Practice 3: A block of mass m is pushed against a spring of spring constant k fixed at one end to a wall. The block can slide on a frictionless table as shown in figure. The natural length of the spring is Lo and it is compressed to half its natural length when the block is released. Find the velocity of the block as a function of its distance x from the wall. m k ண →V E L,/2 – k Lo V = 2 Answer:

Classical Dynamics of Particles and Systems
5th Edition
ISBN:9780534408961
Author:Stephen T. Thornton, Jerry B. Marion
Publisher:Stephen T. Thornton, Jerry B. Marion
Chapter9: Dynamics Of A System Of Particles
Section: Chapter Questions
Problem 9.19P
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Practice 3: A block of mass m is pushed against a spring of spring constant k fixed at one
end to a wall. The block can slide on a frictionless table as shown in figure. The natural
length of the spring is Lo and it is compressed to half its natural length when the block is
released. Find the velocity of the block as a function of its distance x from the wall.
m
k
ண
E L/2 –
k Lo
v =
Answer:
Transcribed Image Text:Practice 3: A block of mass m is pushed against a spring of spring constant k fixed at one end to a wall. The block can slide on a frictionless table as shown in figure. The natural length of the spring is Lo and it is compressed to half its natural length when the block is released. Find the velocity of the block as a function of its distance x from the wall. m k ண E L/2 – k Lo v = Answer:
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