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CHEMICAL ENGINEERING

Friction factor for fluid flow in pipe does not depend upon the

Question: Friction factor for fluid flow in pipe does not depend upon the
[A].

pipe length.

[B].

pipe roughness.

[C].

fluid density & viscosity.

[D].

mass flow rate of fluid.

Answer: Option A

Explanation:

No answer description available for this question.

Friction factor for fluid flow in pipe does not depend upon the Read More »

CHEMICAL ENGINEERING, Chemical Engineering Basics

Internal energy of a gas obeying Vanderwall’s equation of state, , depends upon its

Question: Internal energy of a gas obeying Vanderwall’s equation of state, , depends upon its
[A].

pressure & temperature.

[B].

pressure & specific volume.

[C].

temperature & specific volume.

[D].

temperature only.

Answer: Option A

Explanation:

No answer description available for this question.

Internal energy of a gas obeying Vanderwall’s equation of state, , depends upon its Read More »

CHEMICAL ENGINEERING, Chemical Engineering Basics

Joule-Thomson co-efficient is the ratio of

Question: Joule-Thomson co-efficient is the ratio of
[A].

pressure change to temperature change occuring during adiabatic compression of a gas.

[B].

pressure change to temperature change occuring during adiabatic throttling of a gas.

[C].

temperature change to pressure change occuring during adiabatic compression of a gas.

[D].

temperature change to pressure change occuring during adiabatic throttling of a gas.

Answer: Option D

Explanation:

No answer description available for this question.

Joule-Thomson co-efficient is the ratio of Read More »

CHEMICAL ENGINEERING, Chemical Engineering Basics

Increase in the entropy of a system represents the

Question: Increase in the entropy of a system represents the
[A].

degradation of energy.

[B].

decrease in system pressure.

[C].

increase in the availability of energy.

[D].

increase in the temperature.

Answer: Option A

Explanation:

No answer description available for this question.

Increase in the entropy of a system represents the Read More »

CHEMICAL ENGINEERING, Chemical Engineering Basics

In case of compression of one kg of air, the work done will be the least, when the value of polytropic index ‘n’ is

Question: In case of compression of one kg of air, the work done will be the least, when the value of polytropic index ‘n’ is
[A].

1

[B].

1.4

[C].

1.5

[D].

Y = Cp/Cv

Answer: Option A

Explanation:

No answer description available for this question.

In case of compression of one kg of air, the work done will be the least, when the value of polytropic index ‘n’ is Read More »

CHEMICAL ENGINEERING, Chemical Engineering Basics

An approximately __________ process exemplifies the flow of a gas through a very long pipe of uniform cross-section.

Question: An approximately __________ process exemplifies the flow of a gas through a very long pipe of uniform cross-section.
[A].

adiabatic

[B].

isothermal

[C].

isentropic

[D].

isochoric

Answer: Option B

Explanation:

No answer description available for this question.

An approximately __________ process exemplifies the flow of a gas through a very long pipe of uniform cross-section. Read More »

CHEMICAL ENGINEERING, Chemical Engineering Basics

Carnot cycle is also termed as the constant __________ cycle in thermodynamics.

Question: Carnot cycle is also termed as the constant __________ cycle in thermodynamics.
[A].

entropy

[B].

pressure

[C].

volume

[D].

heat

Answer: Option D

Explanation:

No answer description available for this question.

Carnot cycle is also termed as the constant __________ cycle in thermodynamics. Read More »

CHEMICAL ENGINEERING, Chemical Engineering Basics

Maxwell’s thermodynamic relations applies to the

Question: Maxwell’s thermodynamic relations applies to the
[A].

chemical systems in equilibrium.

[B].

mechanical systems in equilibrium.

[C].

irreversible thermodynamic processes.

[D].

reversible thermodynamic processes.

Answer: Option A

Explanation:

No answer description available for this question.

Maxwell’s thermodynamic relations applies to the Read More »

CHEMICAL ENGINEERING, Chemical Engineering Basics