A particle moving in a planar force field has a position vector x that satisfies x' = Ax. The 2x2 matrix A has eigenvalues 7 and 5, with corresponding eigenvectors v, = and v2 = 1 Find the position of the particle at time t assuming that x(0) = x(t) =O

Calculus For The Life Sciences
2nd Edition
ISBN:9780321964038
Author:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Publisher:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Chapter10: Matrices
Section10.CR: Chapter 10 Review
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A particle moving in a planar force field has a position vector x that satisfies x' = Ax. The 2x 2 matrix A has eigenvalues 7 and 5, with corresponding eigenvectors v,
and v2
Find the position of
1
13
the particle at time t assuming that x(0) =
- 1
x(t) =
%3D
Transcribed Image Text:- 3 - 7 A particle moving in a planar force field has a position vector x that satisfies x' = Ax. The 2x 2 matrix A has eigenvalues 7 and 5, with corresponding eigenvectors v, and v2 Find the position of 1 13 the particle at time t assuming that x(0) = - 1 x(t) = %3D
- 6
2
Find the position of the
1
and v2 =
A particle moving in a planar force field has a position vector x that satisfies x' = Ax. The 2x2 matrix A has eigenvalues 7 and 4, with corresponding eigenvectors v, =
1
- 24
particle at time t assuming that x(0) =
2
x(t) = s
Transcribed Image Text:- 6 2 Find the position of the 1 and v2 = A particle moving in a planar force field has a position vector x that satisfies x' = Ax. The 2x2 matrix A has eigenvalues 7 and 4, with corresponding eigenvectors v, = 1 - 24 particle at time t assuming that x(0) = 2 x(t) = s
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