Do it by using Matlab programmingSolution MATLAB code A1234
 Do it by using Matlab programming.
Solution
%% MATLAB code%%
 A=[1,2;3,4]
 B=2*A
 %a) i A\'
 tnasposeA=A\'
 %a) ii inv(A)
 inverseA=inv(A)
 %a) i eig(A)
 eigenA=eig(A)
 %b) A+B
 additionAB=A+B
 %c) A-B
 subtractionAB=A-B
 %d) AB
 multipliAB=A*B
%%%%%%%%OUTPUT%%%%%%%%%%%
% A =
 %
 % 1 2
 % 3 4
 %
 %
 % B =
 %
 % 2 4
 % 6 8
 %
 %
 % tnasposeA =
 %
 % 1 3
 % 2 4
 %
 %
 % inverseA =
 %
 % -2.0000 1.0000
 % 1.5000 -0.5000
 %
 %
 % eigenA =
 %
 % -0.3723
 % 5.3723
 %
 %
 % additionAB =
 %
 % 3 6
 % 9 12
 %
 %
 % subtractionAB =
 %
 % -1 -2
 % -3 -4
 %
 %
 % multipliAB =
 %
 % 14 20
 % 30 44
![Do it by using Matlab programming.Solution%% MATLAB code%% A=[1,2;3,4] B=2*A %a) i A\' tnasposeA=A\' %a) ii inv(A) inverseA=inv(A) %a) i eig(A) eigenA=eig(A) %  Do it by using Matlab programming.Solution%% MATLAB code%% A=[1,2;3,4] B=2*A %a) i A\' tnasposeA=A\' %a) ii inv(A) inverseA=inv(A) %a) i eig(A) eigenA=eig(A) %](/WebImages/40/do-it-by-using-matlab-programmingsolution-matlab-code-a1234-1123265-1761598275-0.webp)
![Do it by using Matlab programming.Solution%% MATLAB code%% A=[1,2;3,4] B=2*A %a) i A\' tnasposeA=A\' %a) ii inv(A) inverseA=inv(A) %a) i eig(A) eigenA=eig(A) %  Do it by using Matlab programming.Solution%% MATLAB code%% A=[1,2;3,4] B=2*A %a) i A\' tnasposeA=A\' %a) ii inv(A) inverseA=inv(A) %a) i eig(A) eigenA=eig(A) %](/WebImages/40/do-it-by-using-matlab-programmingsolution-matlab-code-a1234-1123265-1761598275-1.webp)
