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Heat Mass Transfer Questions

  State ficks law of diffusion and explain the terms briefly, comparing with Fouriers law of heat conduction
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  Distinguish between film condensation and dropwise condensation
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  with a neat sketch discusss the regimes of boiling
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  Write a brief note on radiation shields
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  Define effectiveness of a heat exchanger and NTU. Explain their significance
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  Derive with usual notations an expression for the logarithmic mean temperature differences of a counter flow heat exchanger.
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  with the usual notations derive by dimensioal analyssi, the expression for the heat transfer coefficient in natural convection
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  Using simple lumped parameter analysis develop the expression for the temperature distribution in newtonian heating. Mention the important assumption made.
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  With usual notations deduce the expressions for the temperature distribution for a rectangular fin with end insulated assuming unidirectional heat flow.
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  Derive the usual notations the expression for thecritical radus of insulation of a sphere. Explain the significance
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  Explain the physical significance of the term thermal diffusivity. it is required to measure the temperature in the following real life situations accurately: (1) temperatyre if the outer wall of I.C. engine cylinder near top dead centre (2)Temperature of the molten coming out of furnance
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  with usual notations derive the classical Fouriers heat conduction equation in 3 dimensions
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  Highlight the peculiarities of radioactive heat transfer
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  Briefly explain the mechanism of the three modes of heat transfer with governing equations
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  Explain Radiation shield
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  Explain Weins displacement law
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  Explain Planks law
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  Explain Kirchoffs law
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  Explain Steam Boltzman law
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  Define mass concentration and molar concentration
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  Clearly explain the regions of pool boiling with a neat sketch
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  Derive an expression for LMTD for a parallel flow heat exchanger
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  Explain the physical significance of Grashoff number
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  Explain the physical significance of Nusselt number
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  Explain the physical significance of Reynolds number
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  Explain the physical significance of pandtl number
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  A tube of 0.036m OD and 40cm length is maintained at a uniform temperture of 100 degree celicus. Determine the rate of heat transfer form the surface of the tube when (i) the tube is vertical and (ii) the tube is horizontal
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  Derive an expression for the instantaneours and totla heat flow in terms of ht eproduct of Biot Number and fourier number in one dimensional transient heat conduction
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  Derive an expression for the temperature distribution for pin fin, when the tip of the fin is insulated
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

  Derive an expression for the temperature distribution and the rate of heat transfer for a hollow cylinder
(class: BE/BTech - Common Subjects )    Heat & Mass Transfer

    

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