A small anvil of mass, m= 10 kg is dropped from rest from a height H= 7.0 m above the top of a large, vertically-oriented spring, which gets compressed from its relaxed(equilibrium) position when the anvil lands on it. The spring has spring constant k= 5000Nm. How far does the anvil compress the spring? You may treat the fullcompression distance as your ”ground”, and assume no air resistance.
A small anvil of mass, m= 10 kg is dropped from rest from a height H= 7.0 m above the top of a large, vertically-oriented spring, which gets compressed from its relaxed(equilibrium) position when the anvil lands on it. The spring has spring constant k= 5000Nm. How far does the anvil compress the spring? You may treat the fullcompression distance as your ”ground”, and assume no air resistance.
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A small anvil of mass, m= 10 kg is dropped from rest from a height H= 7.0 m above the top of a large, vertically-oriented spring, which gets compressed from its relaxed(equilibrium) position when the anvil lands on it. The spring has spring constant k= 5000Nm.
How far does the anvil compress the spring?
You may treat the fullcompression distance as your ”ground”, and assume no air resistance.
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