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13 Nov 2019
Secure https//www.webassign.net/web/Student/Assignment ses/last ?dep= 16601271 Show that the given functions are solutions of the system x(t) A(t)x(t) for the given matrix A, and hence, find the general solution to the system (remember to check linear independence). If auxiliary conditions are given, find the particular solution that satisfies these conditions. [ ì´í 2-1 2 L 2-1 2 First, show that x1(t) is a solution to xt) A()x(c). (Enter your answer as a row vector.) - A(t)x1(t) x'(t) = A(t)x(t). = A(t)x2(t) Next, show that x2(t) is a solution to (Enter your answer as a row vector.) Next, show that x3(t) is a solution to x(t) = A(t)x(t). (Enter your answer as a row vector.) = A(t) (t) Now check for linear independence. Ey wtX1, x2, x3)(t) = Finally, give the general or particular solution. (Enter your answer as a row vector.) x(t) - y Notes 3.-6.68 points G
Secure https//www.webassign.net/web/Student/Assignment ses/last ?dep= 16601271 Show that the given functions are solutions of the system x(t) A(t)x(t) for the given matrix A, and hence, find the general solution to the system (remember to check linear independence). If auxiliary conditions are given, find the particular solution that satisfies these conditions. [ ì´í 2-1 2 L 2-1 2 First, show that x1(t) is a solution to xt) A()x(c). (Enter your answer as a row vector.) - A(t)x1(t) x'(t) = A(t)x(t). = A(t)x2(t) Next, show that x2(t) is a solution to (Enter your answer as a row vector.) Next, show that x3(t) is a solution to x(t) = A(t)x(t). (Enter your answer as a row vector.) = A(t) (t) Now check for linear independence. Ey wtX1, x2, x3)(t) = Finally, give the general or particular solution. (Enter your answer as a row vector.) x(t) - y Notes 3.-6.68 points G
Patrina SchowalterLv2
11 Feb 2019