A container is made of copper with mass mcu = 0.100 kg at temperature Icu = 15°С_contains mH₂O = 0.160 kg of water at temperature TH₂0 = 20°C, and mice = 0.0180 kg of ice at temperature Tice = -10° C. If a block of lead with mass mpb = 0.750 kg at a temperature of Tpb = 255° C is dropped into the container, what is the final temperature of the system once it reaches thermodynamic equilibrium? Assume that no heat is lost to the surroundings. Hint: the container will also heat up. Cu 390 J/kg. K, Cwater = 4190J/kg. K Cice = 2100J/kg. K Pb = 130J/kg K, Lice-H₂O 334 × 10³ J/kg. = = " "

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Chapter2: The Kinetic Theory Of Gases
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A container is made of copper with mass mcu = 0.100 kg at temperature
Tcu = 15°С_contains mн₂0 = 0.160 kg of water at temperature TH₂0 = 20°C,
and mice = 0.0180 kg of ice at temperature Tice = -10° C. If a block of lead with
mass mpb = 0.750 kg at a temperature of Tpb = 255˚C is dropped into the
container, what is the final temperature of the system once it reaches
thermodynamic equilibrium? Assume that no heat is lost to the surroundings. Hint:
the container will also heat up.
CCu = 390 J/kg. K,
=
Cwater 4190J/kg K,
130 J/kg. K, Lice-H₂O = 334 × 10³ J/kg.
Cpb =
Cice =
2100 J/kg-K,
Transcribed Image Text:A container is made of copper with mass mcu = 0.100 kg at temperature Tcu = 15°С_contains mн₂0 = 0.160 kg of water at temperature TH₂0 = 20°C, and mice = 0.0180 kg of ice at temperature Tice = -10° C. If a block of lead with mass mpb = 0.750 kg at a temperature of Tpb = 255˚C is dropped into the container, what is the final temperature of the system once it reaches thermodynamic equilibrium? Assume that no heat is lost to the surroundings. Hint: the container will also heat up. CCu = 390 J/kg. K, = Cwater 4190J/kg K, 130 J/kg. K, Lice-H₂O = 334 × 10³ J/kg. Cpb = Cice = 2100 J/kg-K,
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