An ideal gas is subjected to cyclic process involving four thermodynamic states, the amounts of heat $(Q)$…
An ideal gas is subjected to cyclic process involving four thermodynamic states, the amounts of heat $(Q)$ and work $(W)$ involved in each of these states are
$\begin{aligned}
& Q_1=6000 \mathrm{~J}, \quad Q_2=-5500 \mathrm{~J} ; Q_3=-3000 \mathrm{~J} ; \\
& Q_4=3500 \mathrm{~J} \\
& W_1=2500 \mathrm{~J} ; \quad W_2=-1000 \mathrm{~J} ; \quad W_3=-1200 \mathrm{~J} ; \\
& W_4=x \mathrm{~J} .
\end{aligned}$
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