a) In terms of the variables given in the problem statement, find an equation for the speed of the bullet, v, just before it hits the block.  b) What is the speed, in meters per second, of the bullet before it enters the block?  c) What is the frequency, in hertz, of the resulting periodic motion of the block/bullet and spring system?

An Introduction to Physical Science
14th Edition
ISBN:9781305079137
Author:James Shipman, Jerry D. Wilson, Charles A. Higgins, Omar Torres
Publisher:James Shipman, Jerry D. Wilson, Charles A. Higgins, Omar Torres
Chapter15: Place And Time
Section15.3: Time
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Chapter 16: Problem 6:  A massless spring, with force constant k=181N/m, connects a wall and a block of wood. The system is initially at rest with the spring neither stretched nor compressed. The block has mass M=60.2g and is free to move without friction on a table. A gun is positioned to fire a bullet of mass m=5.36g into the block along the spring axis. After the gun is fired, the bullet gets embedded in the block, and the spring is compressed a maximum distance d=0.837m.

a) In terms of the variables given in the problem statement, find an equation for the speed of the bullet, v, just before it hits the block. 

b) What is the speed, in meters per second, of the bullet before it enters the block? 

c) What is the frequency, in hertz, of the resulting periodic motion of the block/bullet and spring system? 

m
M www
Transcribed Image Text:m M www
m
d
kd²
k(M+m)
v
k(M + m)
v =
M
m
v =
d
√k(M+m)
m
||
d
M
(M+m)
√k(M+m)
m
Transcribed Image Text:m d kd² k(M+m) v k(M + m) v = M m v = d √k(M+m) m || d M (M+m) √k(M+m) m
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