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Chemical Engineering Thermodynamics

Chemical Engineering Thermodynamics
Number of phases in a colloidal system are

2
1
4
3

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Chemical Engineering Thermodynamics
At triple point (for one component system), vapour pressure of solid as compared to that of liquid will be

More
Same
Less
More or less ; depending on the system

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Chemical Engineering Thermodynamics
The root mean square speed of molecules of a gas is equal to (where, m = mass of the molecule K = Boltzman's constant, T = absolute temperature)

√(2KT/m)
√(3KT/m)
3KT/m
√(6KT/m)

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Chemical Engineering Thermodynamics
The equation Tds = dE - PdV applies to

Single phase fluid of constant composition
Both B and C
Single phase fluid of varying composition
Open as well as closed systems

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Chemical Engineering Thermodynamics
With increase in pressure (above atmospheric pressure), the Cp of a gas

Increases
Decreases
First decreases and then increases
Remains unchanged

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Chemical Engineering Thermodynamics
The value of Cp & Cv respectively for monoatomic gases in Kcal/kg Mole . °K are

5 & 3
1.987 & 0.66
3.987 & 1.987
0.66 & 1.987

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