| 1 | Fluid flow equations | 
| 2 | Inviscid flows & incompressible viscous | 
| 3 | Fluid machinery | 
| 4 | Thermodynamic basic concepts | 
| 5 | Dimensional analysis | 
| 6 | Propulsion and heat transfer basics | 
| 7 | Air standard cycles | 
| 8 | Pure substance properties | 
| 9 | Beam stresses | 
| 10 | Torsion | 
| 11 | Springs and columns | 
| 12 | Biaxial stress system | 
| 13 | Statically indeterminate and determinate structures  | 
| 14 | Energy methods | 
| 15 | Failure theories | 
| 16 | Induced stresses | 
| 17 | Compressors, combustion chambers, gas turbines flow; gas turbine nozzles  | 
| 18 | Unsymmetrical bending | 
| 19 | Open/closed sections shear flow | 
| 20 | Buckling of plates & stress analysis | 
| 21 | Computational fluid dynamics fundamentals  | 
| 22 | Grid generation | 
| 23 | Isoparametric/continuum elements | 
| 24 | Finite volume methods & time dependent methods, finite element methods  | 
| 25 | Flight mechanics basics | 
| 26 | Configurations, structure, control systems, instruments, engine of aircraft  | 
| 27 | Airplane power plants | 
| 28 | Air conditioning & pressurizing | 
| 29 | Airfoil theory | 
| 30 | Subsonic wing theory | 
| 31 | Steady level flight/gliding & climbing flight | 
| 32 | Accelerated flight of airplanes | 
| 33 | Rocket propulsion systems & hypersonic air breathing fundamentals  | 
| 34 | Stability/control of airplanes | 
| 35 | Supersonic flow fundamentals | 
| 36 | High speed flow experimental techniques | 
| 37 | High speed flows on wings, airplanes, and propulsion standards  |