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my code is running but it didn't display the graph even if it put the x and y value in the axis. here is my code

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my code is running but it didn't display the graph even if it put the x and y value in the axis. here is my code
a=0.0001; l=0.0003; eo=8.85e-14; er=11.9; es=eo*er; f1 = 550e3; f2 = 1650e3; q=1.6e-19; c1=1/(4*pi*pi*f1*l); c2=1/(4*pi*pi*f2*l); xd1=(a*es)/c1; xd2=(a*es)/c2; n1=sqrt(es)/(4*pi*q*sqrt(l)*sqrt(a)*(2.2e5)*xd1^1.5); n2=sqrt(es)/(4*pi*q*sqrt(l)*sqrt(a)*(2.2e5)*xd2^1.5); x =xd1:0.01:xd2; k = sqrt(es)/(4*pi*q*sqrt(l)*sqrt(a)*(2.2e5)*x.^1.5); figure(1) plot(x,k) xlabel('xd'); ylabel('nd'); plot(x,log10(k));

Risposte (1)

Star Strider
Star Strider il 14 Ott 2016
Your ‘x’ vector is a single point, ‘xd1’, because the step size is larger than the terminating value. Use the linspace function to create ‘x’. You also have to use the hold function and semilogy to plot and see both vectors:
a=0.0001;
l=0.0003;
eo=8.85e-14;
er=11.9;
es=eo*er;
f1 = 550e3;
f2 = 1650e3;
q=1.6e-19;
c1=1/(4*pi*pi*f1*l);
c2=1/(4*pi*pi*f2*l);
xd1=(a*es)/c1;
xd2=(a*es)/c2;
n1=sqrt(es)/(4*pi*q*sqrt(l)*sqrt(a)*(2.2e5)*xd1^1.5);
n2=sqrt(es)/(4*pi*q*sqrt(l)*sqrt(a)*(2.2e5)*xd2^1.5);
% x =xd1:0.01:xd2; % <— REPLACE WITH ‘linspace’
x = linspace(xd1, xd2, 10); % 10-Element Vector
k = sqrt(es)./(4*pi*q*sqrt(l)*sqrt(a)*(2.2e5)*x.^1.5); % <— DO ELEMENT-WISE DIVISION
figure(1)
semilogy(x,k)
xlabel('xd');
ylabel('nd');
hold on % <— ADD ‘hold’
plot(x,log10(k));
hold off % <— ADD ‘hold off’

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