A copper pot with a mass of 0.500 kg contains 0.170 kg of water, and both are at a temperature of 18.8 °C. A 0.250 kg block of iron at 85.9 °C is dropped into the pot. Find the final temperature of the system, assuming no heat loss to the surroudings. (Cwater = 4.19 ×10³ J/(kg-K). Ccopper = 0.39 x103 J/(kg-K), Ciron = 0.47×103 J/(kg-K) ). Normal format and 3 SF.

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Chapter17: Energy In Thermal Processes: The First Law Of Thermodynamics
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Help me please to solve this problem step by step and give answer in normal format and 3 significant figures
A copper pot with a mass of 0.500 kg contains 0.170 kg of water, and both are at a temperature of 18.8 °C. A 0.250 kg block of iron at 85.9
°C is dropped into the pot. Find the final temperature of the system, assuming no heat loss to the surroudings. (Cwater = 4.19×10³
= 0.39 x103 J/(kg-K), Ciron = 0.47×103 J/(kg-K) ). Normal format and 3 SF.
J/(kg-K). Ccopper
Transcribed Image Text:A copper pot with a mass of 0.500 kg contains 0.170 kg of water, and both are at a temperature of 18.8 °C. A 0.250 kg block of iron at 85.9 °C is dropped into the pot. Find the final temperature of the system, assuming no heat loss to the surroudings. (Cwater = 4.19×10³ = 0.39 x103 J/(kg-K), Ciron = 0.47×103 J/(kg-K) ). Normal format and 3 SF. J/(kg-K). Ccopper
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