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Part A An ice-making machine inside a refrigerator operates in a Carnot cycle. It takes heat from liquid water at 0.0 °C and rejects heat to a room at a temperature of 23.3°C Suppose that liquid water with a mass of 89.7 kg at 0.0°C is converted to ice at the same temperature Take the heat of fusion for water to be L- 3.34x10$J/kg How much heat Quis rejected to the room? Express your answer in joules to four significant figures. View Available Hint(s) V AE ? QH| = J Submit Part B Complete previous part(s)

Part A An ice-making machine inside a refrigerator operates in a Carnot cycle. It takes heat from liquid water at 0.0 °C and rejects heat to a room at a temperature of 23.3°C Suppose that liquid water with a mass of 89.7 kg at 0.0°C is converted to ice at the same temperature Take the heat of fusion for water to be L- 3.34x10$J/kg How much heat Quis rejected to the room? Express your answer in joules to four significant figures. View Available Hint(s) V AE ? QH| = J Submit Part B Complete previous part(s)

An ice-making machine inside arefrigeratoroperates in a Carnot cycle, theheat(Q)rejectedto the room is approximately 2.99 xJ.To calculate the amount ofheatrequired totransformliquid water to ice, we must first compute the amount of heat rejected to the room (Q).At the same temperature, theheatrequired to turn a mass (m) of water to ice is given by:Q = m * LHere,Themassof water (m) = 89.7 kgThe heat offusionfor water (L) =So, as per this:Q = 89.7 kg * 3.34 xJ/kg≈ 2.99 xJThus, theheat(Q) rejected to the room is approximately 2.99 xJ.For more details regardingheat, visit:brainly.com/question/29382568#SPJ4...

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