been accurately determined to be -3226.7 kJ mol The enthalpy of combustion of benzoic acid (C6H5COOH) is commonly used as the standard for calibrating constant-volume bomb calorimeters; its value has When 3.0679 g of benzoic acid are burned in a calorimeter, the temperature rises from 22.84 °C to 25.67 °C. What is the heat capacity of the bomb? (Assume that the quantity of water surrounding the bomb is exactly 2250 g.) Be sure your answer has the correct number of significant digits. Note: Reference the Phase change properties of pure substances table for additional information. 19.27 kJ °C ☐ x10 ☑

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Author:William L. Masterton, Cecile N. Hurley
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Chapter8: Thermochemistry
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been accurately determined to be -3226.7
kJ
mol
The enthalpy of combustion of benzoic acid (C6H5COOH) is commonly used as the standard for calibrating constant-volume bomb calorimeters; its value has
When 3.0679 g of benzoic acid are burned in a calorimeter, the temperature rises from 22.84 °C to 25.67 °C.
What is the heat capacity of the bomb? (Assume that the quantity of water surrounding the bomb is exactly 2250 g.) Be sure your answer has the correct
number of significant digits.
Note: Reference the Phase change properties of pure substances table for additional information.
19.27
kJ
°C
☐ x10
☑
Transcribed Image Text:been accurately determined to be -3226.7 kJ mol The enthalpy of combustion of benzoic acid (C6H5COOH) is commonly used as the standard for calibrating constant-volume bomb calorimeters; its value has When 3.0679 g of benzoic acid are burned in a calorimeter, the temperature rises from 22.84 °C to 25.67 °C. What is the heat capacity of the bomb? (Assume that the quantity of water surrounding the bomb is exactly 2250 g.) Be sure your answer has the correct number of significant digits. Note: Reference the Phase change properties of pure substances table for additional information. 19.27 kJ °C ☐ x10 ☑
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