As shown in the figure below, you have a system including a Aluminum vessel with mass Mvessel = 0.298 kg. The vessel contains water with mass Mwater = 0.290 kg. Both the vessel and water are initially at a temperature of 46.2 degrees Celsius. You add steam into the system. The steam has an initial temperature of 162.5 degrees Celsius and a mass of Msteam = 17.3467 kg. The system will reach equilibrium with all the water having vaporized at some final temperature above 100 degrees Celsius. Steam water Pressure Vessel All of the water turns to steam. • The system reaches equilibrium at T > 100⁰° C Find the system final temperature, Tfinal = Material c (J/(kg K)) Aluminum 897 1820 Beryllium Cadmium Iron 231 412 129 Lead Polyethylene Steel 2303 466 Uranium 116 Water c (J/(kg K)) ice 2090 water 4186 steam 2010 degrees Celsius Water Fusion Vaporization 2230000 L (J/kg) 334000
As shown in the figure below, you have a system including a Aluminum vessel with mass Mvessel = 0.298 kg. The vessel contains water with mass Mwater = 0.290 kg. Both the vessel and water are initially at a temperature of 46.2 degrees Celsius. You add steam into the system. The steam has an initial temperature of 162.5 degrees Celsius and a mass of Msteam = 17.3467 kg. The system will reach equilibrium with all the water having vaporized at some final temperature above 100 degrees Celsius. Steam water Pressure Vessel All of the water turns to steam. • The system reaches equilibrium at T > 100⁰° C Find the system final temperature, Tfinal = Material c (J/(kg K)) Aluminum 897 1820 Beryllium Cadmium Iron 231 412 129 Lead Polyethylene Steel 2303 466 Uranium 116 Water c (J/(kg K)) ice 2090 water 4186 steam 2010 degrees Celsius Water Fusion Vaporization 2230000 L (J/kg) 334000
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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
Transcribed Image Text:As shown in the figure below, you have a system including a Aluminum vessel with mass Myessel = 0.298 kg. The vessel contains water with mass Mwater = 0.290 kg. Both the vessel and water are initially at a
temperature of 46.2 degrees Celsius. You add steam into the system. The steam has an initial temperature of 162.5 degrees Celsius and a mass of Msteam = 17.3467 kg. The system will reach equilibrium with all
the water having vaporized at some final temperature above 100 degrees Celsius.
Beryllium
Cadmium
Steam
Iron
Lead
water
Find the system final temperature, Tfinal =
Material c (J/(kg K))
Aluminum
897
1820
231
412
129
Polyethylene 2303
Steel
466
Uranium
116
Pressure Vessel
All of the water turns to steam.
The system reaches equilibrium at T > 100° C
Water c (J/(kg K))
ice
2090
water 4186
steam 2010
degrees Celsius
Water L (J/kg)
Fusion
Vaporization 2230000
334000
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