78.A block of mass 300 g is attached to a spring of spring constant 100 N/m. The other end of the spring is attached to a support while the block rests on a smooth horizontal table and can slide freely without any friction. The block is pushed horizontally till the spring compresses by 12 cm, and then the block is released from rest. (a) How much potential energy was stored in the block-spring support system when the block was just released? (b) Determine the speed of the block when it crosses the point when the spring is neither compressed nor stretched. (c) Determine the speed of the block when it has traveled a distance of 20 cm from where it was released. + - F 3 / 3 ↑↓X Solution

University Physics Volume 1
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Chapter8: Potential Energy And Conservation Of Energy
Section: Chapter Questions
Problem 79AP: Consider a block of mass 0.200 kg attached to a spring of spring constant 100 N/m. The block is...
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78.A block of mass 300 g is attached to a spring of spring constant 100 N/m. The other end of
the spring is attached to a support while the block rests on a smooth horizontal table and can
slide freely without any friction. The block is pushed horizontally till the spring compresses by
12 cm, and then the block is released from rest. (a) How much potential energy was stored in the
block-spring support system when the block was just released? (b) Determine the speed of the
block when it crosses the point when the spring is neither compressed nor stretched. (c)
Determine the speed of the block when it has traveled a distance of 20 cm from where it was
released.
+
Ť
↓
3/3 ↑ ↓ X
Solution
Transcribed Image Text:78.A block of mass 300 g is attached to a spring of spring constant 100 N/m. The other end of the spring is attached to a support while the block rests on a smooth horizontal table and can slide freely without any friction. The block is pushed horizontally till the spring compresses by 12 cm, and then the block is released from rest. (a) How much potential energy was stored in the block-spring support system when the block was just released? (b) Determine the speed of the block when it crosses the point when the spring is neither compressed nor stretched. (c) Determine the speed of the block when it has traveled a distance of 20 cm from where it was released. + Ť ↓ 3/3 ↑ ↓ X Solution
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