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Mee413 Books

Fundamentals of heat and mass transfer, 7th Edition

Author: Theodore Bergman, Adrienne Lavine, Frank Incropera, David DeWitt

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: ENG304, MEE413

Topics: Conduction, Steady-State Conduction, Transient Conduction, Convection, external flow, internal flow, free convection, boiling, condensation, heat exchanger, radiation, diffusion mass transfer, Thermophysical Properties of Matter, Convection Transfer Equations

Fundamentals of heat and mass transfer, 7th Edition Instructors Solution manual

Author: Theodore Bergman, Adrienne Lavine, Frank Incropera, David DeWitt

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: ENG304, MEE413

Topics: Conduction, Steady-State Conduction, Transient Conduction, Convection, external flow, internal flow, free convection, boiling, condensation, heat exchanger, radiation, diffusion mass transfer, Thermophysical Properties of Matter, Convection Transfer Equations

Heat and Mass Transfer, Fifth edition

Author: RK Rajput

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: ENG304, MEE413

Topics: heat transfer, thermodynamics, path function, heat conduction, dielectric heating, conduction unsteady state, hydrodynamics, stream function, laminar flow, turbulent flow, dimensional analysis, forced convection, free convection, boiling, condensation, heat exchangers, thermal radiation, mass transfer

Heat transfer ,Tenth edition

Author: JP Holman

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: ENG304, MEE413

Topics: Steady-State Conduction, Unsteady-State Conduction, radiation heat transfer, natural convection systems, heat exchangers, mass transfer

Solutions Manual for Heat and mass transfer,Fifth edition

Author: Yunus cengel, Afshin Ghajar

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: ENG304, MEE413

Topics: Heat Conduction Equation, Steady Heat Conduction, Transient Heat Conduction, Numerical Methods in Heat Conduction, External Forced Convection, Fundamentals of Convection, Internal Forced Convection, Natural Convection, convection, Boiling, Condensation, Heat Exchangers, Thermal Radiation, Radiation Heat Transfer, Cooling of Electronic Equipment, Heating of Buildings, Cooling, of Buildings, Refrigeration of Foods, Freezing of Foods

Heat and mass transfer with web chapters,Fifth edition

Author: Yunus cengel, Afshin Ghajar

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: ENG304, MEE413

Topics: Heat Conduction Equation, Steady Heat Conduction, Transient Heat Conduction, Numerical Methods in Heat Conduction, External Forced Convection, Fundamentals of Convection, Internal Forced Convection, Natural Convection, convection, Boiling, Condensation, Heat Exchangers, Thermal Radiation, Radiation Heat Transfer, Cooling of Electronic Equipment, Heating of Buildings, Cooling, of Buildings, Refrigeration of Foods, Freezing of Foods

Heat Transfer Textbook,4th edition

Author: John lienhard IV, John lienhard V

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: ENG304, MEE413

Topics: problem of heat exchange, heat conduction, heat exchanger design, thermal resistance, heat transfer coefficient, heat conduction, transient heat conduction, multidimensional heat conduction, convective heat transfer, forced convection, natural convection, phase configuration, radiative heat transfer, mass transfer, convection

Solution manual to accompany Heat transfer, Tenth edittion

Author: JP Holman

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: ENG304, MEE413

Topics: Steady-State Conduction, Unsteady-State Conduction, radiation heat transfer, natural convection systems, heat exchangers, mass transfer

Advanced heat and mass transfer note

Author: Ogueke

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: MEE413

Topics: Conduction, nodal analysis, finite difference method, heat transfer

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