Electronic Materials

- Principles and Applied Science

  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

Mechanical and thermal properties are reviewed and electrical and magnetic properties are emphasized. Basics of symmetry and internal structure of crystals and the main properties of metals, dielectrics, semiconductors, and magnetic materials are discussed. The theory and modern experimental data are presented, as well as the specifications of materials that are necessary for practical application in electronics. The modern state of research in nanophysics of metals, magnetic materials, dielectrics and semiconductors is taken into account, with particular attention to the influence of structure on the physical properties of nano-materials. The book uses simplified mathematical treatment of theories, while emphasis is placed on the basic concepts of physical phenomena in electronic materials. Most chapters are devoted to the advanced scientific and technological problems of electronic materials; in addition, some new insights into theoretical facts relevant to technical devices are presented. Electronic Materials is an essential reference for newcomers to the field of electronics, providing a fundamental understanding of important basic and advanced concepts in electronic materials science.

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Detaljer
Størrelse og vægt
  • Vægt1430 g
  • coffee cup img
    10 cm
    book img
    19,1 cm
    23,5 cm

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    Compressibility Magnetoresistance Phonons Spintronics Scattering Elastic waves Thermal conductivity Electrons Quasicrystals Specific heat Photons Electrets High temperature superconductivity Magnetostriction Metamaterials Surface waves Photoluminescence Recombination Dielectric Spectroscopy Nanomaterials Magnetocaloric effect Composites Ionic Conductivity Magnetic Cooling Young's Modulus Magnons Ferroelectric Photovoltaic Band theory Magneto-Optical Effects Piezoelectric Thermal expansion Quasiparticles Antiferromagnetic Antiferroelectric Atomic bonds Charge carrier generation Classes of symmetry Controllable switching elements Dielectric Losses Dielectric Permittivity diamagnetic Bulk Modulus Debye dispersion Einstein’s theory of heat capacity Electrothermal breakdown Electrochemical breakdown Electronic polarization Electronic breakdown Elements of symmetry Hall’s effect ferrimagnetic Debye’s theory of heat capacity Displacement-type ferroelectric Dipole polarization Electrostriction Elastic stiffness and compliance Electronic conductivity Invar effect Ionic polarization Lorentz dispersion ferromagnetic Nonlinear films Order-disorder ferroelectric Galvanomagnetic Polaron conductivity Polar bonding Paraelectric Photoresistivity Quantum-dimensional effects Skin effect Structural defects Thermomagnetic Mechanical stress and strain Paramagnetic Thermal capacity of metals Thermal conductivity of metals Thermostriction Relaxor ferroelectric Tensosensitivity Thermoelectromotive properties

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