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Chemical Engineering Thermodynamics

The ammonia synthesis reaction represented by N2 + 3H2 2NH3 ; ΔH = – 22.4 kcal, is

Question: The ammonia synthesis reaction represented by N2 + 3H2 2NH3 ; ΔH = – 22.4 kcal, is
[A].

endothermic

[B].

exothermic

[C].

isothermal

[D].

adiabatic

Answer: Option B

Explanation:

No answer description available for this question.

The ammonia synthesis reaction represented by N2 + 3H2 2NH3 ; ΔH = – 22.4 kcal, is Read More »

CHEMICAL ENGINEERING, Chemical Engineering Thermodynamics

In the reaction, represented by, 2SO2 + O2 2SO3; ΔH = – 42 kcal; the forward reaction will be favoured by

Question: In the reaction, represented by, 2SO2 + O2 2SO3; ΔH = – 42 kcal; the forward reaction will be favoured by
[A].

low temperature

[B].

high pressure

[C].

both (a) and (b)

[D].

neither (a) nor (b)

Answer: Option C

Explanation:

No answer description available for this question.

In the reaction, represented by, 2SO2 + O2 2SO3; ΔH = – 42 kcal; the forward reaction will be favoured by Read More »

CHEMICAL ENGINEERING, Chemical Engineering Thermodynamics

In the ammonia synthesis reaction, N2 + 3H2 2NH3 + 22.4 kcal, the formation of NH3 will be favoured by

Question: In the ammonia synthesis reaction, N2 + 3H2 2NH3 + 22.4 kcal, the formation of NH3 will be favoured by
[A].

high temperature.

[B].

low pressure.

[C].

low temperature only.

[D].

both low temperature and high pressure.

Answer: Option D

Explanation:

No answer description available for this question.

In the ammonia synthesis reaction, N2 + 3H2 2NH3 + 22.4 kcal, the formation of NH3 will be favoured by Read More »

CHEMICAL ENGINEERING, Chemical Engineering Thermodynamics

In the decomposition of PCl5 represented by, PCl5 PCl3 + Cl2, decrease in the pressure of the system will __________ the degree of dissociation of PCl5.

Question: In the decomposition of PCl5 represented by, PCl5 PCl3 + Cl2, decrease in the pressure of the system will __________ the degree of dissociation of PCl5.
[A].

increase

[B].

decrease

[C].

not alter

[D].

none of these

Answer: Option A

Explanation:

No answer description available for this question.

In the decomposition of PCl5 represented by, PCl5 PCl3 + Cl2, decrease in the pressure of the system will __________ the degree of dissociation of PCl5. Read More »

CHEMICAL ENGINEERING, Chemical Engineering Thermodynamics

In case of the decomposition of hydroiodic acid (2HI H2 + I2), addition of H2 (at equilibrium condition) will

Question: In case of the decomposition of hydroiodic acid (2HI H2 + I2), addition of H2 (at equilibrium condition) will
[A].

increase the partial pressure of I2.

[B].

decrease the partial pressure of HI.

[C].

diminish the degree of dissociation of HI.

[D].

none of these.

Answer: Option C

Explanation:

No answer description available for this question.

In case of the decomposition of hydroiodic acid (2HI H2 + I2), addition of H2 (at equilibrium condition) will Read More »

CHEMICAL ENGINEERING, Chemical Engineering Thermodynamics

In the reaction, H2 +I2 2HI, addition of an inert gas will

Question: In the reaction, H2 +I2 2HI, addition of an inert gas will
[A].

increase the partial pressure of H2.

[B].

increase the partial pressure of I2.

[C].

increase the total pressure and hence shift the equilibrium towards the right.

[D].

not effect the equilibrium conditions

Answer: Option D

Explanation:

No answer description available for this question.

In the reaction, H2 +I2 2HI, addition of an inert gas will Read More »

CHEMICAL ENGINEERING, Chemical Engineering Thermodynamics

In the reaction; N2 + O2 2NO, increasing the pressure will result in

Question: In the reaction; N2 + O2 2NO, increasing the pressure will result in
[A].

shifting the equilibrium towards right,

[B].

shifting the equilibrium towards left.

[C].

no change in equilibrium condition.

[D].

none of these.

Answer: Option C

Explanation:

No answer description available for this question.

In the reaction; N2 + O2 2NO, increasing the pressure will result in Read More »

CHEMICAL ENGINEERING, Chemical Engineering Thermodynamics

As the temperature is lowered towards the absolute zero, the value of, then approaches

Question: As the temperature is lowered towards the absolute zero, the value of, then approaches
[A].

unity

[B].

zero

[C].

that of the heat of reaction

[D].

infinity

Answer: Option B

Explanation:

No answer description available for this question.

As the temperature is lowered towards the absolute zero, the value of, then approaches Read More »

CHEMICAL ENGINEERING, Chemical Engineering Thermodynamics