Thomas Hochrainer

Univ.-Prof. Dipl.-Math.techn. Dr.-Ing.

20032020
Wenn Sie Änderungen in Pure vorgenommen haben, werden diese hier in Kürze erscheinen.

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Ingenieurwesen & Materialwissenschaft

Plasticity
Dislocations (crystals)
Tensors
Plastic flow
Kinematics
Crystals
Twinning
Computer simulation
Steel
Textures
Thermodynamics
Fluxes
Plastics
Thin films
Swaging
Finite element method
Defects
Single crystals
Burgers vector
Conservation
Plastic deformation
Shot peening
Statistical mechanics
Mechanics
Physics
Crystal defects
Galerkin methods
Stochastic models
Equations of motion
Shearing
Microstructure
Microelectronics
Boundary conditions
Irradiation
Metals
Machining
Point defects
Kinetics
Strain hardening
Wire

Chemische Bestandteile

Plasticity
Dislocations (crystals)
Steel
Tensors
Plastic flow
Twinning
Textures
Computer simulation
Crystals
Fluxes
Thermodynamics
Thin films
Single crystals
Kinematics
Burgers vector
Plastics
Shot peening
Statistical mechanics
Mechanics
Crystal defects
Galerkin methods
Stochastic models
Equations of motion
Shearing
Microelectronics
Metals
Conservation
Machining
Finite element method
Physics
Boundary conditions
Irradiation
Strain hardening

Physik & Astronomy

General

continuums
alignment
plastic flow
voids
slip
simulation
continuum modeling
steels
expansion
formulations
curvature
multipoles
derivation
boundary conditions
textures
thin films

Chemistry and Materials

plastic properties
twinning

Mathematical and Computer Sciences

tensors
Galerkin method

Physics

kinematics

Engineering

screws