12 An insulated container holding 4.55 kg of ice at 0.00°C has 2.65 MJ of work done on it, while a heater provides 14600 J of heat to the ice. If the latent heat of fusion of ice is 3.34 × 105 J kg-1, calculate the final temperature of the water. Assume that the increase in internal energy is first due to an increase in the potential energy and then an increase in the kinetic energy.

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Chapter20: The First Law Of Thermodynamics
Section: Chapter Questions
Problem 20.12OQ: If a gas is compressed isothermally, which of the following statements is true? (a) Energy is...
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Please explain why the answer is 60 degrees celsius 

12 An insulated container holding 4.55 kg of ice at
0.00°C has 2.65 MJ of work done on it, while a heater
provides 14600 J of heat to the ice. If the latent
heat of fusion of ice is 3.34 × 105 J kg-1, calculate
the final temperature of the water. Assume that the
increase in internal energy is first due to an increase
in the potential energy and then an increase in the
kinetic energy.
Transcribed Image Text:12 An insulated container holding 4.55 kg of ice at 0.00°C has 2.65 MJ of work done on it, while a heater provides 14600 J of heat to the ice. If the latent heat of fusion of ice is 3.34 × 105 J kg-1, calculate the final temperature of the water. Assume that the increase in internal energy is first due to an increase in the potential energy and then an increase in the kinetic energy.
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