Consider the following differential equation used to describe a system: d³x d²x dx dt³ +5. +17+13x = 1; t 20 dt² with initial conditions: dx X=== 1 and dt Use the Laplace transform to solve for x(t). d²x dt² = 0 at t = 1.

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
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Chapter2: Second-order Linear Odes
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Consider the following differential equation used to describe a system:
d³x d²x
dt3
with initial conditions:
+5 +17
dt²
dx
dt
dx
x=== 1 and
dt
Use the Laplace transform to solve for x(t).
+ 13x = 1; t 20
d²x
dt²
= 0 at t = 1.
Transcribed Image Text:Consider the following differential equation used to describe a system: d³x d²x dt3 with initial conditions: +5 +17 dt² dx dt dx x=== 1 and dt Use the Laplace transform to solve for x(t). + 13x = 1; t 20 d²x dt² = 0 at t = 1.
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