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  • Fundamentals of Materials Science
  • Microstructural Evolution in Materials
  • Materials Processing
  • Thermodynamics of Materials
  • Materials for Biomedical Applications
  • Nanomechanics of Materials and Biomaterials
  • Polymer Physics
  • Ceramics Processing
  • Solid-State Chemistry
  • Physical Metallurgy
  • Electrical, Optical, and Magnetic Materials and Devices
  • Nanoscale Materials
  • Nano Processing Technology
  • Materials at Equilibrium
  • Thermodynamics and Kinetics of Materials
  • Mechanical Properties of Materials
  • Electronic and Mechanical Properties of Materials
  • Diffraction and Structure
  • Fracture and Fatigue
  • Welding and Joining Processes
  • Fabrication Technology
  • Electronic Materials and Thin Film Processing
  • Magnetic Materials
  • Photonic Materials and Devices
  • Material Technology
  • Fundamentals of Materials Science
  • Determination of Structure through Diffraction
  • Thermodynamics
  • Bonding and Structure of Materials
  • Wave-like Nature of Electrons
  • X-ray scattering
  • Structural Transitions
  • Heat Capacity
  • Phase Transformations
  • Multiphase Equilibrium
  • Engineered Alloys
  • Electronic and Magnetic Materials
  • Polymers
  • Biomaterials

  • Microstructural Evolution in Materials
  • Microstructures of Materials
  • Defects of Materials
  • Dislocations and Point Defects
  • Diffusion of materials
  • Grains and Grains Boundaries
  • Precipitation
  • Solution Kinetics
  • Electrochemical Reactions

  • Materials Processing
  • Diffusion
  • Chemical Reactions
  • Solid-state phase transformation
  • Heat and Mass Transport
  • Fluid flow during material processing
  • Material Processing and recycling

  • Thermodynamics of Materials
  • Laws of Thermodynamics
  • Chemical Reactions
  • Magnetism
  • Polarizability
  • Elasticity
  • Relations to multiphase Equilibria
  • Solution Thermodynamics
  • Statistical Thermodynamics
  • Macroscopic Equilibrium Phenomena

  • Materials for Biomedical Applications
  • Interaction between cells and biomaterials
  • Surface Chemistry
  • Physics of Plymers
  • Physics of Ceramics
  • Surface Characterization methology
  • Modification of Biomaterials surfaces
  • Biosensors and Microarrays
  • Bulk properties of implants
  • Acute and chronic response
  • Biomimetics
  • Drug Delivery
  • Tissue Engineering

  • Nanomechanics of Materials and Biomaterials
  • Lateral forces at the atomic scale
  • Atomistic Aspects of adhesion
  • Nanoindentation
  • Molecular details of fracture
  • Chemical Force Microscopy
  • Elasticity of individual macromolecular chains
  • Intermolecular interactions in polymers
  • Dynamic forces spectroscopy
  • Biomolecular bond strength measures
  • Molecular motors

  • Polymer Physics
  • Conformation of polymer chains
  • Molecular dimensions of polymer chains
  • Polymer in solutions
  • Polymer in melts
  • Polymer in Blends
  • Block copolymers
  • Crystalline of polymers
  • Rubbery Elastic States of Polymers
  • Thermodynamics of Polymer solutions
  • Thermodynamics of Polymer blends
  • Thermodynamics of Polymer crystalization
  • Liquid Crystallinity
  • Microphase separation
  • Self-assembled organic-inorganic nanocomposites
  • Polymer Engineering
  • Mechanical characterization of Polymers

  • Ceramics Processing
  • Powder product and conditioning
  • Powder drying
  • Powder forming
  • Powder sintering
  • Transport Phenomena
  • Colloid Science
  • Ceramic composite processing
  • Electronic ceramics
  • Structural Ceramics
  • Ceramic Materials
  • Phase Equilibria
  • Electrochemical Processes
  • Phase Transformations
  • Application of ceramics

  • Solid-State Chemistry
  • Electronic structure and chemical bonding
  • Atomic order
  • Characterization of atomic arrangements in crystalline
  • Amorphous solids
  • Metals
  • Ceramics
  • Semiconductors
  • Polymers
  • Proteins
  • Organic Chemistry
  • Solution Chemistry
  • Acid-base equilibria
  • Electrochemistry
  • Biochemistry
  • Chemical kinetics
  • Diffusion
  • Batteries and fuel cells
  • Photonic and biomedical devices

  • Physical Metallurgy
  • Properties of metals and alloys
  • Crystallography, defects and microstructure
  • Alloy thermodynamics and kinetics
  • Steels and aluminum alloys
  • Modern Physical Metallurgy

  • Electrical, Optical, and Magnetic Materials and Devices
  • Electrical Conductivity and Doping
  • Transistors
  • Photodetectors
  • Photovoltaics
  • Luminescence
  • Light Emitting Diodes
  • Lasers
  • Optical Phenomena
  • Photonics
  • Ferromagnetism
  • Magnetoresistance

  • Nanoscale Materials
  • Synthesis of Nano-materials
  • Lithographic Patterning of nano-materials
  • Characterization of nano-materials
  • Semiconductor
  • Metal Nanoparticles
  • Nano-wires
  • Carbon Fullerenes
  • Nanotubes
  • Organic Nanoparticles
  • Dendrimers
  • Surface Physics and Chemistry
  • Working Principles of Nano-transistors
  • Working Principles of Nano-sensors
  • Advanced nanolithography techniques

  • Nano Processing Technology
  • Nano Fabrication
  • Vacuum Processes
  • Lithography
  • Diffusion
  • Oxidation
  • Pattern Transfer
  • MOS Capacitors
  • Nanomechanical Cantilevers
  • Microfluidic mixers

  • Materials at Equilibrium
  • Law of Thermodynamics
  • Computation of Phase Diagrams
  • Statistical Thermodynamics
  • Relation between Microscopic and Macroscopic Properties
  • Computation Modeling on Equilibrium

  • Thermodynamics and Kinetics of Materials
  • Laws of Thermodynamics on Materials Processes
  • Solution Theory
  • Equilibrium Diagrams
  • Kinetics of Processes : Diffusion, Phase Transformation
  • Irreversible Thermodynamics
  • Fluid and Heat Transport
  • Morphological Instabilities
  • Gas-solid reactions
  • Liquid-solid reactions
  • Solid-solid reactions

  • Mechanical Properties of Materials
  • Elasticity
  • Viscoelasticity
  • Plasticity
  • Creep
  • Fracture
  • Fatigue
  • Structure of metals
  • Structure of Ceramics
  • Structure of Polymers
  • Application of Thin Films
  • Application of Composites
  • Application of Cellular Materials

  • Electronic and Mechanical Properties of Materials
  • Electrical Properties of Metals
  • Optical Properties of Metals
  • Magnetic Properties of Metals
  • Electrical Properties of Ceramics
  • Optical Properties of Ceramics
  • Magnetic Properties of Ceramics
  • Electrical Properties of Polymers
  • Optical Properties of Polymers
  • Magnetic Properties of Polymers
  • Semiconductor Diodes
  • Optical Detectors
  • Sensors
  • Thin Films
  • Electrons in energy bands
  • Variation Principle of Wavefunctions
  • Conductivity of Metals
  • Dielectric Function of Metals
  • Magnetic Permeability of Metals
  • Dielectric Function of Insulators
  • Study of Transistors
  • Principles of Magnetic Storage Media
  • Optical Fibers

  • Diffraction and Structure
  • X-ray and Neutron Diffraction from Laue Equations
  • Bragg's Law
  • Reciprocal Lattice
  • Distribution of Scattering Density
  • Small Angle of Scattering
  • Rietveld Analysis
  • Patterson function
  • Phase Determination

  • Fracture and Fatigue
  • Linear Elastic and Elastic-plastic fracture mechanics
  • Microstructural effects on fracture in metals
  • Microstructural effects on fracture in ceramics
  • Microstructural effects on fracture in polymers
  • Fracture in thin films
  • Fracture in Biological Material
  • Fracture in Composites
  • Toughening mechanisms
  • Crack Growth resistance
  • Creep Fracture
  • Interface Fracture Mechanics
  • Fatigue Damage
  • Dislocation Substructures
  • Fatigue Crack Growth Model
  • Variable amplitude Fatigue
  • Corrosion Fatigue

  • Welding and Joining Processes
  • Cold Welding
  • Adhesive bonding
  • Diffusion Bonding
  • Soldering
  • Brazing
  • Flames
  • Arc Welding
  • High-energy density heat sources
  • Solidification
  • Cracking Resistance
  • Shielding Methods
  • Electric Contacts

  • Fabrication Technology
  • Welding Technology
  • Brazing
  • Soldering
  • Casting
  • Forging
  • Non-destructive testing

  • Electronic Materials and Thin Film Processing
  • Processing of thin film electronic materials
  • Processing of thin film for magnetic devices
  • Processing of thin film for photonic devices
  • Oxidation
  • Junction Formation
  • Film Deposition

  • Magnetic Materials
  • Magnetostatics
  • Origin of magnetism in materials
  • Magnetic domains and domain walls
  • Magnetic Anisotropy
  • Reversible and irreversible magnetization processes
  • Hard and Soft magnetic Materials
  • Magnetic recording
  • Magnetism of Thin Films
  • Surface and Fine Particles
  • Transport in Ferromagnets
  • Magnetoresistive sensors
  • Amorphous Magnetic Materials

  • Photonic Materials and Devices
  • Optical material Design for Semiconductors
  • Optical material Design for Dielectrics
  • Optical material Design for Polymers
  • Ray Optics
  • Electromagnetic optics
  • Guide Wave Optics
  • Physics of Lightmatter interactions
  • Device Design Principles
  • LEDs
  • Laser
  • Photodetectors and Modulators
  • Fiber and Waveguide interconnect
  • Optical Filters
  • Photonic compound semiconductor materials
  • Microphotonic integrated circuits

  • Material Technology
  • Biomaterials
  • Electron Microscopy
  • High Field Characterization
  • Laser Spectroscopy
  • Material Processing
  • Material Simulation
  • Mechanical Testing
  • NMR and Magnetic Testing
  • Optical Microscopy
  • Polymer Processing
  • Powder Characterization
  • Protein Preparation
  • Spectroscopy and Gas Chromatography
  • Surface Analysis
  • Thermal Analysis
  • X-Ray Diffraction and Spectroscopy

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