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An ideal gas is taken through a cyclic thermodynamical process through four steps. The amounts of heat involved in these steps are`Q_1=5960J,Q_2=-5585J,Q_3= and -2980J Q_4 =3645 J,` respectively . The corresponding works involved are `W_1=2200J, W_2=-825 J, W_3= and -1100J W_4` respectively. The value of `W_4` is

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An ideal gas is taken through a cyclic thermodynamic process through four steps. The amounts of heat involved in these steps are Q_1=5960J, Q_2=-5585J, Q_3=-2980J and Q_4=3645J , respectively. The corresponding quantities of work involved are W_1=2200J, W_2=-825J, W_3=-1100J and W_4 respectively. (1) Find the value of W_4 . (2) What is the efficiency of the cycle

An ideal gas is taken through a cyclic thermodynamic process through four steps. The amounts of heat involved in these steps are Q_1=5960J , Q_2=-5585J , Q_3=-2980J and Q_4=3645J respectively. The corresponding quantities of work involved are W_1=2200J , W_2=-825J , W_3=-1100J and W_4 respectively. (a) Find the value of W_4 . (b) What are the efficiency of the cycle?

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An ideal gas is made go to through a cyclic thermodynamics process in four steps. The Q_(2)= 300J, Q_(3)= - 400J, Q_(4)= -100J respectively. The corresponding works involved are W_(1)= 300J, W_(2)= -100J, W_(3)= 100J and W_(4) . What is the value of W_(4) ?

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An ideal gas after going through a series of four thermodynamic states in order, reaches the initial state again (cyclic process). The amounts of heat (Q) and work (W) involved in the states are, Q_(1) = 6000J, Q_(2)= -5500 J, Q_(3)=-3000 J, Q_(4)=3500 J W_(1)=2500J, W_(2)=-1000 J, W_(3)=-1200 J, W_(4)=xxJ The ratio of net work done by the gas to the total heat absorbed by the gas in η. The value of x and eta are nearly :-

An ideal gas is subjected to cyclic process involving four thermodynamics thates, the amounts of heat (Q) and work (W) involved in each of these states. Q_1=6000J,Q_2=-5500J,Q_3=-3000J,Q_4=3500J W_1=2500J,W_2=-1000J,W_3=-1200J,W_4=xJ The ratio of the net work done by the gas to the total heat absorbed by the gas is eta . The values of x and eta respectively are

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