,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":424,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T10:24:39.000Z","updated_at":"2026-03-20T16:58:40.000Z","published_at":"2013-08-14T10:24:38.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/media/image2.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId3\",\"target\":\"/media/image3.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId4\",\"target\":\"/media/image4.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId5\",\"target\":\"/media/image5.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml 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\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003e(\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003eaMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e = 9x9 matrix full of 2's )\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId2\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003e(\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ebMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e = 9x9 matrix of zeros, but with the following values on the main diagonal: )\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId3\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eand\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId4\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003e(\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e = 10x10 matrix where the numbers from 1 to 100 runs down the columns )\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eUsing matrix operations, calculate\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ezMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId5\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003ewhere l\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003e\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:b/\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e l is the determinant of\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003e\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:b/\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e (use\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:b/\u003e\u003c/w:rPr\u003e\u003cw:t\u003edet\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e), and\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:b/\u003e\u003c/w:rPr\u003e\u003cw:t\u003e\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:b/\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003eT\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e indicates the transpose of the matrix\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray 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- Vector Variables 5","description":"_eVec_ = _Hello_ \r\n\r\n( _eVec_ is a string, which is a vector of characters )","description_html":"\u003cp\u003e\u003ci\u003eeVec\u003c/i\u003e = \u003ci\u003eHello\u003c/i\u003e\u003c/p\u003e\u003cp\u003e( \u003ci\u003eeVec\u003c/i\u003e is a string, which is a vector of characters )\u003c/p\u003e","function_template":"function eVec = VectorFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\neVec = 'Hello';\r\ne = VectorFunc();\r\nassert(isequal(e,eVec))\r\n","published":true,"deleted":false,"likes_count":3,"comments_count":1,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":645,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-13T13:40:44.000Z","updated_at":"2026-02-14T16:18:20.000Z","published_at":"2013-08-13T13:40:44.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003eeVec\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e =\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003eHello\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003e(\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003eeVec\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e is a string, which is a vector of characters )\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"}]}"},{"id":1806,"title":"04 - Scalar Equations 1","description":"Define the variable a:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_4-a.png\u003e\u003e\r\n \r\nUse this to calculate x:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_4a.png\u003e\u003e","description_html":"\u003cp\u003eDefine the variable a:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_4-a.png\"\u003e\u003cp\u003eUse this to calculate x:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_4a.png\"\u003e","function_template":"function [x a] = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\na=10;\r\nref = 1/(1+exp(-(a-15)/6));\r\nuser = MyFunc();\r\nassert(isequal(user,ref))\r\n\r\n%%\r\n[x a] = MyFunc();\r\nassert(a==10);","published":true,"deleted":false,"likes_count":6,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":578,"test_suite_updated_at":"2013-08-14T08:43:29.000Z","rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T08:30:55.000Z","updated_at":"2026-03-02T22:28:07.000Z","published_at":"2013-08-14T08:31:27.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/media/image2.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eDefine the variable a:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eUse this to calculate x:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId2\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"},{\"partUri\":\"/media/image1.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,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\"},{\"partUri\":\"/media/image2.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,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\"}]}"},{"id":1791,"title":"02 - Vector Variables 1","description":"Make the following variable:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_2a.png\u003e\u003e","description_html":"\u003cp\u003eMake the following variable:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_2a.png\"\u003e","function_template":"function aVec = VectorFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\naVec = [3.14 15 9 26];\r\na = VectorFunc();\r\nassert(isequal(a,aVec))\r\n","published":true,"deleted":false,"likes_count":2,"comments_count":1,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":721,"test_suite_updated_at":"2013-08-27T09:52:03.000Z","rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-13T13:23:08.000Z","updated_at":"2026-03-05T09:24:53.000Z","published_at":"2013-08-13T13:23:08.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eMake the following variable:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"},{\"partUri\":\"/media/image1.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,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\"}]}"},{"id":1801,"title":"03 - Matrix Variables 5","description":"Make the following variable:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3e.png\u003e\u003e\r\n","description_html":"\u003cp\u003eMake the following variable:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3e.png\"\u003e","function_template":"function eMat = MatrixFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\nref = [13 -1 5;-22 10 -87];\r\nuser = MatrixFunc();\r\nassert(isequal(user,ref))","published":true,"deleted":false,"likes_count":3,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":632,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-13T14:06:57.000Z","updated_at":"2026-02-09T13:43:25.000Z","published_at":"2013-08-13T14:06:57.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eMake the following variable:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"},{\"partUri\":\"/media/image1.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,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\"}]}"},{"id":1797,"title":"03 - Matrix Variables 1","description":"Make the following variable:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3a.png\u003e\u003e\r\n\r\nA 9x9 matrix full of 2's\r\n\r\n(Hint: use *ones* or *zeros*)\r\n","description_html":"\u003cp\u003eMake the following variable:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3a.png\"\u003e\u003cp\u003eA 9x9 matrix full of 2's\u003c/p\u003e\u003cp\u003e(Hint: use \u003cb\u003eones\u003c/b\u003e or \u003cb\u003ezeros\u003c/b\u003e)\u003c/p\u003e","function_template":"function aMat = MatrixFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\nref = ones(9,9)*2;\r\nuser = MatrixFunc();\r\nassert(isequal(user,ref))","published":true,"deleted":false,"likes_count":5,"comments_count":2,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":715,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-13T13:48:16.000Z","updated_at":"2026-02-24T03:00:51.000Z","published_at":"2013-08-13T13:48:16.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eMake the following variable:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eA 9x9 matrix full of 2's\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003e(Hint: use\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:b/\u003e\u003c/w:rPr\u003e\u003cw:t\u003eones\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e or\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:b/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ezeros\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e)\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"},{\"partUri\":\"/media/image1.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,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\"}]}"},{"id":1792,"title":"02 - Vector Variables 2","description":"Make the following variable:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_2b.png\u003e\u003e","description_html":"\u003cp\u003eMake the following variable:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_2b.png\"\u003e","function_template":"function bVec = VectorFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\nbVec = [2.71;8;28;182];\r\nb = VectorFunc();\r\nassert(isequal(b,bVec))","published":true,"deleted":false,"likes_count":2,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":719,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-13T13:30:23.000Z","updated_at":"2026-02-24T03:00:14.000Z","published_at":"2013-08-13T13:30:23.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eMake the following variable:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"},{\"partUri\":\"/media/image1.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,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\"}]}"},{"id":1790,"title":"01 - Scalar variables","description":"Create the following variables:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_1.png\u003e\u003e","description_html":"\u003cp\u003eCreate the following variables:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_1.png\"\u003e","function_template":"function [a b c] = ScalarVars()\r\n  \r\n  * Insert code here!\r\n\r\nend","test_suite":"%%\r\na = 10;\r\nb = 2.5*10^23;\r\nc = exp(2*pi/3);\r\n[au bu cu] = ScalarVars;\r\nassert(isequal(a,au));\r\nassert(isequal(b,bu));\r\nassert(isequal(c,cu));","published":true,"deleted":false,"likes_count":0,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":742,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-13T12:49:29.000Z","updated_at":"2026-02-24T02:52:41.000Z","published_at":"2013-08-13T12:49:29.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eCreate the following variables:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"},{\"partUri\":\"/media/image1.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,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\"}]}"},{"id":1800,"title":"03 - Matrix Variables 4","description":"Make the following variable:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3d.png\u003e\u003e\r\n\r\nA 3x4 NaN (Not a Number) matrix \r\n\r\n(Hint: use *nan*)","description_html":"\u003cp\u003eMake the following variable:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3d.png\"\u003e\u003cp\u003eA 3x4 NaN (Not a Number) matrix\u003c/p\u003e\u003cp\u003e(Hint: use \u003cb\u003enan\u003c/b\u003e)\u003c/p\u003e","function_template":"function dMat = MatrixFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\nrefSize = 12;\r\nuserAns = MatrixFunc();\r\nuser = sum(sum(isnan(userAns)));\r\nassert(isequal(refSize,user))","published":true,"deleted":false,"likes_count":3,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":644,"test_suite_updated_at":"2013-08-13T14:05:21.000Z","rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-13T14:01:32.000Z","updated_at":"2026-02-07T10:34:53.000Z","published_at":"2013-08-13T14:01:32.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eMake the following variable:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eA 3x4 NaN (Not a Number) matrix\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003e(Hint: use\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:b/\u003e\u003c/w:rPr\u003e\u003cw:t\u003enan\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e)\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"},{\"partUri\":\"/media/image1.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,iVBORw0KGgoAAAANSUhEUgAAAUcAAABrCAIAAABrMtfFAAAPOElEQVR42u2de1wU5RrHZ1dchSQQRdEjiIIKGlIaaBZeKi8d9ejRNBU/iVqJJ0Ur7XhCz1GoFEv5IGHlpYgSFe83AswrgiReUEzipijInUUEZIHd4czO7GUWWJxxp3XB3/evDH12mHl+7/s+zzv7/ogGAEDbgsAtAACqBgBA1QAAqBoAAFUDAKBqAKBqAABUDQCAqgWl8KSfhYhoRJ/XggtIPHfQ6iiP9HNtnM2EpU/wzWdO1aN9o+uRD6BtUnsp7J9QNQBQ9TOgalKRuWPZBAerdgQhHjQ+LF+u/VFV9sHl3iNtzah1jvnAUetulMsbjBWKG7JrB1Z49bOhgnawnnw4vYZ9JT/6z325l4VyidZz3LZzxUYMxYmq7KgF413p+shu8bc3SfaVHFw7zctRTBAisb13wJlq0nihuGBKCQNVt4TizqEFHUSESPRi6Hmp7o/S/vd6t6FvR5QpOH6mgKE4Uffg0GRbKm/NJ356pq7xI5/Y0Wb2ybxa44fiRsE2H2cqbbv2//SPRzo3pTo7bIjEYeXP2eRTCGXkp2xIKKi6JR7FB48TK3sP7cf4HmeP6PLquDm9ndcdzuf8mQKG4sTDW8GDOyrnKSuHxck6I3pppJ/biPmHqsinEIrbpHfjM6+u1MeJRAPWRxeyf3L/5LLu3RZclMqNH8roT9mQUFB1CzlBZqyf1P/vc6b0FosazUjSywF9LWeeKuJamwsYimNldXXnNOfRMye7WhKEPXtGIuW/L3V3XPFzztMIxYnquztes3l1ziw3av2pOyNVxQS88uL0nyvIpxDKyE/ZsFBQdQv3pmTPhC7Df0i+tHZsd4Kwnh98Q50D1ac3jBo0cadUJyfIqqJrB8LDQkK2Hor/82rsD99sP1Usf7JQhpMbOrvfjIDziWGTqeLMeVTwffWVVNzY4GIxJSZPZymtqC28eOynLSEh3++Kz74V+11I+KW7sicLZTDy9D1z7d0DUtK+8XhO3E4ybt+fNeqJ99onno5+O7MaVf53U07sCA3ZEhp55U7q4e3f7D6VQz5hKIOHUlNJGKhaf2GTc2KxvcvqjLq61IhZEoLo6b7mT7o2o8dRp/nBqawbW5VybJVH7+GfBB9KTjkdOPtlu24S1q3nFUqQovr42/ae25Ie1uRHjOksFrcb9v3Fcu3EOzI4XztrkRXZh94f5Tp+weaYpCvRoe+69OxsJtFqlU8oQSgKX+Q2ZXWCnLy9aboDQXSatia+TjPxdh67L13GGowyf1rxxgDPhdsPJ16O3zLZ3aGz2JalVR6hBCmqTSZhoGq9VBz19xzle4J68vUVMd7O5prajBlHw69WaZ7Qlcj37TsMXn8ij1T3kAjCYkZAMsk7lDCUJvo72PlerqTyoCTSbzCrNmMmXs2FkQ+ydk0d0OXNxUcrFJoekqiHe8Dter6hBFJG/YVFLq7ro4uo/7wXt7y7WFPMqyZezYUpatNDfQZ3678kqahO3UOyFYm0N5N7KIEwnYSBqvUVNjpFI3WXh6lrM804qkqegkufu1lIRi44WKGatWQXgseKRINDz5fzDCUU7KKRLE5cranNNBMv8/fqKxOWvWpr5fB+gkoYDZVpwW4SyVufnpXzDCUU7KJRIYtf5Pa8uphXTbzqlUF5dMAYM1H/dYdzSVUhevMzry7Wjitv1fINJVBRbUIJA1Xrb/y6W2kXopWZYerarIi6y2OXxTHJo5Bd9POw0anZlGuknhLLufHq/irHUIL2kPtqFqKk4pamNitJ9O/juCylismmil8DRop1ajblotpM1Ms/Ko9nKCF7yC9oF6KyJHUxn1tDTbwvbvqtlLmQkuTAARIRu8inFtWvWoo95kSpG/IcQwm56WAyCQNVN0/9zYiZf2Mt0kh1bTb1s81LPFzV+wryzEMLLUVizzl7Nd1U5hmwaiSOoQRDVhAx2oq9SFPVZj3cPw5e46XZiKotOfiPHpKONnPPqbupjGjZRTXHUMJxZ9O0vuxVvaaY/3zryoHdNRtR97f59CMIB/+oe5pfmhKtGcEuqjmGEgqTShioWm8P2Vl3kaaqzdo9Z2ml3VdgXnKw0+7ukPnhvm66NRLHUEL2kHvoLtKY2oy6KktLe/Wlql5yYO3u1Gcd/5C6KlZRzTGUsD3kIbqreqaYF1tadnpJfanMWzHtLbS3TlZybKaTObuo5hhK0E0H00kYqFpvD9mFbrSwbq2qNiNYwyrdoSH6rI9mlnP1OWf+008iomuk0rwrCVkP5ZxDCdhDdmUaLbqNHKo2I1jzMNOhIbzU96G27OTCIdYE0Z4qqh+VpSRcl3IOJWQPuXt3pjOnrSeYYp5gzcNMS6+j1aKrNfS9I4v2rRwupgoDx5V/yIqTzqbWkFxDCbrpYDoJA1U394z+2DPvefGb+zMa7XwwtZkVa1+BGlYdqXSa+0XiI/mDlOPrvN9b86+xdpJO74Qf27jgw93Fcu6hhKGmYPdbdjZNnyizzHPSbkQp52FqLe008suMh7WlWUc/mrU48N9jqaJ6ediuNfNWnroj4xxKoHYAmRM6x7np92GZukBspt2Ioubh8V2oOnNM+GVpXWX6L2t8lq//eHgn8dDZIXuCFgfuzVRwDiWUqE0sYaDqJuzbsJD+0oLt+PlrI7WvNKhqs9dt2HUmWXZ9s2dXM/obrbYTF0fmyTLWT7SjFlSveYfnPsrhE0qABWxa3FezRjqKCXEfD5+vvte+0qCuzZzYdaZCdsX/zV70lYv7eC49mV5+bedUasbr4uQTnV7GK5ThVOfGrl442taMkFgPWxqwnfUOjKqY192Iqji9eVIn+hvyEuvhAXtvPby3Y4QFVTO7roq4VcEvlOG9ybumlzBQdRNK7mVnqcjOlzZqNz5IOhFfrNNnIauKUn+Lib1wLZ8OSD7MvXzy9PUyGamcVPiFMjTBHklz1R+XdfueVPcXVBTd+E03xZWvlCWfiY1TXS31x9yEuLNpBTVPEMrQxXetNEfzeVm5FbU6I0Z9ZWrMmRzdQUR29/q5mBjmapXDQmbyaeYR8A9lcDfA5BIGqgagrQFVAwBVtwEyvvawGxRYg6cP2iaVe7wdX5p+BHM1AJiroWoAoGqoGgCoGqoGAKqGqgGAqgGAqqFqAKBqqBoAqBqqBgCqhqoBgKqhagBVQ9UAQNVQNQCtU9WKWmnW9YTj+8M3fREUfbMKqgag1au6Ovfs1o3vDTIXqc98VNxPDJv39jD6FBfxkOkRzR2epjmhxtxpyOwfzxeboKrhXy10KE7Av7rBRPyrladGP69zPB1tPmBFfbKDZ1Bu488lS1M2DrZo1jnV1OZq+FcLHIob8K9ueOr+1fRplSJz9gnGFTc2DDBT6lZ7vKsaxgWGOQSP3zHxZHHcD0fu1RtT1fCvFjgUt0kP/tUNT92/mnq0L7Bdgqigv4dN6tqnr5246anR0iP+Xu4TpgxXriHseBwTTxYfDRznPkmY07PhXw3/avhXN0N9ZcbRn7aGhGyPTj74gYsF2yWINkMZMO+LddSyTSwaGXlTU4wp8hP+O7D3vIhfllKCbyeZePQ2+5xKfXa+8tKs2HXzXrYQmY9ftj8zu7CGNJKq4V/9BKEMBv7VhifMk6halnXmSy9HN9+gqPMXDnw4uhu1SmAPe8wF7Uw65tOnA8umgBoIzvkOfcE/KvXXgFeof9J7WBBrOa3XzrcyK2LG6KH2ys6BlcuQEWMmfH5T17FN96TY5mgyEMC/Gv7V8K/W+QepBxbZd3D135tJxy2P9HMldCwFNBekNB/Rup+QBbv8PEd47y6rv06XOuw6/DF2vkzv7bnGBivaBYljO/rEdz2wDZn4qBr+1bxCCaQM+FcLkDD8VM04D1i84r1bqtJXSfii/iIR26asfP+KocoLIpn2YyfvoBSyoT479mNnB5+z92uZhrlINFBtNfp4O1+m9yZgFQT/anbnEv7VwhTVrdS/uhnrXXoWZd9K+v840QbIFftXuDP+bNUl0XMHDfKPukOq7Z0sbFXtRw52vkrjTzNBHc/gX82kC/yrhd10aI3+1Yz1LruEZgZvMds2kdVBUbkuur61NniJxwjV9K5smLPqcC52vkrDMfbKqvFY85fU1fCv5hFKOOBf3WBk/2rGzk974xgTQ90NKuWelroNptpGp989Uq691aWOBUF08f02jf4VHm/nS+/OSWz1rzr+mroa/tUN8K/muenQKv2rG1vvUqVy7/YiemivYax36bWEg+aCis+ttBETIlFfeu2trZBZd//xdr6lif496OXAw7JLsQmFxlmBw78a/tX8Nx1apX+1ynr33aDLdaTSenfWu+8Mtxbbuqw6fXn7kqW7i+X0WqJT73WHC1l3X8JqrVWe2vCGWOeFs8fa+Sp35wii1yfbj21YtCr+fq1RVA3/avhX8xN16/WvVhQkB3morHet31gQcVcaQ62NGevdPJksLW7jNA87arB38fpgS9S1Gmogqjox04VZeyuKrh9Y+9FUZ+W2MyES953hF0jb87Zk55un9P5Utdy6OPn8ml5phG6ZSdoRc13Awr8a/tVPsLMlL81Oio2JPZ+cQ8+19QVp8acSMh/R2x5sx+OcQlVHplyq6qfUVxVm67aw1Pa8Ldj5MiHSTmltio3QA6+FfzX8q/l1A+BfbQrg+9WgTQNVAwBVQ9UAQNVQNQBQNVQNAFQNVQMAVUPVAKqGqgGAqqFqAKBqqBoAqBqqBgCqpsj42sNuUGANnj5om1Tu8XZ8afoRzNUAYK6GqgGAqqFqAKBqqBoAqBqqBgCq1gf8q4UOxQn4VzeYiH91q4Pzzh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- Scalar Equations 2","description":"Define the variables a and b:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_4-a.png\u003e\u003e\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_4-b.png\u003e\u003e\r\n \r\nUse these to calculate y:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_4b.png\u003e\u003e\r\n\r\nHint: remember that:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_4b2.png\u003e\u003e","description_html":"\u003cp\u003eDefine the variables a and b:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_4-a.png\"\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_4-b.png\"\u003e\u003cp\u003eUse these to calculate y:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_4b.png\"\u003e\u003cp\u003eHint: remember that:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_4b2.png\"\u003e","function_template":"function [y a b] = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\na=10;\r\nb=2.5e23;\r\nref = (sqrt(a)+b^(1/21))^pi;\r\nuser = MyFunc();\r\nassert(isequal(user,ref))\r\n\r\n%%\r\n[y a b] = MyFunc();\r\nassert(a==10);\r\n\r\n\r\n%%\r\n[y a b] = MyFunc();\r\nassert(b==2.5e23);","published":true,"deleted":false,"likes_count":3,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":540,"test_suite_updated_at":"2013-08-14T08:44:04.000Z","rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T08:40:54.000Z","updated_at":"2026-02-10T14:06:46.000Z","published_at":"2013-08-14T08:42:07.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/media/image2.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId3\",\"target\":\"/media/image3.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId4\",\"target\":\"/media/image4.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eDefine the variables a and b:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId2\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eUse these to calculate y:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId3\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eHint: remember that:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId4\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"},{\"partUri\":\"/media/image1.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,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\"},{\"partUri\":\"/media/image2.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,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\"},{\"partUri\":\"/media/image3.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,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- Vector Variables 3","description":"Make the following variable:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_2c.png\u003e\u003e\r\n\r\n(all the numbers from 5 to -5 in increments of -0.2)","description_html":"\u003cp\u003eMake the following variable:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_2c.png\"\u003e\u003cp\u003e(all the numbers from 5 to -5 in increments of -0.2)\u003c/p\u003e","function_template":"function cVec = VectorFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\ncVec = 5:-.2:-5;\r\nc = 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- Common functions and indexing 2","description":"Define _eMat_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3e.png\u003e\u003e\r\n\r\nCalculate eMean as the mean across the rows of _eMat_. The answer should be a column vector.","description_html":"\u003cp\u003eDefine \u003ci\u003eeMat\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3e.png\"\u003e\u003cp\u003eCalculate eMean as the mean across the rows of \u003ci\u003eeMat\u003c/i\u003e. The answer should be a column vector.\u003c/p\u003e","function_template":"function [eMean eMat] = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\neMat = [13 -1 5;-22 10 -87];\r\nRef = mean(eMat,2);\r\nuser = MyFunc();\r\nassert(isequal(Ref,user))\r\n\r\n%%\r\nRef = [13 -1 5;-22 10 -87];\r\n[eMean Mat] = MyFunc();\r\nassert(isequal(Ref,Mat))","published":true,"deleted":false,"likes_count":3,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":423,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T10:38:19.000Z","updated_at":"2026-02-27T14:10:16.000Z","published_at":"2013-08-14T10:38:19.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eDefine\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003eeMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eCalculate eMean as the mean across the rows of\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003eeMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e. The answer should be a column vector.\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray 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- Matrix Equations 2","description":"Define the vectors _aVec_ and _bVec_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_2a.png\u003e\u003e\r\n\r\nand \r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_2b.png\u003e\u003e\r\n\r\nUsing matrix operations, calculate _yMat_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_6b.png\u003e\u003e","description_html":"\u003cp\u003eDefine the vectors \u003ci\u003eaVec\u003c/i\u003e and \u003ci\u003ebVec\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_2a.png\"\u003e\u003cp\u003eand\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_2b.png\"\u003e\u003cp\u003eUsing matrix operations, calculate \u003ci\u003eyMat\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_6b.png\"\u003e","function_template":"function [yMat aVec bVec] = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\naVec = [3.14 15 9 26];\r\nbVec = [2.71;8;28;182];\r\nref = bVec*aVec;\r\nuser = MyFunc();\r\nassert(isequal(user,ref))\r\n\r\n%%\r\naRef = [3.14 15 9 26];\r\n[xMat aVec] = MyFunc();\r\nassert(isequal(aRef,aVec))\r\n\r\n%%\r\nbRef = [2.71;8;28;182];\r\n[xMat aVec bVec] = MyFunc();\r\nassert(isequal(bRef,bVec))","published":true,"deleted":false,"likes_count":2,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":477,"test_suite_updated_at":"2013-08-27T11:15:54.000Z","rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T09:59:55.000Z","updated_at":"2026-03-15T14:42:30.000Z","published_at":"2013-08-14T09:59:55.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/media/image2.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId3\",\"target\":\"/media/image3.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml 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- Common functions and indexing 1","description":"Define _cMat_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3c.png\u003e\u003e\r\n\r\n( _cMat_ = 10x10 matrix where the numbers from 1 to 100 runs down the columns)\r\n\r\nCalculate _cSum_ as the column-wise sum of _cMat_. The answer should be a row vector","description_html":"\u003cp\u003eDefine \u003ci\u003ecMat\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3c.png\"\u003e\u003cp\u003e( \u003ci\u003ecMat\u003c/i\u003e = 10x10 matrix where the numbers from 1 to 100 runs down the columns)\u003c/p\u003e\u003cp\u003eCalculate \u003ci\u003ecSum\u003c/i\u003e as the column-wise sum of \u003ci\u003ecMat\u003c/i\u003e. The answer should be a row vector\u003c/p\u003e","function_template":"function [cSum cMat] = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\ncMat = reshape(1:100,10,10);\r\nRef = sum(cMat);\r\nuser = MyFunc();\r\nassert(isequal(Ref,user))\r\n\r\n%%\r\nRef = reshape(1:100,10,10);\r\n[cSum Mat] = MyFunc();\r\nassert(isequal(Ref,Mat))","published":true,"deleted":false,"likes_count":3,"comments_count":1,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":454,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T10:33:10.000Z","updated_at":"2026-02-24T11:06:33.000Z","published_at":"2013-08-14T10:33:10.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eDefine\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003e(\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e = 10x10 matrix where the numbers from 1 to 100 runs down the columns)\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eCalculate\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecSum\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e as the column-wise sum of\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e. The answer should be a row vector\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"},{\"partUri\":\"/media/image1.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,iVBORw0KGgoAAAANSUhEUgAAAPQAAACFCAIAAADjM0LNAAAN2UlEQVR42u2de1xUZRrHh+NIKxexyJTNKygq5D11W0jcVrykri22WuCWsa2iyChpUksuYRlariMhy2aRlolEJGoFCB8vpJioaVjmh4FJEkKugzqADHNxz4XBMzNnhplhZmCG3+8/zgzn8rzf88zzPu/7Pi/vHgQ5qHgwAQS4IQhwQxDghiDADUGAG4J6A9xKWX6oF5+nKYKYnSlqRavbsxrTBON42nJfIfypd8Ed5h1x6a4KODi6ZOeT/wq4DavlSt5HiYlvzPcdvnF/ufVuTCrO250o3LjUb9KS/bdV3XYbtldb44UP31z6KEF52gHeS3Znlyot8+yAuxM15W59edPObS8EDeLxBluPqsaLO/6+OmFrZJAzj8cFt41uoxvIlpxeP2vojCXCqw1yEuLi7JipHmM27b+mtMCzA24jEd/yhA2oklzcMqKPkx7PbbvbsKGoJ+rrsvR4jbzDSX+XvMjVlX3E7GcH3IC7+6RSFEVN9Bg49g1RGwvJuvS5nq6L3yhUAm7Abcc9PopjggtuQscIgBtw2z/cnO4ccANuu1NF0vMjnJym7Dl3xzDxgBtw25/uiJKnexDeARsKSpvvsdKCCEsAtwNIUXnhEzrNR8pzUcSurAObRvTphw4l4HY8Uc+oFagAbsBtJkk8npabNP6gtaIU7mEswA247Vf0aOVgvsvcjGvNlnh2wA24e4ak4sPhQYP4LkH/K6y10LMDbqNUkyaYbH2qFOV50VyJAhvfhu07lBk74qgMiXfA2qyiWss1AeA2ymezZRW2GJ/Nvowm4ja6jW7pPvJdAjbtTPwkp1Rp4SYA3JDDCnBDgBtwQ4C7p0sufW+Us1/WLcDt8JKmh42YvOQIPDcEzw24IcANuCHADbghwA24IcANuCHADQFuwA0BbsANAW7ADQFuwA0BbsANAW7AzZaNlv0C7h4Kt1Scl0BXFiYhmLFk8xG966C6JJVCnJWSuCNu6TB33QKn1KeHkiKn9ieYCtbvfVYkdZR3s9Pi3F2wP+DuhOwDC33d2Cuc9KzN7iLZRTGhUULhGhJfzXq+zKeipOX+muusPMOFxQ7gazstzt01+wNuQ6pJEwQuXptZRcGmqLywe/5oNx7PwALeriIeNdFDB25q1fDEwI5qY0VvLaNA130H7DQoMlicu4v2B9wGbFP3RaTgKDsAYJbx6tRotCrcFSlRsefr5Vpf46rJZGfqtDh3l+0PuA3FJN+eLW3WxJ2zAKkV4Saj7fx8rTCUozKqXXb3OivO3WX7A27T28O2YYmuKLgdICwxpTi3efYH3Ca2xzxPa7lMU+AeZc3knc3yg8YX5zbP/oDbtFYPXrb5pJXScEbCTcadUwLjfmyQO0BbGF2c2zz7A25TWmLOHGGl1aAyBm6V4mr8089aPBfZfTKyOLd59gfcxqlNcjp2zbtW9ZdGwF2fvTV6T2HtPYeVvuLc5tkfcBuFnShlfUyuyLr+sjO4Wy6l/yv+s2tKx0VbX3Fuc+0PuDtXzcFXVmpFAk3lZdVyW8KtKM+LjdqlMSqpUlSJrztMfGKgOLfZ9gfcnYgjEiCbIT7uS4tnA/XDrag4tzM6XqsjRd7Y1pM1csdoFP3Fubtif8BtSC2XDoYzc3psUD64TZIdNtZdF27d+RVcNY7tt0NpoDh3F+0PuPVLt2Y2I4sPoDA+m/MSuh91U31uayS/OynO3WX7A27IYQW4IcBtJDm/nU16bsHkh/nkrwcxPfRzrqDw9omdC92oX5t+I8eH7CmoBdyQ3XjujjBxZKDwpjZCypvn3x7vQqE9YPi6H5q6IWkLuAG3+XDfvrJtDJ/C93ceq7QYkksLIqY+yPQKgtflyUw4q/zG2fS8q02AG+pGuGVFyQsfHuk9mNDt1UqOxD45Ye78ydRawCGxGZXGk/1r4dvTB4fkVrYBbsgGcCvqxYXp+5ITE/ccOiFquY/K9f+E+IW/8+ZcT4IgZmeKWjugqir8t9/wF/emrnrQiSObo5TVfX9s//uJSXszv/+t/NRHu/ed/7WVdvaiQ0krJ3jyH/YVnCy5cVumAtyQFeFWykpSNwQ/NuMfH2R8/dXnr09x9Vqd8hMDCz3j9g8ffXco1IsMTUYmZNcz/9Jal73c3z8248qR2GlkUOIzU1h1P95W3RYfjpw3/k9h274qOP3l9lB/70f4zotJP61Slux66c8TfMhIhnhk5OTAwGc/0Z5SI6u7IS4zpOv1TQrADbiNglvWUBD91FDfoO1ltLuuzheQ/cMxwSm11F/K8m9WD6Vmml+Le2rg/YEG1c0Dgul/DDvYIL+8YfoAHs/lb1suqOFS3So78MwYz9mrj96mcW8WJ09xdvKauOWXds/OzBQbnZBdY6Dzql/agx2AG3Bzw61SVeyNmNTXeebei7fUrJQd/nDvmVIp/Vdj5sapQRHftKqoRRY8njt9arn42Cujhq049ZusqSz58X5O7DmNcmnhuoCBHsP+WVjTxuqP3h8JUymp98HZfflpiQLZEsh6cCtv5K0fRPDGL0pt4Eri0X7Uh+4pNqYJxpFu88mI7Ob2gOS66p6iJH25M4/nOijiopT5/9s5W2YSvAEvCa+oWZNdSg3hs/x0681PZ/Un/BekSixEI+AG3Jxw1+xbRSI7UJBaxnky0umOdVlM5zTI8y4g4Z4YsiXhRf8nwg5KKJhv7lkxijw4LTSjScXEy4f+4uXM7lyqlD+/GTyIdYR+H5zcw7Zf0gMjYm7IMnBTkTS7m6h1rqLkheqeYruTJjXQd+05OuRQtJx4ydeF9W4or2eFP+DEnt0mL/s6kvxlYHU369MEjxkoY2BGzI1NVnuNTNtklQNupezmLxVNdDguSlg4rCNWZjqaRJ8JCd9UMhwxk7wIfvAXJa3qF2sBE7rI72dUPJipZ3cbfigslijlZ1aNdaHCmDvVp74+d8cSQMJzw3Nzwt10fNssgtdvzrpjd2m/2VR9Mn7lazklVG9SWpo8zW14/OFq5qt00sO1IweiDq/Zw5bt3t1n5nvlrfL6sqPRz61+KyaY7+S1ZufHrz637vj1Vmaw8/HnP8j57/p3ssotwiPgBtzc2RJZw7ebnvYmeB6TZj//cticx2cK8imyZdfy3g2ZNpjH6zv2yZXvZ1wm0W+7lRUyMYoOSJQ1xemvr543pC81Jk/09QvbuD3nsoTirPX72NlD6OCBGDk9Kr+k8XLqM+QL4OmzgnlhagtefYgg3f+41z792VITqAE34Obph6OuuDA/Nzf3eGGpemBS1SKp6OjBlVe3dxebmtonj8ibqsV6OnlKWfWFk8fyThQ3tNJ5clnF2fzvKu6ou4AqyQ+n8s5crrLg0gCzFgh3T3k+61+3h9bnttCDYz43BM8NuCHADbghwA24IcANuCHADbghwI1UoCF1f34QqUB4bghwA27ADbghwA24IcANuCHADbghwA24IcBtUbh7WZ6bUzZNfiPPbaawhrLXyLQ1lAhLIIQlgBsC3IAbAtyAGwLcgBsC3Gh8wA24IcANuCHADbghwA24IcANuCHADbgBN+CGADfghgA34IYAN+CGALd14FYpxFkpiTvilg5z197Am/k04+1ljxLUXhDeAWuzimoteGNScV5CZBC9S1a/GUs2H9E+ecuVYwnzR7uRH/NdAv69r0hqn6+nYQtLxdmblvrRm214LopIvdog74IRsBJHw+5FMaFRQuGaqf0J3d3pVQpR0nJ/74ANBaXNpJUvHQwf0scvIbvKQmQfWOjrxt6Fje8yN+Nac0ejkpcb6haQcLRU2f7lAU9FHLU7vg1bmH6u3y9em1klb7f2Q96R5+vl5hqh963E6XSZGbOAT8f0ivK86CF92Kv6qGWFA6m9wLt+UzVpgkCmUckLVV7YzTinjk0M2yTZYWMHsNcvUlvD8XvC2kozEeeyMGmEyWx70l97qOOpTTcC4DbW9NSG31oo05sPau9zaU5sWPdFpEDDAzHbGqovR2379oDmalnmJllbeNo93LK69LmerpoLkCn3of6aGUbAGkoTTE9o2ZHzoFkxybdnS5s1cafOrIabeq84XzbdX3a7hZvZKlrLU7APmmEEdCiNg5t2pdqFDZhvWigyuacLN/Pa6LkK5dV6RtUHi8DN/TgdZleYYwTAbYJf4YbbGu6ThHueZ3ubaXpxjXbV3fzbbuGmfLAeuJ3Il7zWHCMA7p4IN9lmwcs2n2SicMANuB0H7jui5DlzhJVyzvgbcANuG8Jt2Zi7TXI6ds27PzbI9XQuHTXmNgA3Zfa75hgBcJufqLJYtoR1aVHK+phcUbPmYY4spIWyJZwVAI0/aOFsyQPamGpnS0w0AuA2Dm6r5rnVqjn4ykrWqCTNVHlZtRx5bvPy3IDbWLipEcphbuwhccrcXhaLSeqzt0bvKazVClHi474kW44enHs0XFis5EqnOAbczAjl6Fn3Oxu0QxmlOUJpkhEAN0fUSxrRnevHjrK+em4JNUj+tO8kC80toWZNMPOxNNXxs0C9Wh3TKtoai95aNsEe55YYtjCDr3oaQn3+7jAfH/bcElONALh1PAobLq0GUCnEh5Iip/Yn6FmBER/nlFqkWDWTE9BFW/PqLVeOJb0QNIiZEBezK6fK/oYmO7cwa2qk56KIXWdKtbofJhkBcEMOK8ANAW7ADQFuwA0BbsANAW7ADQFuY+EO9eJrJd0IYnamqBU42LMa0wTjdLKp7r0LbggC3BDghiDADUGAG4IANwSZpf8Dx2crTksEskUAAAAASUVORK5CYII=\"}]}"},{"id":1821,"title":"07 - Common functions and indexing 6","description":"Create a variable _m_ as a magic square with the size 6 x 6 \r\n\r\nMagic squares are defined as square matrices, where the sum of all rows and columns are equal.\r\n\r\n(Hint: see *help magic*)\r\n\r\nReplace all the numbers above or equal to 20 with zero.","description_html":"\u003cp\u003eCreate a variable \u003ci\u003em\u003c/i\u003e as a magic square with the size 6 x 6\u003c/p\u003e\u003cp\u003eMagic squares are defined as square matrices, where the sum of all rows and columns are equal.\u003c/p\u003e\u003cp\u003e(Hint: see \u003cb\u003ehelp magic\u003c/b\u003e)\u003c/p\u003e\u003cp\u003eReplace all the numbers above or equal to 20 with zero.\u003c/p\u003e","function_template":"function m = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\nm = magic(6);\r\nm(m\u003e=20) = 0;\r\nuser = 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version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eCreate a variable\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003em\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e as a magic square with the size 6 x 6\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eMagic squares are defined as square matrices, where the sum of all rows and columns are equal.\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003e(Hint: see\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:b/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ehelp magic\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e)\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eReplace all the numbers above or equal to 20 with zero.\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"}]}"},{"id":1799,"title":"03 - Matrix Variables 3","description":"Make the following variable:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3c.png\u003e\u003e\r\n\r\nA 10x10 matrix where the numbers from 1 to 100 runs down the columns\r\n\r\n(Hint: use *reshape*)","description_html":"\u003cp\u003eMake the following variable:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3c.png\"\u003e\u003cp\u003eA 10x10 matrix where the numbers from 1 to 100 runs down the columns\u003c/p\u003e\u003cp\u003e(Hint: use \u003cb\u003ereshape\u003c/b\u003e)\u003c/p\u003e","function_template":"function cMat = MatrixFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\nref = reshape(1:100,10,10);\r\nuser = MatrixFunc();\r\nassert(isequal(user,ref))","published":true,"deleted":false,"likes_count":5,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":662,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-13T13:57:10.000Z","updated_at":"2026-02-18T10:14:54.000Z","published_at":"2013-08-13T13:57:10.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eMake the following variable:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eA 10x10 matrix where the numbers from 1 to 100 runs down the columns\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003e(Hint: use\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:b/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ereshape\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e)\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"},{\"partUri\":\"/media/image1.png\",\"contentType\":\"image/png\",\"content\":\"data:image/png;base64,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\"}]}"},{"id":1798,"title":"03 - Matrix Variables 2","description":"Make the following variable:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3b.png\u003e\u003e\r\n\r\nA 9x9 matrix of zeros, but with the following values on the main diagonal:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3bx.png\u003e\u003e\r\n\r\n(Hint: use *diag*)","description_html":"\u003cp\u003eMake the following variable:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3b.png\"\u003e\u003cp\u003eA 9x9 matrix of zeros, but with the following values on the main diagonal:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3bx.png\"\u003e\u003cp\u003e(Hint: use \u003cb\u003ediag\u003c/b\u003e)\u003c/p\u003e","function_template":"function bMat = MatrixFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\ndVar = [1:5 4:-1:1];\r\nref = diag(dVar);\r\nuser = MatrixFunc();\r\nassert(isequal(user,ref))","published":true,"deleted":false,"likes_count":2,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":617,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-13T13:53:58.000Z","updated_at":"2026-02-18T14:11:53.000Z","published_at":"2013-08-13T13:53:58.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/media/image2.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eMake the following variable:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eA 9x9 matrix of zeros, but with the following values on the main 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- Scalar Equations 3","description":"Define the variables a, b, and c:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_4-a.png\u003e\u003e\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_4-b.png\u003e\u003e\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_4-c.png\u003e\u003e\r\n \r\nUse these to calculate z:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_4c.png\u003e\u003e","description_html":"\u003cp\u003eDefine the variables a, b, and c:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_4-a.png\"\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_4-b.png\"\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_4-c.png\"\u003e\u003cp\u003eUse these to calculate z:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_4c.png\"\u003e","function_template":"function [z a b c] = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\na=10;\r\nb=2.5e23;\r\nc=exp(2*pi/3);\r\nref = (log(c/b^a)*sin(a*pi/3))/abs(c-a);\r\nuser = MyFunc();\r\nassert(isequal(user,ref))\r\n\r\n%%\r\n[z a] = MyFunc();\r\nassert(a==10);\r\n\r\n%%\r\n[z a b] = MyFunc();\r\nassert(b==2.5e23);\r\n\r\n%%\r\n[z a b c] = MyFunc();\r\nassert(c==exp(2*pi/3));","published":true,"deleted":false,"likes_count":3,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":510,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T08:50:42.000Z","updated_at":"2026-03-04T15:40:25.000Z","published_at":"2013-08-14T08:50:42.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/media/image2.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId3\",\"target\":\"/media/image3.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId4\",\"target\":\"/media/image4.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eDefine the variables a, b, and c:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId2\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId3\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eUse these to calculate z:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId4\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray 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- Vector Variables 4","description":"Make the following variable:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_2d.png\u003e\u003e\r\n\r\n(Logarithmically spaced numbers between 1 and 10)\r\n\r\n(Hint: Use *logspace*, make sure you get the length right!)","description_html":"\u003cp\u003eMake the following variable:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_2d.png\"\u003e\u003cp\u003e(Logarithmically spaced numbers between 1 and 10)\u003c/p\u003e\u003cp\u003e(Hint: Use \u003cb\u003elogspace\u003c/b\u003e, make sure you get the length right!)\u003c/p\u003e","function_template":"function dVec = VectorFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\ndVec = logspace(0,1,101);\r\nd = VectorFunc();\r\nassert(isequal(d,dVec))","published":true,"deleted":false,"likes_count":3,"comments_count":2,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":565,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-13T13:37:50.000Z","updated_at":"2026-03-04T15:47:01.000Z","published_at":"2013-08-13T13:37:50.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eMake the following variable:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003e(Logarithmically spaced numbers between 1 and 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- Common functions and indexing 4","description":"Define the matrix _cMat_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3c.png\u003e\u003e\r\n\r\n( _cMat_ = 10x10 matrix where the numbers from 1 to 100 runs down the columns )\r\n\r\nCreate the variable cSub, defined as the submatrix of _cMat_ containing rows 2-9 and columns 2-9 of _cMat_","description_html":"\u003cp\u003eDefine the matrix \u003ci\u003ecMat\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3c.png\"\u003e\u003cp\u003e( \u003ci\u003ecMat\u003c/i\u003e = 10x10 matrix where the numbers from 1 to 100 runs down the columns )\u003c/p\u003e\u003cp\u003eCreate the variable cSub, defined as the submatrix of \u003ci\u003ecMat\u003c/i\u003e containing rows 2-9 and columns 2-9 of \u003ci\u003ecMat\u003c/i\u003e\u003c/p\u003e","function_template":"function [cSub cMat] = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\ncMat = reshape(1:100,10,10);\r\nRef = cMat(2:9,2:9);\r\nuser = MyFunc();\r\nassert(isequal(Ref,user))\r\n\r\n%%\r\nRef = reshape(1:100,10,10);\r\n[CSub Mat] = MyFunc();\r\nassert(isequal(Ref,Mat))","published":true,"deleted":false,"likes_count":2,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":423,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T10:47:29.000Z","updated_at":"2026-03-04T15:47:58.000Z","published_at":"2013-08-14T10:47:29.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eDefine the matrix\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003e(\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e = 10x10 matrix where the numbers from 1 to 100 runs down the columns )\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eCreate the variable cSub, defined as the submatrix of\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e containing rows 2-9 and columns 2-9 of\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecMat\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray 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MatrixFunc();\r\nassert(~all(user(:)==user(1)))\r\n","published":true,"deleted":false,"likes_count":3,"comments_count":1,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":610,"test_suite_updated_at":"2013-08-14T08:11:25.000Z","rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-13T14:23:26.000Z","updated_at":"2026-02-18T11:08:23.000Z","published_at":"2013-08-13T14:23:26.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml 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\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:b/\u003e\u003c/w:rPr\u003e\u003cw:t\u003erandi\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e)\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray type=\\\"array\\\"/\u003e\u003c/embeddedOutputs\u003e\"}]}"},{"id":1811,"title":"05 - Vector Equations 3","description":"Define the vector _dVec_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_2d.png\u003e\u003e\r\n\r\n(Logarithmically spaced numbers between 1 and 10)\r\n\r\nUsing elementwise operations, calculate _zVec_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_5c.png\u003e\u003e","description_html":"\u003cp\u003eDefine the vector \u003ci\u003edVec\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_2d.png\"\u003e\u003cp\u003e(Logarithmically spaced numbers between 1 and 10)\u003c/p\u003e\u003cp\u003eUsing elementwise operations, calculate \u003ci\u003ezVec\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_5c.png\"\u003e","function_template":"function [zVec dVec] = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\ndVec = logspace(0,1,101);\r\nref = log10(1./dVec);\r\nuser = MyFunc();\r\nassert(isequal(user,ref))\r\n\r\n%%\r\ndRef = logspace(0,1,101);\r\n[zVec dVec] = MyFunc();\r\nassert(isequal(dRef,dVec))","published":true,"deleted":false,"likes_count":1,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":430,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T09:28:38.000Z","updated_at":"2026-03-05T11:45:29.000Z","published_at":"2013-08-14T09:28:38.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/media/image2.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml 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- Matrix Equations 1","description":"Define the vectors _aVec_ and _bVec_ and the matrix _aMat_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_2a.png\u003e\u003e\r\n\r\nand \r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_2b.png\u003e\u003e\r\n\r\nand \r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3a.png\u003e\u003e\r\n\r\n( _aMat_ = 9x9 matrix full of 2's )\r\n\r\nUsing matrix operations, calculate _xMat_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_6a.png\u003e\u003e","description_html":"\u003cp\u003eDefine the vectors \u003ci\u003eaVec\u003c/i\u003e and \u003ci\u003ebVec\u003c/i\u003e and the matrix \u003ci\u003eaMat\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_2a.png\"\u003e\u003cp\u003eand\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_2b.png\"\u003e\u003cp\u003eand\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3a.png\"\u003e\u003cp\u003e( \u003ci\u003eaMat\u003c/i\u003e = 9x9 matrix full of 2's )\u003c/p\u003e\u003cp\u003eUsing matrix operations, calculate \u003ci\u003exMat\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_6a.png\"\u003e","function_template":"function [xMat aVec bVec aMat] = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\naVec = [3.14 15 9 26];\r\nbVec = [2.71;8;28;182];\r\naMat = ones(9,9)*2;\r\nref = (aVec*bVec)*aMat^2;\r\nuser = MyFunc();\r\nassert(isequal(user,ref))\r\n\r\n%%\r\naRef = [3.14 15 9 26];\r\n[xMat aVec] = MyFunc();\r\nassert(isequal(aRef,aVec))\r\n\r\n%%\r\nbRef = [2.71;8;28;182];\r\n[xMat aVec bVec] = MyFunc();\r\nassert(isequal(bRef,bVec))\r\n\r\n%%\r\naRef = ones(9,9)*2;\r\n[xMat aVec bVec aMat] = MyFunc();\r\nassert(isequal(aRef,aMat))","published":true,"deleted":false,"likes_count":3,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":454,"test_suite_updated_at":"2013-08-27T11:19:21.000Z","rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T09:56:17.000Z","updated_at":"2026-03-05T14:04:09.000Z","published_at":"2013-08-14T09:56:17.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/media/image2.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId3\",\"target\":\"/media/image3.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId4\",\"target\":\"/media/image4.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml 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- Vector Equations 1","description":"Define the vector _cVec_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_2c.png\u003e\u003e\r\n\r\n(all the numbers from 5 to -5 in increments of -0.2)\r\n\r\nUsing elementwise operations, calculate _xVec_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_5a.png\u003e\u003e","description_html":"\u003cp\u003eDefine the vector \u003ci\u003ecVec\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_2c.png\"\u003e\u003cp\u003e(all the numbers from 5 to -5 in increments of -0.2)\u003c/p\u003e\u003cp\u003eUsing elementwise operations, calculate \u003ci\u003exVec\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_5a.png\"\u003e","function_template":"function [xVec cVec] = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\ncVec = 5:-.2:-5;\r\nref = (1/sqrt(2*pi*2.5^2))*exp((-1*cVec.^2)/(2*2.5^2));\r\nuser = MyFunc();\r\nassert(isequal(user,ref))\r\n\r\n%%\r\n[xVec cVec] = MyFunc();\r\ncRef = 5:-.2:-5;\r\nassert(isequal(cRef,cVec))","published":true,"deleted":false,"likes_count":2,"comments_count":1,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":491,"test_suite_updated_at":"2013-08-14T09:12:16.000Z","rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T09:06:01.000Z","updated_at":"2026-03-16T10:45:43.000Z","published_at":"2013-08-14T09:10:26.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/media/image2.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\"?\u003e\\n\u003cw:document xmlns:w=\\\"http://schemas.openxmlformats.org/wordprocessingml/2006/main\\\"\u003e\u003cw:body\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eDefine the vector\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecVec\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" 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- Common functions and indexing 5","description":"Create the vector _lin_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_7e.png\u003e\u003e\r\n\r\n(the integers from 1 to 20)\r\n\r\nMake every other value in it negative to get:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_7e2.png\u003e\u003e","description_html":"\u003cp\u003eCreate the vector \u003ci\u003elin\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_7e.png\"\u003e\u003cp\u003e(the integers from 1 to 20)\u003c/p\u003e\u003cp\u003eMake every other value in it negative to get:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_7e2.png\"\u003e","function_template":"function lin = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\nRef = 1:20;\r\nRef(2:2:20)=Ref(2:2:20)*-1;\r\nuser = MyFunc();\r\nassert(isequal(user,Ref))\r\n","published":true,"deleted":false,"likes_count":2,"comments_count":1,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":430,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T10:55:14.000Z","updated_at":"2026-03-06T14:24:31.000Z","published_at":"2013-08-14T10:55:14.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/media/image2.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml 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w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003e(the integers from 1 to 20)\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eMake every other value in it negative to get:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" 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- Vector Equations 2","description":"Define the vectors _aVec_ and _bVec_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_2a.png\u003e\u003e\r\n\r\nand \r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_2b.png\u003e\u003e\r\n\r\nUsing elementwise operations, calculate _yVec_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_5b.png\u003e\u003e","description_html":"\u003cp\u003eDefine the vectors \u003ci\u003eaVec\u003c/i\u003e and \u003ci\u003ebVec\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_2a.png\"\u003e\u003cp\u003eand\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_2b.png\"\u003e\u003cp\u003eUsing elementwise operations, calculate \u003ci\u003eyVec\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_5b.png\"\u003e","function_template":"function [yVec aVec bVec] = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\naVec = [3.14 15 9 26];\r\nbVec = [2.71;8;28;182];\r\nref = sqrt((aVec').^2+bVec.^2)\r\nuser = MyFunc();\r\nassert(isequal(user,ref))\r\n\r\n%%\r\naRef = [3.14 15 9 26];\r\n[yVec aVec] = MyFunc();\r\nassert(isequal(aRef,aVec))\r\n\r\n%%\r\nbRef = [2.71;8;28;182];\r\n[yVec aVec bVec] = MyFunc();\r\nassert(isequal(bRef,bVec))","published":true,"deleted":false,"likes_count":3,"comments_count":1,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":439,"test_suite_updated_at":"2013-08-29T11:56:18.000Z","rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T09:22:15.000Z","updated_at":"2026-03-16T11:05:08.000Z","published_at":"2013-08-14T09:22:15.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/media/image2.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId3\",\"target\":\"/media/image3.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml 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- Matrix Equations 3","description":"Define the matrices _aMat_, _bMat_, and _cMat_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3a.png\u003e\u003e\r\n\r\n( _aMat_ = 9x9 matrix full of 2's )\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3b.png\u003e\u003e\r\n\r\n( _bMat_ = 9x9 matrix of zeros, but with the following values on the main diagonal: )\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3bx.png\u003e\u003e\r\n\r\nand \r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_3c.png\u003e\u003e\r\n\r\n( _cMat_ = 10x10 matrix where the numbers from 1 to 100 runs down the columns )\r\n\r\nUsing matrix operations, calculate _zMat_:\r\n\r\n\u003c\u003chttp://samle.dk/STTBDP/Assignment1_6c.png\u003e\u003e\r\n\r\nwhere l _*cMat*_ l is the determinant of _*cMat*_ (use *det*), and *_T_* indicates the transpose of the matrix","description_html":"\u003cp\u003eDefine the matrices \u003ci\u003eaMat\u003c/i\u003e, \u003ci\u003ebMat\u003c/i\u003e, and \u003ci\u003ecMat\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3a.png\"\u003e\u003cp\u003e( \u003ci\u003eaMat\u003c/i\u003e = 9x9 matrix full of 2's )\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3b.png\"\u003e\u003cp\u003e( \u003ci\u003ebMat\u003c/i\u003e = 9x9 matrix of zeros, but with the following values on the main diagonal: )\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3bx.png\"\u003e\u003cp\u003eand\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_3c.png\"\u003e\u003cp\u003e( \u003ci\u003ecMat\u003c/i\u003e = 10x10 matrix where the numbers from 1 to 100 runs down the columns )\u003c/p\u003e\u003cp\u003eUsing matrix operations, calculate \u003ci\u003ezMat\u003c/i\u003e:\u003c/p\u003e\u003cimg src = \"http://samle.dk/STTBDP/Assignment1_6c.png\"\u003e\u003cp\u003ewhere l \u003ci\u003e\u003cb\u003ecMat\u003c/b\u003e\u003c/i\u003e l is the determinant of \u003ci\u003e\u003cb\u003ecMat\u003c/b\u003e\u003c/i\u003e (use \u003cb\u003edet\u003c/b\u003e), and \u003cb\u003e\u003ci\u003eT\u003c/i\u003e\u003c/b\u003e indicates the transpose of the matrix\u003c/p\u003e","function_template":"function [zMat aMat bMat cMat] = MyFunc()\r\n  *Insert code here\r\nend","test_suite":"%%\r\naMat = ones(9,9)*2;\r\nbMat = diag([1:5 4:-1:1]);\r\ncMat = reshape(1:100,10,10);\r\nzRef = det(cMat)*(aMat*bMat)'\r\nzMat = MyFunc();\r\nassert(isequal(zRef,zMat))\r\n\r\n%%\r\nRef = ones(9,9)*2;\r\n[zMat Mat] = MyFunc();\r\nassert(isequal(Ref,Mat))\r\n\r\n%%\r\nRef = diag([1:5 4:-1:1]);\r\n[zMat a Mat] = MyFunc();\r\nassert(isequal(Ref,Mat))\r\n\r\n%%\r\nRef = reshape(1:100,10,10);\r\n[zMat a b Mat] = MyFunc();\r\nassert(isequal(Ref,Mat))","published":true,"deleted":false,"likes_count":1,"comments_count":0,"created_by":15468,"edited_by":null,"edited_at":null,"deleted_by":null,"deleted_at":null,"solvers_count":424,"test_suite_updated_at":null,"rescore_all_solutions":false,"group_id":1,"created_at":"2013-08-14T10:24:39.000Z","updated_at":"2026-03-20T16:58:40.000Z","published_at":"2013-08-14T10:24:38.000Z","restored_at":null,"restored_by":null,"spam":false,"simulink":false,"admin_reviewed":false,"description_opc":"{\"relationships\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/document\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/matlab/document.xml\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/output\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/matlab/output.xml\"}],\"parts\":[{\"partUri\":\"/matlab/document.xml\",\"relationship\":[{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId1\",\"target\":\"/media/image1.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId2\",\"target\":\"/media/image2.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId3\",\"target\":\"/media/image3.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId4\",\"target\":\"/media/image4.png\"},{\"relationshipType\":\"http://schemas.mathworks.com/matlab/code/2013/relationships/image\",\"targetMode\":\"\",\"relationshipId\":\"rId5\",\"target\":\"/media/image5.png\"}],\"contentType\":\"application/vnd.mathworks.matlab.code.document+xml\",\"content\":\"\u003c?xml 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\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId1\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003e(\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003eaMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e = 9x9 matrix full of 2's )\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId2\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003e(\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ebMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e = 9x9 matrix of zeros, but with the following values on the main diagonal: )\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId3\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eand\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId4\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003e(\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e = 10x10 matrix where the numbers from 1 to 100 runs down the columns )\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003eUsing matrix operations, calculate\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ezMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e:\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:customXml w:element=\\\"image\\\"\u003e\u003cw:customXmlPr\u003e\u003cw:attr w:name=\\\"height\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"width\\\" w:val=\\\"-1\\\"/\u003e\u003cw:attr w:name=\\\"relationshipId\\\" w:val=\\\"rId5\\\"/\u003e\u003c/w:customXmlPr\u003e\u003c/w:customXml\u003e\u003c/w:p\u003e\u003cw:p\u003e\u003cw:pPr\u003e\u003cw:pStyle w:val=\\\"text\\\"/\u003e\u003c/w:pPr\u003e\u003cw:r\u003e\u003cw:t\u003ewhere l\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003e\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:b/\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e l is the determinant of\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003e\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:b/\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003ecMat\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e (use\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:b/\u003e\u003c/w:rPr\u003e\u003cw:t\u003edet\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e), and\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e \u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:b/\u003e\u003c/w:rPr\u003e\u003cw:t\u003e\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:rPr\u003e\u003cw:b/\u003e\u003cw:i/\u003e\u003c/w:rPr\u003e\u003cw:t\u003eT\u003c/w:t\u003e\u003c/w:r\u003e\u003cw:r\u003e\u003cw:t\u003e indicates the transpose of the matrix\u003c/w:t\u003e\u003c/w:r\u003e\u003c/w:p\u003e\u003c/w:body\u003e\u003c/w:document\u003e\"},{\"partUri\":\"/matlab/output.xml\",\"contentType\":\"text/xml\",\"content\":\"\u003c?xml version=\\\"1.0\\\" encoding=\\\"UTF-8\\\" standalone=\\\"no\\\" ?\u003e\u003cembeddedOutputs\u003e\u003cmetaData\u003e\u003cevaluationState\u003emanual\u003c/evaluationState\u003e\u003clayoutState\u003ecode\u003c/layoutState\u003e\u003coutputStatus\u003eready\u003c/outputStatus\u003e\u003c/metaData\u003e\u003coutputArray type=\\\"array\\\"/\u003e\u003cregionArray 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