letter B)Determine the velocity of the block when it slides at a distance of 0.6m from point A. and letter A)Determine the distance the block will slide until it stops measured from point A.

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letter B)Determine the velocity of the block when it slides at a distance of 0.6m from point A.

and letter A)Determine the distance the block will slide until it stops measured from point A.

1. A 10-kg block is pushed against a spring that is fixed on one end. The
block slides on a surface with coefficient of friction of 0.3. The spring has a
natural length of 0.8 meters and is compressed by the block to half of its
length. When the block is released,
(a) Determine the distance the block will slide until it stops measured from
point A.
(b) Determine the velocity of the block when it slides at a distance of 0.6m
from point A.
0.8m
K=300N/m
A
(c) At what length should the spring be compressed for the block to slide
and stop at a distance of 1.3m from point A.
0.8m
A
S=?
Hint: Us – U, = KE
Transcribed Image Text:1. A 10-kg block is pushed against a spring that is fixed on one end. The block slides on a surface with coefficient of friction of 0.3. The spring has a natural length of 0.8 meters and is compressed by the block to half of its length. When the block is released, (a) Determine the distance the block will slide until it stops measured from point A. (b) Determine the velocity of the block when it slides at a distance of 0.6m from point A. 0.8m K=300N/m A (c) At what length should the spring be compressed for the block to slide and stop at a distance of 1.3m from point A. 0.8m A S=? Hint: Us – U, = KE
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