The app is a complete handbook of Intermediate Heat and Mass Transfer which covers important topics, notes, materials & news on the course. Download the App as a reference material & digital book for Mechanical engineering programs & degree courses.
This useful App lists 145 topics with detailed notes, diagrams, equations, formulas & course material, the topics are listed in 5 chapters. The app is must have for all the engineering science students & professionals.
The app provides quick revision and reference to the important topics like a detailed flash card notes, it makes it easy & useful for the student or a professional to cover the course syllabus quickly just before an exams or job interviews.
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Use this useful engineering app as your education tool, utility, tutorial, book, a reference guide for syllabus and explore study course material, aptitude tests & project work.
Track your learning, set reminders, edit, add favourite topics, share the topics on social media. Some of the topics Covered in the app are:
1. Concept of mechanism of heat flow 2. Conduction 3. Convection 4. Radiation 5. Relationship to the first law of thermodynamics 6. Conservation of total energy 7. The surface energy balance 8. Relationship to the second law of thermodynamics and the efficiency of heat engines 9. Units and dimensions 10. Analysis of heat transfer problems: methodology 11. Introduction to conduction 12. The conduction rate equation 13. The thermal properties of matter 14. The thermal properties of the solid state 15. The solid state: micro- and nano-scale effects 16. The fluid state 17. Other relevant properties 18. The heat diffusion equation 19. Cylindrical coordinates 20. Micro scale effects 21. Boundary and initial conditions 22. Steady state one-dimensional heat conduction 23. Plane wall 24. Thermal resistance 25. The composite wall 26. Contact resistance 27. Porous media 28. An alternative conduction analysis 29. Radial systems in cylinder 30. Radial system in sphere 31. Conduction with thermal energy generation 32. Heat transfer from extended surfaces 33. A general conduction analysis 34. Fins of uniform cross-sectional area 35. Fin performance 36. Fins of non-uniform cross-sectional area 37. Efficiency of common fin shapes 38. Overall surface efficiency 39. The bio-heat equation 40. Thermoelectric power generation 41. Conduction through thin gas layers 42. Alternative approaches 43. The conduction shape factor and the dimensionless conduction heat rate 44. Conduction shape factors and dimensionless conduction heat rates for selected systems 45. Finite-difference equations 46. Finite-difference form of the heat equation 47. The energy balance method 48. Formulation of the finite-difference equation 49. Nodal finite-difference equations 50. Formulation as a matrix equation 51. Verifying the accuracy of the solution 52. Transient conduction 53. The lumped capacitance method 54. Validity of the lumped capacitance method 55. General lumped capacitance analysis 56. Radiation only in transient conduction 57. Negligible radiation in transient conduction 58. Convection only with variable convection coefficient 59. The plane wall with convection (exact solution) 60. The plane wall with convection (approximate solution)
Each topic is complete with diagrams, equations and other forms of graphical representations for better learning and quick understanding.
Intermediate Heat and Mass Transfer is part of Mechanical engineering education courses and technology degree programs of various universities.