I need to plot a sine wave
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    Francis Arthur-Worsop
 on 17 Nov 2016
  
    
    
    
    
    Answered: Aishwarya Gobade
 on 13 Jan 2023
            I need to plot a sine wave with a frequency of 15 amplitude of 4 time of 0:0.1:1 how do i go about this, thanks :-)
3 Comments
  Subhranil Barman
 on 13 Jan 2021
				Write a MATHLAB code to generate a CT step signal with peak Amplitude of 5 Volts and should be plotted on the time scale from 0 to 1000.
  Rik
      
      
 on 13 Jan 2021
				That comment sounds like a homework question. You can find guidelines for posting homework on this forum here. If you have trouble with Matlab basics you may consider doing the Onramp tutorial (which is provided for free by Mathworks). You may also consider re-reading the material you teacher provided and ask them for further clarification.
Accepted Answer
  Geoff Hayes
      
      
 on 17 Nov 2016
         t = 0:0.01:1;
 f = 15;
 a = 4;
 y = a*sin(2*pi*f*t);
 plot(t,y);
Though ten samples (your t) may not be enough to accurately represent the sine wave (that you are attempting), so try
 Fs = 1000; 
 t = linspace(0,1-1/Fs,Fs);
 f = 15;
 a = 4;
 y = a*sin(2*pi*f*t);
 plot(t,y);
More Answers (4)
  Junyoung Ahn
      
 on 16 Jun 2020
        clear;
clc;
close;
f=15; %frequency [Hz]
t=(0:1/(f*100):1);
a=4;    %amplitude [V]
phi=0;  %phase
y=a*sin(2*pi*f*t+phi);
plot(t,y)
xlabel('time(s)')
ylabel('amplitude(V)')
  Jos (10584)
      
      
 on 17 Nov 2016
        This is the general formula of a sine wave. If leave it to you to fill in the numbers.
y = Amplitude * sin(2*pi*f*t + phase)
0 Comments
  cesar moreno
 on 4 Feb 2021
        If you need to load the generated data into an array of length N 
then,
int k   (the index of the array)
int N   (the number of points in the data array)
The ARRAY holds values of  type FLOAT      example:     array is called  data[N]  each location is a FLOAT
y = Amplitude * sin(2*pi*f*t + phase)
for k = 0 to N  (load one location at a time)
data[k] = Amplitude * sin(  ((2*pi*f*k)/N) + phase )
0 Comments
  Aishwarya Gobade
 on 13 Jan 2023
        clear;
clc;
close;
f=15; %frequency [Hz]
t=(0:1/(f*100):1);
a=4;    %amplitude [V]
phi=0;  %phase
y=a*sin(2*pi*f*t+phi);
plot(t,y)
xlabel('time(s)')
ylabel('amplitude(V)')
0 Comments
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