1
BITSAT 2025
MCQ (Single Correct Answer)
+3
-1

A vessel is filled with a gas at a pressure of 76 cm of mercury at a certain temperature. The mass of gas is increased by $50 \%$ introducing more gas in the vessel at the same temperature. Now the resultant pressure of the gas is

A

76 cm of Hg

B

114 cm of Hg

C

86 cm of Hg

D

92 cm of Hg

2
BITSAT 2025
MCQ (Single Correct Answer)
+3
-1

A cylinder of radius $R$ made of a material of thermal conductivity $k_1$ is surrounded by a cylindrical shell of inner radius $R$ and outer radius $2 R$ made of a material of thermal conductivity $k_2$. The two ends of a combined system are maintained at two different temperature. There is no loss of heat across the cylindrical surface and the system is in steady state. The effective thermal conductivity of the system is

A

$k_1+k_2$

B

$\frac{k_1+3 k_2}{4}$

C

$\frac{k_1 k_2}{k_1+k_2}$

D

$\frac{3 k_1+k_2}{4}$

3
BITSAT 2025
MCQ (Single Correct Answer)
+3
-1

In a certain process, 400 cal of heat is supplied to a system and at the same time 105 J of mechanical work was done on the system. The increase in its internal energy is

A

20 cal

B

303 cal

C

404 cal

D

425 cal

4
BITSAT 2025
MCQ (Single Correct Answer)
+3
-1

Two rods $P$ and $Q$ have equal lengths. Their thermal conductivities are $K_1$ and $K_2$ and cross-sectional areas are $A_1$ and $A_2$. When the temperature at ends of each rod are $T_1$ and $T_2$ respectively, the rate of flow of heat through $P$ and $Q$ will be equal, if

A

$\frac{A_1}{A_2}=\frac{K_2}{K_1}$

B

$\frac{A_1}{A_2}=\frac{K_2}{K_1} \times \frac{T_2}{T_1}$

C

$\frac{A_1}{A_2}=\sqrt{\frac{K_1}{K_2}}$

D

$\frac{A_1}{A_2}=\left(\frac{K_2}{K_1}\right)^2$

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