1. A crane lifts a 75kg mass a height of 8 m. Calculate the gravitational potential energy gained by the mass (g = 9.8 N/kg). 2. A compressed spring has the potential energy of 20 J and its spring constant is 200 N/m Calculate the displacement of the spring. 3. Thevertical spring is linked to aload of mass 5 kg which is compressed by 10m Detemine the force constant of the spring. 4. Explain how gravitational potential energy relates to the position/configuration of the system 5. Explain how elastic potential energy relates to the position/configuration of the system 6. Explain the difference between work and energy.

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Chapter8: Conservation Of Energy
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1. A crane lifts a 75kg mass a height of 8 m. Calculate the gravitational potential energy gained by
the mass (g = 9.8 N/kg).
2. A compressed spring has the potential energy of 20 J and its spring corstant is 200 N/m
Calculate the displacement of the spring.
3. The vertical spring is linked to a load of mass 5 kg which is compressed by 10m Determine the
force constant of the spring.
4. Explain how gravitational potential energy relates to the position/configuration of the system
5. Explain how elastic potential energy relates to the position/configuration of the system
6. Explain the difference between work and energy.
Transcribed Image Text:1. A crane lifts a 75kg mass a height of 8 m. Calculate the gravitational potential energy gained by the mass (g = 9.8 N/kg). 2. A compressed spring has the potential energy of 20 J and its spring corstant is 200 N/m Calculate the displacement of the spring. 3. The vertical spring is linked to a load of mass 5 kg which is compressed by 10m Determine the force constant of the spring. 4. Explain how gravitational potential energy relates to the position/configuration of the system 5. Explain how elastic potential energy relates to the position/configuration of the system 6. Explain the difference between work and energy.
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