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August 2022

In the equation, PVn = constant, if the value of n = ± ∞, then it represents a reversible __________ process.

Question: In the equation, PVn = constant, if the value of n = ± ∞, then it represents a reversible __________ process.
[A].

adiabatic

[B].

isometric

[C].

isentropic

[D].

isothermal

Answer: Option B

Explanation:

No answer description available for this question.

In the equation, PVn = constant, if the value of n = ± ∞, then it represents a reversible __________ process. Read More »

CHEMICAL ENGINEERING, Chemical Engineering Thermodynamics

With increase in temperature, the internal energy of a substance

Question: With increase in temperature, the internal energy of a substance
[A].

increases

[B].

decreases

[C].

remains unchanged

[D].

may increase or decrease; depends on the substance

Answer: Option A

Explanation:

No answer description available for this question.

With increase in temperature, the internal energy of a substance Read More »

CHEMICAL ENGINEERING, Chemical Engineering Thermodynamics

Compressibility factor for almost all the gases are approximately same at the same

Question: Compressibility factor for almost all the gases are approximately same at the same
[A].

pressure and temperature.

[B].

reduced pressure and reduced temperature.

[C].

critical pressure and critical temperature.

[D].

none of these.

Answer: Option B

Explanation:

No answer description available for this question.

Compressibility factor for almost all the gases are approximately same at the same Read More »

CHEMICAL ENGINEERING, Chemical Engineering Thermodynamics

In the equation PVn = constant, if the value of n = y = Cp/Cv, then it represents a reversible __________ process.

Question: In the equation PVn = constant, if the value of n = y = Cp/Cv, then it represents a reversible __________ process.
[A].

isothermal

[B].

adiabatic

[C].

isentropic

[D].

polytropic

Answer: Option C

Explanation:

No answer description available for this question.

In the equation PVn = constant, if the value of n = y = Cp/Cv, then it represents a reversible __________ process. Read More »

CHEMICAL ENGINEERING, Chemical Engineering Thermodynamics

A two stage compressor is used to compress an ideal gas. The gas is cooled to the initial temperature after each stage. The intermediate pressure for the minimum total work requirement should be equal to the __________ mean of P1 and P2.(where, P1 and P2 are initial and final pressures respectively)

Question: A two stage compressor is used to compress an ideal gas. The gas is cooled to the initial temperature after each stage. The intermediate pressure for the minimum total work requirement should be equal to the __________ mean of P1 and P2.(where, P1 and P2 are initial and final pressures respectively)
[A].

logarithmic

[B].

arithmetic

[C].

geometric

[D].

harmonic

Answer: Option C

Explanation:

No answer description available for this question.

A two stage compressor is used to compress an ideal gas. The gas is cooled to the initial temperature after each stage. The intermediate pressure for the minimum total work requirement should be equal to the __________ mean of P1 and P2.(where, P1 and P2 are initial and final pressures respectively) Read More »

CHEMICAL ENGINEERING, Chemical Engineering Thermodynamics

Entropy, which is a measure of the disorder of a system is

Question: Entropy, which is a measure of the disorder of a system is
[A].

independent of pressure.

[B].

independent of temperature.

[C].

zero at absolute zero temperature for a perfect crystalline substance.

[D].

all (a), (b) & (c)

Answer: Option C

Explanation:

No answer description available for this question.

Entropy, which is a measure of the disorder of a system is Read More »

CHEMICAL ENGINEERING, Chemical Engineering Thermodynamics

At __________ point, all the three phases (i.e.solid, liquid and gas) co-exist.

Question: At __________ point, all the three phases (i.e.solid, liquid and gas) co-exist.
[A].

eutcetic

[B].

triple

[C].

plait

[D].

critical

Answer: Option B

Explanation:

No answer description available for this question.

At __________ point, all the three phases (i.e.solid, liquid and gas) co-exist. Read More »

CHEMICAL ENGINEERING, Chemical Engineering Thermodynamics