2. A 4.0 kg block is moving at vo = 8 m/s along a frictionless, horizont wards a spring with force constant k = 400 N/m that is attached to a wall. See Fig ring has negligible mass. (a) Find the maximum distance the spring will be co If the spring is to compress by no more than 0.15 m, what should be the maxim

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter7: Conservation Of Energy
Section: Chapter Questions
Problem 5P: A block of mass 0.250 kg is placed on top of a light, vertical spring of force constant 5 000 N/m...
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2. A 4.0 kg block is moving at vo 8 m/s along a frictionless, horizontal surface
towards a spring with force constant k = 400 N/m that is attached to a wall. See Figure. The
spring has negligible mass. (a) Find the maximum distance the spring will be compressed.
(b) If the spring to compress by no more than 0.15 m, what should be the maximum value
of vo?
k
m
a) Energy conservation. Initially
ww
2
E = 1/2mv ² + 1/₂kx² = 1/24 (8) ²2² +0
=
128 J
x=0
Transcribed Image Text:= 2. A 4.0 kg block is moving at vo 8 m/s along a frictionless, horizontal surface towards a spring with force constant k = 400 N/m that is attached to a wall. See Figure. The spring has negligible mass. (a) Find the maximum distance the spring will be compressed. (b) If the spring to compress by no more than 0.15 m, what should be the maximum value of vo? k m a) Energy conservation. Initially ww 2 E = 1/2mv ² + 1/₂kx² = 1/24 (8) ²2² +0 = 128 J x=0
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