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Index absorptance HT-54 cylindrical geometry see non-planar geometry absorption HT-57 adiabatic 0-5.0-9 Diesel cycle 2A-4 adiabatic efficiency see efficiency diffusivity ht-22 adiabatic flame temperature 2C-7 dissipation 1C-10 drag HT-24 Biot number HT-30, HT-36 black body HT-56, HT-63 see also radiation efficiency blade see turbine blade adiabatic efficiency IC-17, 2A-14, 2A- Brayton cycle 1A-5, 1C-5, 2A-5 15 efficiency IA-7, 1C-7, 2A-5 overall efficiency 2A-10 maximum work 1A-10 propulsive efficiency 2A-10 net work 2A-5 thermal efficiency lA-2, 1A-4, 1A-7 Breguet Range equation 2A-9 lC-2,1C-7,2A-2,2A-5,2A-8,2B-14 emittance hT-57 Carnot cycle 1A-3, IC-1, 1C-4 energy 0-5 efficiency 1A-4, 1C-2 internal 0-5.0-6.0-7 two-phase 2B-8 kinetic 0-5 coefficients of potential 0-5 sorption see absorpt enthalpy 0-6, 0-7 reflection see reflectance of formation 2C-4 transmission see transmittance entropy 1B-2, 1C-24 coefficient of performance 1A-12 generated IC-10, 1C-20 combined first and second law 1B-5 microscopic ID composite slab see slab entropy changes 1B-5, IB-6, IC-9 compressor adiabatic efficiency 2A-15 equilibrium 0-2, 0-3 conduction ht-5.ht-26 extensive properties 0-1 heat flux HT-6 one-dimensional HT-7 HT-8.HT-14 fin hr-36 17,HT-26 First Law of thermodynamics 1B-3 continuum 0-1 control mass 0-5 control volume 0-12 see also first law fora control volume0-130-1 control volume ady flow 0-14 onvection HT-5.HT-19. HT-26 Fourier,'s law HT-7 heat transfer coefficient ht-20. hT-23 free expansion 1A-14, 1B-9 near a wall hT-26 fuel-air ratio 2A-12. 2C-2 convective heat transfer coefficient see convection Gibbs equation 1B-5 COP see coefficient ofperformance gray body HT-57, HT-59 critical point 2B-3 critical radius of insulation ht-30 heat 0-5 cycle see thermodynamic cycle two-phase systems 2B-6Index absorptance HT-54 absorption HT-57 adiabatic 0-5, 0-9 adiabatic efficiency see efficiency adiabatic flame temperature 2C-7 Biot number HT-30, HT-36 black body HT-56, HT-63 see also radiation blade see turbine blade Brayton cycle 1A-5, 1C-5, 2A-5 efficiency 1A-7, 1C-7, 2A-5 maximum work 1A-10 net work 2A-5 Breguet Range equation 2A-9 Carnot cycle 1A-3, 1C-1, 1C-4 efficiency 1A-4, 1C-2 two-phase 2B-8 coefficients of absorption see absorptance reflection see reflectance transmission see transmittance coefficient of performance 1A-12 combined First and Second Law 1B-5 composite slab see slab compressor adiabatic efficiency 2A-15 conduction HT-5, HT-26 heat flux HT-6 one-dimensional HT-7, HT-8, HT-14, HT-17,HT- 26 continuum 0-1 control volume 0-12 see also first law for a control volume convection HT-5, HT-19, HT-26 heat transfer coefficient HT-20, HT-23 near a wall HT-26 convective heat transfer coefficient see convection COP see coefficient of performance critical point 2B-3 critical radius of insulation HT-30 cycle see thermodynamic cycle cylindrical geometry see non-planar geometry Diesel cycle 2A-4 diffusivity HT-22 dissipation 1C-10 drag HT-24 efficiency adiabatic efficiency 1C-17, 2A-14, 2A- 15 overall efficiency 2A-10 propulsive efficiency 2A-10 thermal efficiency 1A-2, 1A-4, 1A-7, 1C-2, 1C-7, 2A-2, 2A-5, 2A-8, 2B-14 emittance HT-57 energy 0-5 internal 0-5, 0-6, 0-7 kinetic 0-5 potential 0-5 enthalpy 0-6, 0-7 of formation 2C-4 entropy 1B-2, 1C-24 generated 1C-10, 1C-20 microscopic 1D entropy changes 1B-5, 1B-6, 1C-9 equilibrium 0-2, 0-3 extensive properties 0-1 fin HT-36 First Law of thermodynamics 1B-3 control mass 0-5 control volume 0-13, 0-14 steady flow 0-14 Fourier's law HT-7 free expansion 1A-14, 1B-9 fuel-air ratio 2A-12, 2C-2 Gibbs equation 1B-5 gray body HT-57, HT-59 heat 0-5 two-phase systems 2B-6
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