thermometer A 50.8 g sample of aluminum is put into a calorimeter (see sketch at right) that contains 300.0 g of water. The aluminum sample insulated container starts off at 94.0 °C and the temperature of the water starts off at 21.0 °C. When the temperature of the water stops changing it's 23.3 °C. The pressure remains constant at 1 atm. water Calculate the specific heat capacity of aluminum according to this experiment. Be sure your answer is rounded to the correct number of significant digits. sample a calorimeter g•°C

Chemistry: An Atoms First Approach
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Chapter7: Chemical Energy
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Problem 109AE: A sample of nickel is heated to 99.8C and placed in a coffee-cup calorimeter containing 150.0 g...
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O THERMOCHEMISTRY
3/5
Solving a basic calorimetry problem
thermometer
A 50.8 g sample of aluminum is put into a calorimeter (see sketch at right) that contains 300.0 g of water. The aluminum sample
starts off at 94.0 °C and the temperature of the water starts off at 21.0 °C. When the temperature of the water stops changing it's
insulated
container
23.3 °C. The pressure remains constant at 1 atm.
water
Calculate the specific heat capacity of aluminum according to this experiment. Be sure your answer is rounded to the correct
number of significant digits.
sample
a calorimeter
J
g•°C
II
Transcribed Image Text:O THERMOCHEMISTRY 3/5 Solving a basic calorimetry problem thermometer A 50.8 g sample of aluminum is put into a calorimeter (see sketch at right) that contains 300.0 g of water. The aluminum sample starts off at 94.0 °C and the temperature of the water starts off at 21.0 °C. When the temperature of the water stops changing it's insulated container 23.3 °C. The pressure remains constant at 1 atm. water Calculate the specific heat capacity of aluminum according to this experiment. Be sure your answer is rounded to the correct number of significant digits. sample a calorimeter J g•°C II
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