- MTA 000: Belonging to the Subject; not further Classified
- MTA 001: Engineering Mechanics
- MTA 009: Mathematical Principles and Data Processing in Engineering MechanicsMathematical Principles and Data Processing in Fluid Mechanics see MTA 309
- MTA 009: Mathematical Principles and Data Processing in Engineering Mechanics
- MTA 010: Mechanics of Solid Bodies; Mechanics of Rigid Bodies
- MTA 020: Strength of MaterialsStrength Test see WER 720
- MTA 025: Strength According to Type of Stress (Tensile Strength, Compressive Strength, Flexural Strength, ...)
- MTA 030: Strength According to Duration (Operation Strength, Endurance Strength,dynamic Strength,...)
- MTA 035: Fracture Mechanics; Material Fatigue; Crack FormationStress Cracking Corrosion see WER 830
- MTA 045: Other
- MTA 025: Strength According to Type of Stress (Tensile Strength, Compressive Strength, Flexural Strength, ...)
- MTA 050: Elasticity; ElastomechanicsElasticity Theory see PHY 202
- MTA 055: Elastostatics
- MTA 060: Stress, Relaxation; Lateral ContractionPhotoelasticity, Stress Analysis see MTA 080
- MTA 065: Torsion
- MTA 069: Other
- MTA 055: Elastostatics
- MTA 070: Plasticity; Plastomechanics; Viscoelasticity
- MTA 080: Photoelasticity; Experimental Stress Analysis
- MTA 090: Structural Mechanics (Structural Dynamics)
- MTA 100: Statics
- MTA 170: Lightweight Construction (in Vehicle Construction and Mechanical Engineering)
- MTA 200: KinematicsMechanisms, Machine Kinematics see MAS 016
- MTA 250: Kinetics; DynamicsMachine Dynamics see MAS 019
- MTA 300: Fluid Mechanics; Mechanics of Fluids and Gases
- MTA 309: Mathematical Principles and Data Processing in Fluid Mechanics, Computational Fluid Dynamics
- MTA 320: Hydraulics
- MTA 380: Hydromechanics; Hydrodynamics; Incompressible Flow
- MTA 390: Aerodynamics; Gas Dynamics
- MTA 400: Compressible Flow; Gas Flow
- MTA 405: Subsonic Flow
- MTA 410: Transonic Flow
- MTA 415: Supersonic Flow; Hypersonic Flow
- MTA 420: Flow Around Profiles (including Wing Profiles)
- MTA 425: Shock WavesExplosion in General, Explosives see CIT 650
- MTA 430: Others on Compressible Flow
- MTA 405: Subsonic Flow
- MTA 450: Boundary Layers / Boundary-Layer Flow
- MTA 460: Turbulence; Turbulent Flow; Vortex
- MTA 480: CavitationCavitation Erosion see WER 825
- MTA 490: Others on Fluid Mechanics
- MTA 309: Mathematical Principles and Data Processing in Fluid Mechanics, Computational Fluid Dynamics
- MTA 500: Mechanics of Other Media
- MTA 550: Technical Vibrations; Mechanical Vibrations
- MTA 600: Technical ThermodynamicsThermodynamics in General see PHY 051 ff
- MTA 620: Thermodynamic State of Objects (Phase Equilibrium)
- MTA 640: Thermodynamics of Gases and Gaseous Mixtures
- MTA 660: Thermodynamics of Vapours
- MTA 680: Thermodynamics of Mixed Phases (Vapour-Gas Mixtures,vapour-Fluid Mixtures)
- MTA 690: Thermomechanics
- MTA 700: Heat and Mass TransferBoiling , Condensing see CIT 205
- MTA 720: Heat Transfer; Heat Exchange; Heat Transport; Heat PipeHeat Accumulator see ERG 820
- MTA 800: Mass Transfer
- MTA 720: Heat Transfer; Heat Exchange; Heat Transport; Heat Pipe
- MTA 850: Heat Exchangers; Cooling; Cooling TowersCooling in Air-Conditioning Technology see MAS 960
- MTA 890: Others on Thermodynamics
- MTA 620: Thermodynamic State of Objects (Phase Equilibrium)
- MTA 900: Technical Acoustics; Sound Technology; Sound Abatement