A freezer is to convert 1.76 kg of water at 29.6°C to 1.76 kg of ice at -4.27°C. If the coefficient of performance of the freezer is 2.11, how much heat is delivered outside the freezer? The specific heat capacity of: (a) water is 4190 J/(kg-K) and (b) ice is 2100 J/(kg-K); and the latent heat of fusion for water is 3.34××10 J/kg. O 521.4 kJ O 1211 kJ O 389.5 kJ O 821.9 k

College Physics
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Author:Raymond A. Serway, Chris Vuille
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Chapter12: The Laws Of Thermodynamics
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Problem 40P: Suppose an ideal (Carnot) heal pump could be constructed, (a) Using Equation 12.15, obtain an...
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Question 20
A freezer is to convert 1.76 kg of water at 29.6°C to 1.76 kg of ice at -4.27°C. If the coefficient of performance of the freezer is 2.11, how much heat is delivered
outside the freezer? The specific heat capacity of: (a) water is 4190 J/(kg-K) and (b) ice is 2100 J/(kg-K); and the latent heat of fusion for water is 3.34xx10 J/kg.
O 521.4 kJ
O 1211 kJ
O 389.5 kJ
O 821.9 k
Transcribed Image Text:Question 20 A freezer is to convert 1.76 kg of water at 29.6°C to 1.76 kg of ice at -4.27°C. If the coefficient of performance of the freezer is 2.11, how much heat is delivered outside the freezer? The specific heat capacity of: (a) water is 4190 J/(kg-K) and (b) ice is 2100 J/(kg-K); and the latent heat of fusion for water is 3.34xx10 J/kg. O 521.4 kJ O 1211 kJ O 389.5 kJ O 821.9 k
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