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Quantum Electronics Matlab Lab Report

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  • "AssignmentDevelop all possible simulations for each of the mathematical relation in QUANTUMELECTRONICS using MATLAB.1. Angular momentum? ?????? ???????? = 2. Energy? ? ?? = - ? ? 2 ? ((??? ) )? ? 3. Velocity ? ????????? = ???? ? 4. Wavelength?? ? = ..

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  • "AssignmentDevelop all possible simulations for each of the mathematical relation in QUANTUMELECTRONICS using MATLAB.1. Angular momentum? ?????? ???????? = 2. Energy? ? ?? = - ? ? 2 ? ((??? ) )? ? 3. Velocity ? ????????? = ???? ? 4. Wavelength?? ? = ?? ? 5. Velocity in a fiber cable? ? = ? ?? ??JOMO KENYATTA UNIVERSITY OF AGRICULTURE AND TECHNOLOGYSCHOOL OF ELECTRICAL, ELECTRONIC AND INFORMATION ENGINEERING DEPARTMENT OF ELECTRICAL AND ELECTRONIC ENGINEERINGP.O BOX 62000-00200, NAIROBI TEL:(067)-52220 Email:[email protected]:QUANTUM ELECTRONICSUNIT CODE:EEE 2504 TITLE:QUANTUM ELECTRONICS MATLAB LAB REPORTWANGO K. DAVIDEN272-0498/2012 Angular Momentum?? ??????? ???????? =>> n = [1:0.5:10];>> h = 6.63e-34;>> p = n*(h/ (pi));>> plot (n, p);>> xlabel ('n');>> ylabel ('Angular Momentum');Energy? ? ? ? = -? ? 2 ? ((??? ) )? ? >> m = (9.1e-31);>> e = (1.6e-19) ^4;>> t = (8.85e-12);>> h =(1.055e-34);>> g =(4*pi*t)^2;??>> E = -m*e.\\(2*g*(n.^2)*(h^2));>> plot(n,E);>> xlabel('N');>> ylabel('Energy,E');Velocity ? ? ???????? =???? ? >> n=[1:0.5:20];>> h = (1.055e-34);>> t = (8.85e-12);>> e = (1.6e-19)^2;>> v = e./(4*pi*t*n*h);>> plot(v, n);>> plot(n, v);>> xlabel('N');>> ylabel('VELOCITY'); Wavelength? =? >> h1 = (6.63e-34);>> c = (3.0e8);>> z=[1:0.2:2];>> q=(z.*1.6e-9);>> w=(h1*c)./q;>> plot(z, w);>> xlabel('ENERGY');>> ylabel('WAVELENGTH');?? ??Velocity in a fiber cable? ? =? >> n1=[1:0.1:2]; >> c = (3.0e8); >> v=c./n1; >> plot(n1, v) >> xlabel('Refractive index, n'); >> ylabel('velocity, v'); "

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