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For identical flow rate, feed composition and for elementary first order reactions, ‘N’ equal sized mixed reactors in series with a total volume ‘V’ gives the same conversion as a single plug flow reactor of volume ‘V’ for constant density systems. This is true, when the value of ‘N’ is

Question: For identical flow rate, feed composition and for elementary first order reactions, ‘N’ equal sized mixed reactors in series with a total volume ‘V’ gives the same conversion as a single plug flow reactor of volume ‘V’ for constant density systems. This is true, when the value of ‘N’ is
[A].

1

[B].

>1

[C].

[D].

≥1

Answer: Option C

Explanation:

No answer description available for this question.

For identical flow rate, feed composition and for elementary first order reactions, ‘N’ equal sized mixed reactors in series with a total volume ‘V’ gives the same conversion as a single plug flow reactor of volume ‘V’ for constant density systems. This is true, when the value of ‘N’ is Read More »

CHEMICAL ENGINEERING, Chemical Reaction Engineering

‘N’ plug flow reactors in series with a total volume ‘V’ gives the same conversion as a single plug flow reactor of volume ‘V’ for __________ order reactions.

Question: ‘N’ plug flow reactors in series with a total volume ‘V’ gives the same conversion as a single plug flow reactor of volume ‘V’ for __________ order reactions.
[A].

first

[B].

second

[C].

third

[D].

any

Answer: Option D

Explanation:

No answer description available for this question.

‘N’ plug flow reactors in series with a total volume ‘V’ gives the same conversion as a single plug flow reactor of volume ‘V’ for __________ order reactions. Read More »

CHEMICAL ENGINEERING, Chemical Reaction Engineering

In case of the irreversible unimolecular type, first order reaction, the fractional conversion at any time for constant volume system as compared to variable volume system is

Question: In case of the irreversible unimolecular type, first order reaction, the fractional conversion at any time for constant volume system as compared to variable volume system is
[A].

more

[B].

less

[C].

same

[D].

either (a) or (b), depends on other factors

Answer: Option C

Explanation:

No answer description available for this question.

In case of the irreversible unimolecular type, first order reaction, the fractional conversion at any time for constant volume system as compared to variable volume system is Read More »

CHEMICAL ENGINEERING, Chemical Reaction Engineering

In case of a consecutive unimolecular type first order reaction , the concentration of component __________ increases continuously with time.

Question: In case of a consecutive unimolecular type first order reaction , the concentration of component __________ increases continuously with time.
[A].

S

[B].

R

[C].

A

[D].

none of these

Answer: Option A

Explanation:

No answer description available for this question.

In case of a consecutive unimolecular type first order reaction , the concentration of component __________ increases continuously with time. Read More »

CHEMICAL ENGINEERING, Chemical Reaction Engineering

For a __________ order chemical reaction, , the fractional conversion of reactant ‘A’ is proportional to time.

Question: For a __________ order chemical reaction, , the fractional conversion of reactant ‘A’ is proportional to time.
[A].

zero

[B].

first

[C].

second

[D].

third

Answer: Option A

Explanation:

No answer description available for this question.

For a __________ order chemical reaction, , the fractional conversion of reactant ‘A’ is proportional to time. Read More »

CHEMICAL ENGINEERING, Chemical Reaction Engineering

For a __________ order chemical reaction, , the half life period is independent of the initial concentration of the reactant A.

Question: For a __________ order chemical reaction, , the half life period is independent of the initial concentration of the reactant A.
[A].

zero

[B].

first

[C].

second

[D].

third

Answer: Option B

Explanation:

No answer description available for this question.

For a __________ order chemical reaction, , the half life period is independent of the initial concentration of the reactant A. Read More »

CHEMICAL ENGINEERING, Chemical Reaction Engineering

In an ideal P.F.R. at steady state conditions

Question: In an ideal P.F.R. at steady state conditions
[A].

the composition of reactants remains constant along a flow path.

[B].

the conversion of the reactant varies from point to point along a flow path.

[C].

there is no lateral mixing of fluid.

[D].

there may be diffusion along the flow path.

Answer: Option B

Explanation:

No answer description available for this question.

In an ideal P.F.R. at steady state conditions Read More »

CHEMICAL ENGINEERING, Chemical Reaction Engineering