Two rigid tanks, called tank A and tank B, are connected to each other by a small, thermally insulated plug. The plug allows gas to flow freely between the two tanks so that they are always at the same pressure, but allows the tanks to be at different temperatures. The volume of tank B is twice the volume of tank A. Initially both tanks contain a gas at a pressure of 1.00 atm and a temperature of 27.0°C. Tank A is then heated to 330°C while the temperature of tank B stays at 27.0°C. At this point, what is the new pressure in both tanks (in atm)? atm

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Chapter1: Units, Trigonometry. And Vectors
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Two rigid tanks, called tank A and tank B, are connected to each other by a small, thermally insulated plug. The plug allows gas to flow freely between the two tanks so that they are always at the
same pressure, but allows the tanks to be at different temperatures. The volume of tank B is twice the volume of tank A. Initially both tanks contain a gas at a pressure of 1.00 atm and a
temperature of 27.0°C. Tank A is then heated to 330°C while the temperature of tank B stays at 27.0°C. At this point, what is the new pressure in both tanks (in atm)?
atm
Transcribed Image Text:Two rigid tanks, called tank A and tank B, are connected to each other by a small, thermally insulated plug. The plug allows gas to flow freely between the two tanks so that they are always at the same pressure, but allows the tanks to be at different temperatures. The volume of tank B is twice the volume of tank A. Initially both tanks contain a gas at a pressure of 1.00 atm and a temperature of 27.0°C. Tank A is then heated to 330°C while the temperature of tank B stays at 27.0°C. At this point, what is the new pressure in both tanks (in atm)? atm
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