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SYLLABUS:-

Section A
Basics and Laws : Definition of Heat Transfer, Reversible and  irreversible processes,  Modes of heat flow, Combined  heat transfer system and law of energy conservation. 
Steady State Heat Conduction :  Introduction, I-D heat  conduction  through a plane wall, long hollow cylinder,  hollow sphere, Conduction equation in Cartesian, polar and  spherical co-ordinate systems, Numericals.

Section B
Steady State Conduction with Heat Generation : Introduction, 1 – D heat conduction  with heat sources, Extended surfaces  ( fins), Fin effectiveness  2-D heat conduction ,  Numericals. 
Transient Heat Conduction :  Systems with negligible internal resistance, Transient heat  conduction in plane walls,  cylinders, spheres with convective  boundary conditions, Chart solution, Relaxation Method, Numericals.

Section C
Convection: Forced convection-Thermal and hydro-dynamic boundary layers, Equation of continuity, Momentum and  energy equations, Some results for flow over a flat  plate and  flow through tube, Fluid friction and heat transfer ( Colburn analogy ), Free convection from a vertical flat plate, Empirical relations for free convection from vertical and horizontal o\planes & cylinders, Numericals. 
Thermal Radiation:  The Stephen-Boltzmann law, The black body radiation, Shape factors and their relationships, Heat exchange between non black bodies, Electrical network for radiative exchange in an enclosure of two or three gray bodies, Radiation shields, Numericals.

Section D
Heat Exchangers: Classification, Performance variables, Analysis of a parallel/counter flow heat exchanger, Heat exchanger effectiveness, Numericals. 
Heat Transfer with Change of Phase: Laminar film condensation on a vertical plate, Drop-wise condensation, Boiling regimes, Free convective, Nucleate and film boiling, Numericals.