Thermodynamics : an engineering approach / Yunus A. Çengel, Michael A. Boles, Mehmet Kanoğlu.
Material type: TextLanguage: English Publication details: New York, NY : McGraw-Hill Education, c2019.Edition: Ninth edition; International student editionDescription: xxiv, 984 pages : illustrations (some color) ; 25 cmContent type:- text
- unmediated
- volume
- 9781260092684 (paperback)
- 1260092682 (paperback)
- TJ265 C33 2019
Item type | Current library | Collection | Call number | Materials specified | Copy number | Status | Notes | Date due | Barcode |
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Books | Ladislao N. Diwa Memorial Library Reserve Section | Non-fiction | RUS TJ265 C33 2019 (Browse shelf(Opens below)) | Room use only | 76883 | 00076868 | |||
Books | Ladislao N. Diwa Memorial Library Circulation Section | Non-fiction | TJ265 C33 2019 (Browse shelf(Opens below)) | c2 | Available | 77552 | 00078825 | ||
Books | Ladislao N. Diwa Memorial Library Circulation Section | Non-fiction | TJ265 C33 2019 (Browse shelf(Opens below)) | c3 | Available | 78128 | 00079074 |
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RUS TJ260 C33 2015 Heat and mass transfer : fundamentals & applications / | RUS TJ265 B39 2016 Advanced engineering thermodynamics / | RUS TJ265 C33 2015 Thermodynamics : an engineering approach / | RUS TJ265 C33 2019 Thermodynamics : an engineering approach / | RUS TJ265 C36 2016 Energy, entropy and engines : an introduction to thermodynamics / | RUS TJ265 J71 1996 Engineering thermodynamics / | RUS TJ265 T34 2013 Advanced thermodynamics / |
Introduction and basic concepts -- Energy, energy transfer and general energy analysis -- Properties of pure substances -- Energy analysis of closed systems -- Mass and energy analysis of closed systems -- Mass and energy analysis of control volumes -- The Second law of thermodynamics -- Entropy -- Exergy -- Gas power cycles -- Vapor and combined power cycles -- Refrigeration cycles -- Thermodynamic property relations -- Gas mixtures -- Gas-vapor mixtures and air-conditioning -- Chemical reactions -- Chemical and phase equilibrium -- Compressible flow -- Renewable energy -- Appendices.
"Numerous applications of thermodynamics are required to ignite a rocket engine. The chemical energy that is stored in the fuel of the rocket engine is first converted into thermal energy and then kinetic energy. As the rocket climbs higher into the atmosphere, some of that kinetic energy is stored as gravitational potential energy. Additionally, a key thermodynamic process in rocket engines is the acceleration of combustion gases through a converging-diverging nozzle to supersonic speeds in accordance with the first and second laws of thermodynamics."--Back description of cover photo.
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