A bomb calorimeter, or a constant volume calorimeter, is a device often used to determine the heat of combustion of fuels and the energy content of foods. Ignition wires heat Thermometer Stirrer In an experiment, a 0.9256 g sample of ß-D-fructose (CH1206) is burned completely sample in a bomb calorimeter. The calorimeter is surrounded by 1.283x10 g of water. During the combustion the temperature increases from 23.04 to 25.42 °C. The heat capacity of water is 4.184 Jglec-!. Water The heat capacity of the calorimeter was determined in a previous experiment to be 983.7 J/°C. Assuming that no energy is lost to the surroundings, calculate the molar heat of combustion of ß-D- fructose based on these data. Insulated outside chamber Sample dish Burning sample Steel bomb Combustion (bomb) calorimeter. CH1206(s) + 602(g) → 6 H,O(1) + 6 CO2(g) + Energy Molar Heat of Combustion = kJ/mol

Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter6: Thermochemistry
Section: Chapter Questions
Problem 112AE: In a bomb calorimeter, the reaction vessel is surrounded by water that must be added for each...
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A bomb calorimeter, or a
constant volume calorimeter, is a
device often used to determine
the heat of combustion of fuels
and the energy content of foods.
Ignition
wires
heat
Thermometer
Stirrer
In an experiment, a 0.9256 g
sample of ß-D-fructose
(CH1206) is burned completely
sample
in a bomb calorimeter. The
calorimeter is surrounded by
1.283x10 g of water. During the
combustion the temperature
increases from 23.04 to 25.42 °C.
The heat capacity of water is
4.184 Jgl°c-!.
Water
The heat capacity of the
calorimeter was determined in a
previous experiment to be 983.7
J/°C.
Assuming that no energy is lost to
the surroundings, calculate the
molar heat of combustion of ß-D-
fructose based on these data.
Insulated
Sample
dish
Burning
sample
Steel
bomb
outside
chamber
Combustion (bomb) calorimeter.
CH1206(s) + 602(g) → 6
H,O(1) + 6 CO,(g) + Energy
Molar Heat of Combustion =
kJ/mol
Transcribed Image Text:A bomb calorimeter, or a constant volume calorimeter, is a device often used to determine the heat of combustion of fuels and the energy content of foods. Ignition wires heat Thermometer Stirrer In an experiment, a 0.9256 g sample of ß-D-fructose (CH1206) is burned completely sample in a bomb calorimeter. The calorimeter is surrounded by 1.283x10 g of water. During the combustion the temperature increases from 23.04 to 25.42 °C. The heat capacity of water is 4.184 Jgl°c-!. Water The heat capacity of the calorimeter was determined in a previous experiment to be 983.7 J/°C. Assuming that no energy is lost to the surroundings, calculate the molar heat of combustion of ß-D- fructose based on these data. Insulated Sample dish Burning sample Steel bomb outside chamber Combustion (bomb) calorimeter. CH1206(s) + 602(g) → 6 H,O(1) + 6 CO,(g) + Energy Molar Heat of Combustion = kJ/mol
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