Nm A block is dropped from a height above an uncompressed spring. The spring bears a spring constant of 200m with negligible mass. Thereafter, the block strikes the upper end of the spring and sticks to it. 2 kg T 0.45 m k = 200 N/m a. What is the speed of the block at the instant it hits the spring? b. Find the force in the spring when the block reaches the equilibrium position. C. Determine the distance that the spring is compressed at the equilibrium position. d. What is the speed of the block at the equilibrium position? e. Is the speed of the block a maximum at the equilibrium position? Why or why not?

Principles of Physics: A Calculus-Based Text
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Author:Raymond A. Serway, John W. Jewett
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Chapter7: Conservation Of Energy
Section: Chapter Questions
Problem 15P: A block of mass m = 2.00 kg is attached to a spring of force constant k = 500 N/m as shown in Figure...
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Answer D and E only. Thanks.
N
A block is dropped from a height above an uncompressed spring. The spring bears a spring constant of 200m with
negligible mass. Thereafter, the block strikes the upper end of the spring and sticks to it.
2 kg
T
0.45 m
k = 200 N/m
I
a.
What is the speed of the block at the instant it hits the spring?
b. Find the force in the spring when the block reaches the equilibrium position.
Determine the distance that the spring is compressed at the equilibrium position.
d. What is the speed of the block at the equilibrium position?
C.
e.
Is the speed of the block a maximum at the equilibrium position? Why or why not?
Transcribed Image Text:N A block is dropped from a height above an uncompressed spring. The spring bears a spring constant of 200m with negligible mass. Thereafter, the block strikes the upper end of the spring and sticks to it. 2 kg T 0.45 m k = 200 N/m I a. What is the speed of the block at the instant it hits the spring? b. Find the force in the spring when the block reaches the equilibrium position. Determine the distance that the spring is compressed at the equilibrium position. d. What is the speed of the block at the equilibrium position? C. e. Is the speed of the block a maximum at the equilibrium position? Why or why not?
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