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Chemical Engineering Thermodynamics

Chemical Engineering Thermodynamics
Chemical potential is a/an

Both B and C
Extensive property
Force which drives the chemical system to equilibrium
Intensive property

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Chemical Engineering Thermodynamics
The efficiency of an Otto engine compared to that of a diesel engine, for the same compression ratio will be

Less
Same
More
Data insufficient to predict

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Chemical Engineering Thermodynamics
Those solutions in which there is no volume change upon mixing the components in the liquid state and which, when diluted do not undergo any heat change (i.e. heat of dilution is zero), are called __________ solutions.

Ideal
None of these
Real
Isotonic

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Chemical Engineering Thermodynamics
Entropy change in case of reversible adiabatic process is

Minimum
Maximum
Indeterminate
Zero

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Chemical Engineering Thermodynamics
The value of Joule-Thomson co-efficient, in case where cooling occurs after the throttling process is

+ve
-ve
∞

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Chemical Engineering Thermodynamics
Co-efficient of performance for a reversed Carnot cycle working between temperatures T₁ and T₂ (T₁ > T₂) is

T₂/(T₁ - T₂)
(T₁ - T₂)/T₁
T₁/(T₁ - T₂)
(T₁ - T₂)/T₂

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