As shown in the figure below, you have a system including a Iron cup with mass Mcup = 0.214 kg. The cup contains water with mass Mwater = 0.345 kg. Both the cup and water are initially at a temperature of 31.8 degrees Celsius. You drop ice into the system. The ice has an initial temperature of -51.0 degrees Celsius and a mass of Mice 1.1490 kg. The system will reach equilibrium with none the ice having melted, but some of the water having frozen at the final temperature of 0 degrees Celsius. ice ice water ice cup Find the mass of water frozen, mfrozen = Material c (J/(kg K)) Aluminum 897 Beryllium 1820 Cadmium 231 Iron 412 129 Lead Polyethylene 2303 Steel 466 Uranium 116 None of the ice melts. Some of the water freezes onto the ice! The system reaches equilibrium at T=0° C Water c (J/(kg K)) ice 2090 water 4186 steam 2010 kg Water Fusion Vaporization L (J/kg) 334000 2230000 Activate Go to Settin

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter20: Kinetic Theory Of Gases
Section: Chapter Questions
Problem 69PQ
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As shown in the figure below, you have a system including a Iron cup with mass Mcup = 0.214 kg. The cup contains water with mass Mwater = 0.345 kg. Both the cup and
water are initially at a temperature of 31.8 degrees Celsius. You drop ice into the system. The ice has an initial temperature of -51.0 degrees Celsius and a mass of Mice
1.1490 kg. The system will reach equilibrium with none the ice having melted, but some of the water having frozen at the final temperature of 0 degrees Celsius.
ice
ice
Beryllium
Cadmium
Iron
Lead
water
cup
Find the mass of water frozen, mfrozen =
Material c (J/(kg K))
Aluminum
897
1820
231
412
129
2303
466
116
ice
Polyethylene
Steel
Uranium
None of the ice melts.
Some of the water freezes onto the ice!
The system reaches equilibrium at T=0° C
Water c (J/(kg K))
ice 2090
water 4186
steam 2010
kg
Water L (J/kg)
Fusion
Vaporization 2230000
334000
Activate
Go to Settin
Transcribed Image Text:= As shown in the figure below, you have a system including a Iron cup with mass Mcup = 0.214 kg. The cup contains water with mass Mwater = 0.345 kg. Both the cup and water are initially at a temperature of 31.8 degrees Celsius. You drop ice into the system. The ice has an initial temperature of -51.0 degrees Celsius and a mass of Mice 1.1490 kg. The system will reach equilibrium with none the ice having melted, but some of the water having frozen at the final temperature of 0 degrees Celsius. ice ice Beryllium Cadmium Iron Lead water cup Find the mass of water frozen, mfrozen = Material c (J/(kg K)) Aluminum 897 1820 231 412 129 2303 466 116 ice Polyethylene Steel Uranium None of the ice melts. Some of the water freezes onto the ice! The system reaches equilibrium at T=0° C Water c (J/(kg K)) ice 2090 water 4186 steam 2010 kg Water L (J/kg) Fusion Vaporization 2230000 334000 Activate Go to Settin
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