Assuming that the heat capacity of ice, water, and steam are constant at 37 J K-'...
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Assuming that the heat capacity of ice, water, and steam are constant at 37 J K-' mol-, 75 J K- mol, and 36 JK- mol!, respectively, over the temperature ranges in this problem and the heat of fusion and vaporization for water are 6.01 kJ mol- and 40.7 kJ mol-, respectively, calculate the heat required to raise the temperature of 2.8 g of ice from -10.°C to 115°C. Express your answer to three significant figures and include the appropriate units. -1.9 x 10-6 T³ + 5.2 x 10-4 T² Assuming now that the heat capacity of liquid water is not constant and is given by the equation Cp °C, calculate the total heat added to the system to raise the temperature from –10.°C to 115°C. 0.032 T + 76 where T is in Express your answer to two significant figures and include the appropriate units. Assuming that the heat capacity of ice, water, and steam are constant at 37 J K-' mol-, 75 J K- mol, and 36 JK- mol!, respectively, over the temperature ranges in this problem and the heat of fusion and vaporization for water are 6.01 kJ mol- and 40.7 kJ mol-, respectively, calculate the heat required to raise the temperature of 2.8 g of ice from -10.°C to 115°C. Express your answer to three significant figures and include the appropriate units. -1.9 x 10-6 T³ + 5.2 x 10-4 T² Assuming now that the heat capacity of liquid water is not constant and is given by the equation Cp °C, calculate the total heat added to the system to raise the temperature from –10.°C to 115°C. 0.032 T + 76 where T is in Express your answer to two significant figures and include the appropriate units.
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