a) What is the magnitude of energy (in MJ) that must be removed to freeze 377 L of water with a density of  999.8 Kg/m3 that is already at 0˚C [round your final answer to one decimal place]? {latent heats of water: Lf = 33.5 × 104 J/kg, and Lv = 22.6 × 105 J/kg} b) The magnitude of energy that must be added to melt the same mass of ice (already at 0˚C) would be greater than the amount of energy that had to be removed in order to freeze it. TRUE OR FALSE {latent heats of water: Lf = 33.5 × 104 J/kg, and Lv = 22.6 × 105 J/kg}

Physics for Scientists and Engineers: Foundations and Connections
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ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter21: Heat And The First Law Of Thermodynamics
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a) What is the magnitude of energy (in MJ) that must be removed to freeze 377 L of water with a density of  999.8 Kg/m3 that is already at 0˚C [round your final answer to one decimal place]?

{latent heats of water: Lf = 33.5 × 104 J/kg, and Lv = 22.6 × 105 J/kg}

b) The magnitude of energy that must be added to melt the same mass of ice (already at 0˚C) would be greater than the amount of energy that had to be removed in order to freeze it. TRUE OR FALSE

{latent heats of water: Lf = 33.5 × 104 J/kg, and Lv = 22.6 × 105 J/kg}

 

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