(a) A rigid tank contains 1.70 moles of argon, which can be treated as an ideal gas, at a pressure of 29.6 atm. While the tank and gas maintain a constant volume and temperature, a number of moles are removed from the tank, reducing the pressure to 5.70 atm. How many moles are removed? mol (b) What If? In a separate experiment beginning from the same initial conditions, including a temperature T, of 25.0°C, half the number of moles found in part (a) are withdrawn while the temperature is allowed to vary and the pressure undergoes the same change from 29.6 atm to 5.70 atm. What is the final temperature (in °C) of the gas? °℃

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(a) A rigid tank contains 1.70 moles of argon, which can be treated as an ideal gas, at a pressure of 29.6 atm. While the tank and gas maintain a constant volume and temperature, a number of
moles are removed from the tank, reducing the pressure to 5.70 atm. How many moles are removed?
mol
(b) What If? In a separate experiment beginning from the same initial conditions, including a temperature T; of 25.0°C, half the number of moles found in part (a) are withdrawn while the
temperature is allowed to vary and the pressure undergoes the same change from 29.6 atm to 5.70 atm. What is the final temperature (in °C) of the gas?
°C
Transcribed Image Text:(a) A rigid tank contains 1.70 moles of argon, which can be treated as an ideal gas, at a pressure of 29.6 atm. While the tank and gas maintain a constant volume and temperature, a number of moles are removed from the tank, reducing the pressure to 5.70 atm. How many moles are removed? mol (b) What If? In a separate experiment beginning from the same initial conditions, including a temperature T; of 25.0°C, half the number of moles found in part (a) are withdrawn while the temperature is allowed to vary and the pressure undergoes the same change from 29.6 atm to 5.70 atm. What is the final temperature (in °C) of the gas? °C
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