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The syringe shown at right contains nitrogen gas. The Movable syringe has a movable piston of mass M. At the bottom, the piston or .

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The syringe shown at right contains nitrogen gas. The Movable syringe has a movable piston of mass M. At the bottom, the piston or . . mass M syringe Is closed by a valve, so that no gas may enter or leave the syringe. (Neglect friction between the piston and the wall of the syringe. Assume that nitrogen gas behaves Valve like an ideal gas.) (closed) Initially the syringe is in thermal equilibrium with an ice-water bath as shown at left below. The pressure and volume of the gas inside the syringe are Pinia| and Vinial, respectively. The syringe is then removed from the ice-water bath and placed in a beaker of boiling water. Ice-water bath Boiling water After the system has come to thermal equilibrium with the boiling water, is the pressure of the nitrogen gas greater than, less than, or equal to Pinitial? O the final pressure is greater than the initial pressure O the final pressure is less than the initial pressure O the final pressure is equal to the initial pressureBriefly explain the reasoning that you used to answer the previous question. After the system has come to thermal equilibrium with the boiling water, is the volume of the nitrogen gas greater than, less than, or equal to Vinitial? O the final volume is greater than the intial volume O the final volume is less than the initial volume O the final volume is equal to the initial volumeBriey explain the reasoning that you used to answer the previous question. After the system has come to thermal equilibrium with the boiling water, is the density of the nitrogen gas greater than, less than, or equal to its initial value? O the final density is greater than the initial density O the final density is less than the initial density O the final density is equal to the initial densityBriefly explain the reasoning that you used to answer the previous question. Two rigid tanks of equal size and shape are lled with different gases. The tank on the left contains oxygen, the tank on the right, hydrogen. Assume both gases are ideal. The molar mass of oxygen is 32; that of hydrogen, 2. Both containers are at the same temperature. A pressure gauge is connected to each tank. Both gauges show a reading of 23 kPa. Is the number of oxygen molecules in the left container greater than, less than, or equal to the number of hydrogen molecules in the right container? 0 the number of molecules in the left container is greater than the right O the number of molecules in the left container is less than the right 0 the number of molecules in the left container is equal to the right Briey explain the reasoning that you used to answer the previous

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