In Exercises 1–4, each of the linear systems has one eigenvalue and one line of eigen- vectors. For each system, (a) find the eigenvalue; (b) find an eigenvector; (c) sketch the direction field; (d) sketch the phase portrait, including the solution curve with initial condition Yo = (1, 0); and (e) sketch the x(t)- and y(t)-graphs of the solution with initial condition Yo = (1, 0). dY 1. dt ( :) -3 Y 1 -3 dY 2. dt 1 Y 4 -1 dY 3. dt -2 -1 Y 1 -4 dY 4. dt 1 Y -1 -2 :) ||
In Exercises 1–4, each of the linear systems has one eigenvalue and one line of eigen- vectors. For each system, (a) find the eigenvalue; (b) find an eigenvector; (c) sketch the direction field; (d) sketch the phase portrait, including the solution curve with initial condition Yo = (1, 0); and (e) sketch the x(t)- and y(t)-graphs of the solution with initial condition Yo = (1, 0). dY 1. dt ( :) -3 Y 1 -3 dY 2. dt 1 Y 4 -1 dY 3. dt -2 -1 Y 1 -4 dY 4. dt 1 Y -1 -2 :) ||
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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