In each of Problems 62 through 65 , find the solution of the given initial value problem. Plot the graph of the solution and describe how the solution behaves as x → 0 . x 2 y ″ + 3 x y ′ + 5 y = 0 , y ( 1 ) = 1 , y ′ ( 1 ) = − 1
In each of Problems 62 through 65 , find the solution of the given initial value problem. Plot the graph of the solution and describe how the solution behaves as x → 0 . x 2 y ″ + 3 x y ′ + 5 y = 0 , y ( 1 ) = 1 , y ′ ( 1 ) = − 1
In each of Problems
62
through
65
, find the solution of the given initial value problem. Plot the graph of the solution and describe how the solution behaves as
x
→
0
.
x
2
y
″
+
3
x
y
′
+
5
y
=
0
,
y
(
1
)
=
1
,
y
′
(
1
)
=
−
1
Suppose an object weighing 64 pounds stretches a spring 8 feet. If the object is attached to the spring and released 5 feet below the equilibrium position from rest, find the equation of motion of the object x(t).
In each of Problems 7 through 10, find the solution of the given initial value problem. Draw
component plots of the solution and describe the behavior of the solution as t → ∞.
In each of Problems 13 through 16, solve the given initial value problem. Draw component
plots of ₁ and 2 versus t. Describe the behavior of the solution as t → ∞.
Chapter 4 Solutions
Differential Equations: An Introduction to Modern Methods and Applications
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