Advanced Engineering Thermodynamics Question Paper 2012

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Advanced Engineering Thermodynamics Question Paper 2012 for BPUT M.Tech in Thermal Engineering or Mechanical Engineering is given below. These questions were asked in the BPUT M.Tech exam held in 2012. Text book for Advanced Engineering Thermodynamics is “Themodynamics” By P.K. Nag of TMH Publication. You will get direct questions from this book. 

Second Semester Examinations – 2012

Advanced Engineering Thermodynamics Question Paper 2012

Full Mark-70
Time-3 hrs.
Answer any Six including Question No. 1 which is compulsory
The figures in the right hand margin indicate mark.

 

1. Answer the following question in brief:

a) Is it possible that the entropy can decrease in a reversible process?

b) Can an irreversible process be isentropic?

c) Is availability function a thermodynamic property?

d) What do you understand by dead state?

e) When is Cp of a substance is equal to its Cv ?

f) What is the difference between fugacity and activity?

g) What is mean free path?

h) Explain the concept of equipartition of energy?

i) Define compressibility factor.

j) What is adiabatic flame temperature?

2. From TdS equation derive Cp-Cv = tVβ2/K.

3. The gas neon has a molecular weight of 20.183 and its critical temperature, pressure and volume are 44.5 K, 2.73 Mpa and 0.0416 m3 / kg mol. Reading from acompressibility chart for a reduced pressure of 2 and a reduced temperature of 1.3, the compresssibility factor Z is 0.7. what are the corresponding specific volume, pressure, temperature and reduced volume? 

4. Derive an expression for availability function for a flow system exchanging heat with two heat reservoirs.

5. What is Gibb’s theorem? Show that in a defusion process at constant temperature the entropy increases and the Gibbs function decreases.

6. (a) Define fugacity and activity?
(b) Explain thermomechanical exergy and chemical exergy.

7. What is the maximum work output possible from a reversible heat engine working between the two finite reservoirs of heat capacity M1Cand M2 C2 respectively. The initial temperature of the thermal reservoirs are T1 and Trespectively.

8. Write short notes on any two

a. Entropy and probability

b. Partition function

c. Fermi Direc and Bose Einstein statistics.

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