(LO 87) The combustion of benzoic acid (AEcombustion = -3228 kJ/mol C₂H5O₂) can be used to determine the heat capacity of a bomb calorimeter. A 3.05 g tablet of C7H6O₂ undergoes combustion in a bomb calorimeter; the temperature of the bomb calorimeter increases from 22.1°C to 36.6°C. Calculate the heat capacity of the bomb calorimeter. a) 5.56 kJ/°C b) 223 kJ/°C c) 73.1 kJ/°C d) 4.98 kJ/°C e) 5.72 kJ/°C

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Chapter6: Thermochemisty
Section: Chapter Questions
Problem 6.76QP: A sample of benzene, C6H6, weighing 3.51 g was burned in an excess of oxygen in a bomb calorimeter....
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1. (LO 87) The combustion of benzoic acid (AEcombustion = -3228 kJ/mol C₂H6O₂) can be used to determine the heat
capacity of a bomb calorimeter. A 3.05 g tablet of C7H6O2 undergoes combustion in a bomb calorimeter; the
temperature of the bomb calorimeter increases from 22.1°C to 36.6°C. Calculate the heat capacity of the bomb
calorimeter.
a) 5.56 kJ/°C
b) 223 kJ/°C
c) 73.1 kJ/ °C
d) 4.98 kJ/°C
e) 5.72 kJ/°C
Transcribed Image Text:1. (LO 87) The combustion of benzoic acid (AEcombustion = -3228 kJ/mol C₂H6O₂) can be used to determine the heat capacity of a bomb calorimeter. A 3.05 g tablet of C7H6O2 undergoes combustion in a bomb calorimeter; the temperature of the bomb calorimeter increases from 22.1°C to 36.6°C. Calculate the heat capacity of the bomb calorimeter. a) 5.56 kJ/°C b) 223 kJ/°C c) 73.1 kJ/ °C d) 4.98 kJ/°C e) 5.72 kJ/°C
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