a 3.5 kg block is accelerated from rest by a compressed spring of spring constant 640 N/m. The block leaves the spring at the spring’s relaxed length and then travels over a horizontal floor with a coefficient of kinetic friction mk = 0.25. The frictional force stops the block in distance D = 7.8 m.What are (a) the increase in the thermal energy of the block–floor system, (b) the maximum kinetic energy of the block, and (c) the original compression distance of the spring?

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Chapter7: Work, Energy, And Energy Resources
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a 3.5 kg
block is accelerated from rest
by a compressed spring of
spring constant 640 N/m. The
block leaves the spring at the
spring’s relaxed length and
then travels over a horizontal
floor with a coefficient of kinetic
friction mk = 0.25. The frictional force stops the block in distance
D = 7.8 m.What are (a) the increase in the thermal energy
of the block–floor system, (b) the maximum kinetic energy of the
block, and (c) the original compression distance of the spring?

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