HumorMe81
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A light horizontal spring has a spring constant
of 108 N/m. A 3.05 kg block is pressed against
one end of the spring, compressing the spring
0.111 m. After the block is released, the block
moves 0.204 m to the right before coming to
rest.
The acceleration of gravity is 9.81 m/s2 .
What is the coefficient of kinetic friction
between the horizontal surface and the block?
This is how I solved it, although I don't think it's correct.
When the spring is compressed, it has some potential energy and kinetic energy at this point is 0:
spring compressed:
u=1/2kx^2
u=1/2(108N/m)(.111m)^2
U=.67J
Ke=1/2mv^2
I don't know the acceleration in the horizontal acceleration so I can't figure out the velocity.
The problem also says the block moves .204m before coming to stop.
When the block comes to stop, all of the potential energy has been converted into kinetic energy and some has been lost to friction.
W' (work done by friction)
W'=Uf+Kef=Fk*d
=0+Uinitial, when compressed =Fk*d
=0+ .67J=mu k*N*d (N=mg for obj. on flat surface)
.67J=mu k (29.89N)(.204m)
muK= .11
any suggestions??
Thanks
of 108 N/m. A 3.05 kg block is pressed against
one end of the spring, compressing the spring
0.111 m. After the block is released, the block
moves 0.204 m to the right before coming to
rest.
The acceleration of gravity is 9.81 m/s2 .
What is the coefficient of kinetic friction
between the horizontal surface and the block?
This is how I solved it, although I don't think it's correct.
When the spring is compressed, it has some potential energy and kinetic energy at this point is 0:
spring compressed:
u=1/2kx^2
u=1/2(108N/m)(.111m)^2
U=.67J
Ke=1/2mv^2
I don't know the acceleration in the horizontal acceleration so I can't figure out the velocity.
The problem also says the block moves .204m before coming to stop.
When the block comes to stop, all of the potential energy has been converted into kinetic energy and some has been lost to friction.
W' (work done by friction)
W'=Uf+Kef=Fk*d
=0+Uinitial, when compressed =Fk*d
=0+ .67J=mu k*N*d (N=mg for obj. on flat surface)
.67J=mu k (29.89N)(.204m)
muK= .11
any suggestions??
Thanks