Seid Koric

PhD Engineering, University of Illinois

19982019
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Engineering & Materials Science

Solidification
Continuous casting
Supercomputers
Steel
Scalability
Finite element method
Plastics
Subroutines
Physics
Linear equations
Geometry
Latent heat
Factorization
Turbulent flow
Constitutive equations
Temperature
Thermal stress
Composite materials
Bone
Metals
Piezoelectric devices
Program processors
Wire
Water
Creep
Delamination
Torsional stress
Casting
Liquids
Textiles
Molds
Direct numerical simulation
Flow of fluids
Computational electromagnetics
Precision engineering
Continuum damage mechanics
Iterative methods
Stress analysis
Data storage equipment
Mechanics
Jet engines
Particle accelerators
Functionally graded materials
Volume fraction
Fluid structure interaction
Plasticity
Constitutive models
Binders
Structural design
Data transfer

Mathematics

Solidification
Multiphysics
Continuous Casting
Constitutive Law
Steel
Bone
Shell
Constitutive Equation
Finite Element
Finite Element Model
Thermal Stress
Mesh
Scalability
Heat
Metals
Simulation
Matrix Factorization
Liquid
Finite Element Modeling
Iteration
Computed Tomography
Sparse matrix
Grid
Model
Volume Fraction
High Performance
Solid Mechanics
Supercomputer
Computing
Plastics
Continuum
Fluid Flow
Newton-Raphson
Heat Transfer
Parallel Implementation
Dependent
Engineering
Meshfree
Constitutive Model
Analytical Solution
Slice
Parallel Methods
Finite Element Method
Factorization
Increment
Phase Transformation

Physics & Astronomy

General

textiles
simulation
solidification
structural engineering
mesh
scaling
lamella
microstructure
plastics
homogenizing
yarns
microbalances
fractals
grids
fluid flow
membranes
continuums

Mathematical and Computer Sciences

finite element method
supercomputers
factorization
linear equations
subroutines
computational electromagnetics

Chemistry and Materials

plastic properties
nanocomposites
liquids
composite materials
stiffness

Life Sciences

bones

Physics

latent heat
thermal conductivity
heat transfer
frequency distribution