se constant-volume calorimetry to determine energy change. D.452-g sample of pyrene (C16H10) is burned in a bomb ca .10 °C to 28.30 °C. The calorimeter contains 1.13x10³ g 5 J/°C. Based on this experiment, calculate AE for the coml 1/mol). C16H10(s) + 37/2 O₂(g) →16 CO₂(g) + 5 H₂0(1

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Use constant-volume calorimetry to determine energy change.
A 0.452-g sample of pyrene (C₁6H10) is burned in a bomb calorimeter and the temperature increases from
25.10 °C to 28.30 °C. The calorimeter contains 1.13x10³ g of water and the bomb has a heat capacity of
805 J/°C. Based on this experiment, calculate AE for the combustion reaction per mole of pyrene burned
(kJ/mol).
C16H10(s) + 37/2 O₂(g) →→→16 CO₂(g) + 5 H₂O(1)
AE =
kJ/mol
Transcribed Image Text:Use constant-volume calorimetry to determine energy change. A 0.452-g sample of pyrene (C₁6H10) is burned in a bomb calorimeter and the temperature increases from 25.10 °C to 28.30 °C. The calorimeter contains 1.13x10³ g of water and the bomb has a heat capacity of 805 J/°C. Based on this experiment, calculate AE for the combustion reaction per mole of pyrene burned (kJ/mol). C16H10(s) + 37/2 O₂(g) →→→16 CO₂(g) + 5 H₂O(1) AE = kJ/mol
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