A block of mass 500 g is attached to a spring of spring constant 80 N/m (see the following figure). The other end of the spring is attached to a support while the mass rests on a rough surface with a coefficient of friction of 0.20 that is inclined at angle of 30°. The block is pushed along the surface till the spring compresses by 10 cm and is then released from rest. Note: Because the spring is attached to the block, it does not become separated from the block. w mo 30°

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Determine the position of the block where it first comes to rest on its way up the incline. Please explain steps/answers. Please submit handwritten.
A block of mass 500 g is attached to a spring of spring constant 80 N/m (see the following
figure). The other end of the spring is attached to a support while the mass rests on a rough
surface with a coefficient of friction of 0.20 that is inclined at angle of 30°. The block is
pushed along the surface till the spring compresses by 10 cm and is then released from rest.
Note: Because the spring is attached to the block, it does not become separated from the
block.
W
mo
30°
Transcribed Image Text:A block of mass 500 g is attached to a spring of spring constant 80 N/m (see the following figure). The other end of the spring is attached to a support while the mass rests on a rough surface with a coefficient of friction of 0.20 that is inclined at angle of 30°. The block is pushed along the surface till the spring compresses by 10 cm and is then released from rest. Note: Because the spring is attached to the block, it does not become separated from the block. W mo 30°
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