Suppose 4.00 moles of an ideal gas in a 5.00 L container at 20 atm expands, a. Calculate how much work was done by the gas in an irreversible, isothermal expansion at a constant external pressure of 5 atm . (work, J) 4 sig. figs b. Calculate how much work was done by the gas in a reversible, isothermal expansion (work, J) 4 sig figs. Additional Given Values: R = 0 0.08205 atmLmol 1atm = 101325Pa
Suppose 4.00 moles of an ideal gas in a 5.00 L container at 20 atm expands, a. Calculate how much work was done by the gas in an irreversible, isothermal expansion at a constant external pressure of 5 atm . (work, J) 4 sig. figs b. Calculate how much work was done by the gas in a reversible, isothermal expansion (work, J) 4 sig figs. Additional Given Values: R = 0 0.08205 atmLmol 1atm = 101325Pa
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Suppose 4.00 moles of an ideal gas in a 5.00 L container at 20 atm expands, a. Calculate how much work was done by the gas in an irreversible, isothermal expansion at a constant external pressure of 5 atm . (work, J) 4 sig. figs b. Calculate how much work was done by the gas in a reversible, isothermal expansion (work, J) 4 sig figs. Additional Given Values: R = 0 0.08205 atmLmol 1atm = 101325Pa
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