The net work done by an ideal gas going through the cycle as shown in the $P-V$ diagram below is

  • A
    $0$
  • B
    $P_1 V_1$
  • C
    $\frac{3}{2} P_1 V_1$
  • D
    $\frac{1}{2} P_1 V_1$

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In the given $PV$ diagram,a system goes from state $P$ to state $Q$ along two different paths. Along path $1$,the system is given $1000 \ J$ of heat. The work done by the system along path $1$ is $100 \ J$ more than the work done along path $2$. How much heat is transferred along path $2$ (in $J$)?

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$A$ monoatomic ideal gas goes through a cyclic process as shown in the figure. The efficiency of this process is (in $\%$)

Two moles of an ideal monoatomic gas undergo a cyclic process as shown in the figure. The temperatures in different states are given as $6 T_1 = 3 T_2 = 2 T_4 = T_3 = 2400 \text{ K}$. The work done by the gas during the complete cycle is $(R = \text{Universal gas constant})$ (in $R$)

$A$ $P-T$ graph is shown for a cyclic process. Select the correct statement regarding this.

The portion $AB$ of the indicator diagram representing the state of matter denotes:

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