2. a quantity of 1.435 g of naphthalene (C10H8), a pungent-smelling substance used in moth repellents, was burned in a constant -volume bomb calorimeter. consequently, the temperature of the water rose from 20.17 c to 25.84 c, if the mass of water surrounding the calorimeter was exactly 2000 g and the specific heat capacity of the bomb calorimeter was 1.80 kJ/C, Calculate the heat of combustion of naphtalene , and find the total heat of combustion.

Chemistry for Engineering Students
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Chapter9: Energy And Chemistry
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Problem 9.50PAE: 9.50 When a 13.0-g sample of NaOH(s) dissolves in 400.0 mL of water in a coffee cup calorimeter, the...
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2. a quantity of 1.435 g of naphthalene
(C10H8), a pungent-smelling substance
used in moth repellents, was burned in a
constant -volume bomb calorimeter.
consequently, the temperature of the water
rose from 20.17 c to 25.84 c, if the mass of
water surrounding the calorimeter was
exactly 2000 g and the specific heat
capacity of the bomb calorimeter was 1.80
kJ/C, Calculate the heat of combustion of
naphtalene, and find the total heat of
combustion.
Transcribed Image Text:2. a quantity of 1.435 g of naphthalene (C10H8), a pungent-smelling substance used in moth repellents, was burned in a constant -volume bomb calorimeter. consequently, the temperature of the water rose from 20.17 c to 25.84 c, if the mass of water surrounding the calorimeter was exactly 2000 g and the specific heat capacity of the bomb calorimeter was 1.80 kJ/C, Calculate the heat of combustion of naphtalene, and find the total heat of combustion.
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