mochemistry [References] TUTOR Thermal Equilibrium I A 44.4 g sample of copper at 99.8 °C is carefully placed into an insulated container containing 157 g of water at 18.5 °C. Calculate the final temperature when thermal equilibrium is reached. Assume there is no energy transferred to or from the container. Specific heat capacities: Cu = 0.385 J gl °C-1 H2O = 4.184 J gl °C-1 °C Submit Show Approach Show Tutor Steps Submit Answer Try Another Version 10 item attempts remaining
mochemistry [References] TUTOR Thermal Equilibrium I A 44.4 g sample of copper at 99.8 °C is carefully placed into an insulated container containing 157 g of water at 18.5 °C. Calculate the final temperature when thermal equilibrium is reached. Assume there is no energy transferred to or from the container. Specific heat capacities: Cu = 0.385 J gl °C-1 H2O = 4.184 J gl °C-1 °C Submit Show Approach Show Tutor Steps Submit Answer Try Another Version 10 item attempts remaining
Chemistry
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[References]
TUTOR Thermal Equilibrium I
A 44.4 g sample of copper at 99.8 °C is carefully placed into an insulated container containing 157 g of water at 18.5 °C. Calculate the final temperature
when thermal equilibrium is reached.
Assume there is no energy transferred to or from the container.
Specific heat capacities:
Cu = 0.385 J gl °C-1
H2O = 4.184 J gl °C-1
°C
Submit
Show Approach Show Tutor Steps
Submit Answer
Try Another Version
10 item attempts remaining](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F7a31e457-fca3-453a-9390-44ae16db21a6%2F402585d7-3390-4cbb-bc4a-17d5a3c9f0eb%2Fse4tjo9_processed.jpeg&w=3840&q=75)
Transcribed Image Text:mochemistry
[References]
TUTOR Thermal Equilibrium I
A 44.4 g sample of copper at 99.8 °C is carefully placed into an insulated container containing 157 g of water at 18.5 °C. Calculate the final temperature
when thermal equilibrium is reached.
Assume there is no energy transferred to or from the container.
Specific heat capacities:
Cu = 0.385 J gl °C-1
H2O = 4.184 J gl °C-1
°C
Submit
Show Approach Show Tutor Steps
Submit Answer
Try Another Version
10 item attempts remaining
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