Solid State Physics Assignment Help | Solid State Physics Homework Help

Solid State Physics Assignment Homework help

Solid-state physics is the branch of physics that deals with the study of solids or rigid matter through methods such as quantum mechanics, crystallography, electromagnetism and metallurgy. It helps to understand the properties of solid materials on a wider and larger level by taking into consideration the atomic level properties. Thus solid state physics forms the foundation of theoretical level material science. Solid state physics has a wide range of applications in transistors and semiconductor technology.

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Tutorhelpdesk.com offers online Solid State Physics homework help and Solid State Physics assignment help in all areas of Solid State Physics. Our tutors are well trained and experienced in all topics starting from basic level Solid State Physics to advanced college level Solid State Physics. We provide homework assignment help in all areas of Solid State Physics listed below.

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We offer Solid State Physics Assignment Homework help in following areas of Solid State Physics:

  • Crystal Structure
  • Amorphous and Crystalline Materials
  • Lattice Translation Vectors
  • Unit Cell
  • Reciprocal Lattice
  • Types of Lattices
  • Brillouin Zones
  • Types of Bonds
  • Ionic Bond
  • Covalent Bond
  • Van der Waals Bond
  • Diffraction of x-rays by Crystals
  • Bragg’s Law
  • Elementary Lattice Dynamics
  • Lattice Vibrations and Phonons
  • Linear Monoatomic and Diatomic Chains
  • Acoustical and Optical Phonons
  • Einstein and Debye Theories of Specific Heat of Solids
  • T3 Law
  • Magnetic Properties of Matter
  • Dia, Para, Ferri and Ferromagnetic Materials
  • Curie’s law
  • Weiss’s Theory of Ferromagnetism
  • Discussion of B-H Curve
  • Hysteresis and Energy Loss
  • Dielectric Properties of Materials
  • Polarization
  • Dielectric Constant.
  • Electric Susceptibility
  • Polarizability
  • Clausius-Mosotti Equation
  • Complex Dielectric Constant
  • Electrical Properties of Materials
  • Bloch Theorm
  • Kronig-Penney Model
  • Effective Mass of Electron
  • Concept of Holes
  • Band Gaps
  • Energy Band Diagram
  • Law of Mass Action
  • Insulators, and Semiconductors
  • Direct and Indirect Band Gap
  • Intrinsic and Extrinsic Semiconductors
  • p and n Type Semiconductors
  • Conductivity in Semiconductors
  • Hall Effect in Semiconductors
  • Superconductivity
  • Critical Temperature
  • Critical magnetic field
  • Meissner effect
  • Type I and type II Superconductors
  • London’s Equation
  • Penetration Depth
  • Isotope effect
  • Josephson Effect

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