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[" Find the work done by an ideal gas during a closed cycle "1rarr4rarr3],[P_(1)=10^(5)Pa,P_(0)=3times10^(5)Pa,P_(2)=4times10^(5)Pa,V_(2)-V_(1)=10" litre,and segm "],[" are parallel to the V-axis? "],[qquad [P_(2)],[P_(2)],[P_(1)=-(1)/(1)+sum_(i)^(4)],[(P_(1)-A_(1)^(prime))/(V_(1))=(1)/(V_(2))(1*)]]

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Determine the work done by an ideal gas doing 1 rarr 4 rarr 3rarr 2 rarr 1 . Given P_(1) = 10^(5) Pa, P_(0) = 3 xx 10^(5) Pa, P_(3) = 4 xx 10^(5) Pa and V_(2) - V_(1) = 10 L .

Determine the work done by an ideal gas doing 1 rarr 4 rarr 3rarr 2 rarr 1 . Given P_(1) = 10^(5) Pa, P_(0) = 3 xx 10^(5) Pa, P_(3) = 4 xx 10^(5) Pa and V_(2) - V_(1) = 10 L .

Determine the work done by an ideal gas doing 1 rarr 4 rarr 3rarr 2 rarr 1 . Given P_(1) = 10^(5) Pa, P_(0) = 3 xx 10^(5) Pa, P_(3) = 4 xx 10^(5) Pa and V_(2) - V_(1) = 10 L .

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One mole of an ideal gas undergoes a process P = P_(0) [1 + ((2 V_(0))/(V))^(2)]^(-1) , where P_(0) V_(0) are constants. Change in temperature of the gas when volume is changed from V = V_(0) to V = 2 V_(0) is: