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The Solution of the Eigenvalue Problem from the Previous Problem λ=nπ/L,X(x)=sin(nπx/L),n=1,2,3,\lambda = n \pi / L , X ( x ) = \sin ( n \pi x / L ) , n = 1,2,3 , \ldots

Question 2

Multiple Choice

The solution of the eigenvalue problem from the previous problem is


A) λ=nπ/L,X(x) =sin(nπx/L) ,n=1,2,3,\lambda = n \pi / L , X ( x ) = \sin ( n \pi x / L ) , n = 1,2,3 , \ldots
B) λ=nπ/L,X(x) =cos(nπx/L) ,n=0,1,2,\lambda = n \pi / L , X ( x ) = \cos ( n \pi x / L ) , n = 0,1,2 , \ldots
C) λ=(nπ/L) ,X(x) =sin(nπx/L) ,n=0,1,2,\lambda = ( n \pi / L ) , X ( x ) = \sin ( n \pi x / L ) , n = 0,1,2 , \ldots
D) λ=(nπ/L) 2,X(x) =sin(nπx/L) ,n=1,2,3,\lambda = ( n \pi / L ) ^ { 2 } , X ( x ) = \sin ( n \pi x / L ) , n = 1,2,3 , \ldots
E) λ=(nπ/L) 2,X(x) =cos(nπx/L) ,n=0,1,2,\lambda = ( n \pi / L ) ^ { 2 } , X ( x ) = \cos ( n \pi x / L ) , n = 0,1,2 , \ldots

Correct Answer:

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