A 0.530-g sample of nonanedioic acid (C9H1604) is burned in a bomb calorimeter and the temperature increases from 24.00 °C to 26.73 °C. The calorimeter contains 1000 g of water and the bomb has a heat capacity of 793 J/°C. The heat capacity of water is 4.184 J g-1°C-1. Based on this experiment, calculate AE for the combustion reaction per mole of nonanedioic acid burned. x 10^____ kJ/mol

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Chapter5: Thermochemistry
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Problem 31E: When a 0.740-g sample of trinitrotoluene (TNT), C7H5N2O6, is burned in a bomb calorimeter, the...
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A 0.530-g sample of nonanedioic acid (C9H1604) is burned in a bomb calorimeter and the temperature increases from
24.00 °C to 26.73 °C. The calorimeter contains 1000 g of water and the bomb has a heat capacity of 793 J/°C. The heat
capacity of water is 4.184 J g-1°C-1. Based on this experiment, calculate AE for the combustion reaction per mole of
nonanedioic acid burned.
x 10^____
kJ/mol
Transcribed Image Text:A 0.530-g sample of nonanedioic acid (C9H1604) is burned in a bomb calorimeter and the temperature increases from 24.00 °C to 26.73 °C. The calorimeter contains 1000 g of water and the bomb has a heat capacity of 793 J/°C. The heat capacity of water is 4.184 J g-1°C-1. Based on this experiment, calculate AE for the combustion reaction per mole of nonanedioic acid burned. x 10^____ kJ/mol
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