A cup contains 187 g of coffee at 97.6 °C. Suppose 56.2 g of ice is added to the coffee. What is the temperature of the coffee after all of the ice melts? The enthalpy of fusion of water can be found in this table. Assume the specific heat capacity of the coffee is the same as water.

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A cup contains 187 g of coffee at 97.6 °C. Suppose 56.2 g of ice is added to the coffee. What is the temperature of the coffee
after all of the ice melts? The enthalpy of fusion of water can be found in this table. Assume the specific heat capacity of the
coffee is the same as water.
°C
Tinal
73.64
Incorrect
Transcribed Image Text:A cup contains 187 g of coffee at 97.6 °C. Suppose 56.2 g of ice is added to the coffee. What is the temperature of the coffee after all of the ice melts? The enthalpy of fusion of water can be found in this table. Assume the specific heat capacity of the coffee is the same as water. °C Tinal 73.64 Incorrect
Heat-transfer constants for H20 at 1 atm
Quantity
Enthalpy of fusion
Enthalpy of vaporization
Specific heat of solid H 2 0 (ice)
per gram
333.6 J/g
2257 J/g
per mole
6010. J/mol
40660 J/mol
2.087 J/(g-°C) * 37.60 J/(mol-°C) *
Specific heat of liquid H 2 0 (water)
4.184 J/(g.°C) * 75.37 J/(mol-°C) *
Specific heat of gaseous H 2 0 (steam) 2.000 J/(g-°C) * 36.03 J/(mol-°C) *
Transcribed Image Text:Heat-transfer constants for H20 at 1 atm Quantity Enthalpy of fusion Enthalpy of vaporization Specific heat of solid H 2 0 (ice) per gram 333.6 J/g 2257 J/g per mole 6010. J/mol 40660 J/mol 2.087 J/(g-°C) * 37.60 J/(mol-°C) * Specific heat of liquid H 2 0 (water) 4.184 J/(g.°C) * 75.37 J/(mol-°C) * Specific heat of gaseous H 2 0 (steam) 2.000 J/(g-°C) * 36.03 J/(mol-°C) *
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