• Mothballs are composed primarily of the hydrocarbon naphthalene (C10H8). When 1.505 g of naphthalene burns in a bomb calorimeter, the temperature rises from 23.22°C to 31.35°C. Find AErxnfor the combustion of naphthalene. The heat capacity of the bomb calorimeter, determined in a separate experiment, is 5.11 kJ/°C 62.7 kJ/mol 3.55 x10 kJ/mol 43.5 kJ/mol -3.55 x 103kJ/mol
• Mothballs are composed primarily of the hydrocarbon naphthalene (C10H8). When 1.505 g of naphthalene burns in a bomb calorimeter, the temperature rises from 23.22°C to 31.35°C. Find AErxnfor the combustion of naphthalene. The heat capacity of the bomb calorimeter, determined in a separate experiment, is 5.11 kJ/°C 62.7 kJ/mol 3.55 x10 kJ/mol 43.5 kJ/mol -3.55 x 103kJ/mol
Chemistry: Principles and Reactions
8th Edition
ISBN:9781305079373
Author:William L. Masterton, Cecile N. Hurley
Publisher:William L. Masterton, Cecile N. Hurley
Chapter8: Thermochemistry
Section: Chapter Questions
Problem 88QAP: A sample of sucrose, C12H22O11, is contaminated by sodium chloride. When the contaminated sample is...
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![• Mothballs are composed primarily of the hydrocarbon naphthalene (C10H8). When 1.505 g of naphthalene burns in a bomb calorimeter, the
temperature rises from 23.22°C to 31.35°C. Find AErxnfor the combustion of naphthalene. The heat capacity of the bomb calorimeter,
determined in a separate experiment, is 5.11 kJ/°C
62.7 kJ/mol
3.55 x10 kJ/mol
43.5 kJ/mol
-3.55 x 103kJ/mol](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F244b7bad-6e42-4cb4-b3f1-13b72f377e63%2F28dcdf2e-6564-40b3-8d07-ed8e2a5fcf3d%2F9gp4lfh_processed.jpeg&w=3840&q=75)
Transcribed Image Text:• Mothballs are composed primarily of the hydrocarbon naphthalene (C10H8). When 1.505 g of naphthalene burns in a bomb calorimeter, the
temperature rises from 23.22°C to 31.35°C. Find AErxnfor the combustion of naphthalene. The heat capacity of the bomb calorimeter,
determined in a separate experiment, is 5.11 kJ/°C
62.7 kJ/mol
3.55 x10 kJ/mol
43.5 kJ/mol
-3.55 x 103kJ/mol
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