A 100 g aluminum calorimeter contains 250 g of water. The two substances are in thermal equilibrium at 10°C. Two metallic blocks are placed in the water. One is a 50 g piece of copper at 69°C. The other sample has a mass of 63 g and is originally at a temperature of 100°C. The entire system stabilizes at a final temperature of 20°C. Determine the specific heat of the unknown second sample. J/kg-°C

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Chapter13: Temperature, Kinetic Theory, And The Gas Laws
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Problem 70PE: Unreasonable Results (a) An automobile mechanic claims that an aluminum rod fits loosely into its...
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PRACTICE ANOTHER
A 100 g aluminum calorimeter contains 250 g of water. The two substances are in thermal equilibrium at 10°C. Two metallic blocks are placed in the water. One is a 50 g piece of copper
at 69°C. The other sample has a mass of 63 g and is originally at a temperature of 100°C. The entire system stabilizes at a final temperature of 20°C. Determine the specific heat of the
unknown second sample.
J/kg-°C
Transcribed Image Text:PRACTICE ANOTHER A 100 g aluminum calorimeter contains 250 g of water. The two substances are in thermal equilibrium at 10°C. Two metallic blocks are placed in the water. One is a 50 g piece of copper at 69°C. The other sample has a mass of 63 g and is originally at a temperature of 100°C. The entire system stabilizes at a final temperature of 20°C. Determine the specific heat of the unknown second sample. J/kg-°C
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