How can I get the analytical solution for this problem?

I'm new to MATLAB, and was asked to get the analytical soltuion for the following function: , however, I'm having a really hard time.
My code was as follows, and I kept recieving an error when I tried to plot:
syms y(x);
ode = diff(y,x) == 2-sqrt(2*x-y+3);
cond = y(0) == 100;
ySol(x) = dsolve(ode,cond);
x = 0:1:100;
plot (x,ySol(x))
In all honestly, I'm not sure if this is the correct method to solving for an analytical soltuion. I would really appreciate any help, and if possible, any guidance on what other resources can help me become more proficient with MATLAB.

 Akzeptierte Antwort

Walter Roberson
Walter Roberson am 14 Jun. 2020
syms y(x);
ode = diff(y,x) == 2-sqrt(2*x-y+3);
cond = y(0) == 100;
ySol(x) = dsolve(ode,cond);
x = 0:1:100;
ySols = ySol(x);
subplot(1,2,1);
plot(x, real(ySols{1}), 'b', x, imag(ySols{1}), 'r');
legend({'real', 'imaginary'})
title('solution 1')
subplot(1,2,2)
plot(x, real(ySols{2}), 'b', x, imag(ySols{2}), 'r');
legend({'real', 'imaginary'})
title('solution 2')

2 Kommentare

Thank you so much for helping with obtaing a graphical solution!
If by any chance you see this, could you please explain to me how you knew/why you used ySols within the commands.
Sorry if this may seem like a basic question, but I'm really just trying to understand where everything comes from because this is the first time I've used Matlab...
I ran the code and saw that executing ySol(x) returned a cell array with two entries, each one a 1 x 100 array of symbols.

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Weitere Antworten (1)

madhan ravi
madhan ravi am 14 Jun. 2020
Bearbeitet: madhan ravi am 14 Jun. 2020

1 Stimme

It is correct approach. I suggest you to do MATLAB Onramp course and watch Cleve Moler's videos about odes.
P.S: MATLAB is not able to find the analytical solution.

5 Kommentare

Thanks for the advice, I've actually watch a few of Moler's videos and they were really helpful. However, I'm still confused on why I only recieve an error when I input the plot command...is there something I'm missing?
See the link in my answer.
Thank you!
R2020a does find an analytic solution. two analytic solutions.
Interesting in 2018b I didn't.

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