Quantum Mechanics
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Home > Art, Film & Photography > Quantum Mechanics: Schr Dinger Equation, Double-Slit Experiment, Bra-Ket Notation, Quantum Field Theory, Quantum Entanglement
Quantum Mechanics: Schr Dinger Equation, Double-Slit Experiment, Bra-Ket Notation, Quantum Field Theory, Quantum Entanglement

Quantum Mechanics: Schr Dinger Equation, Double-Slit Experiment, Bra-Ket Notation, Quantum Field Theory, Quantum Entanglement


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About the Book

Please note that the content of this book primarily consists of articles available from Wikipedia or other free sources online. Pages: 145. Chapters: Field electron emission, Oscillator representation, Hilbert space, Uncertainty principle, Introduction to quantum mechanics, Wave function, Timeline of quantum mechanics, Path integral formulation, Bell's theorem, Matrix mechanics, Interpretations of quantum mechanics, Quantum field theory, Perturbation theory (quantum mechanics), Spinor, Quantum potential, Quantum entanglement. Excerpt: Field emission (FE) (also known as field electron emission and electron field emission) is emission of electrons induced by an electrostatic field. The most common context is FE from a solid surface into vacuum. However, FE can take place from solid or liquid surfaces, into vacuum, air, a fluid, or any non-conducting or weakly conducting dielectric. The field-induced promotion of electrons from the valence to conduction band of semiconductors (the Zener effect) can also be regarded as a form of FE. The terminology is historical because related phenomena of surface photoeffect, thermionic emission or Richardson-Dushman effect and "cold electronic emission," i.e. the emission of electrons in strong static (or quasi-static) electric fields, were discovered and studied independently from 1880s to 1930s. When field emission is used without qualifiers it typically means "cold emission." Field emission in pure metals occurs in high electric fields: the gradients are typically higher than 1 gigavolt per metre and strongly dependent upon the work function. Electron sources based on field emission have a number of applications, but it is most commonly an undesirable primary source of vacuum breakdown and electrical discharge phenomena, which engineers work to prevent. Examples of applications for surface field emission include construction of bright electron sources for high-resolution electron microscopes or to discharge spacecraft from induced charges. Devices which eliminate induced charges are termed charge-neutralizers. Field emission was explained by quantum tunneling of electrons in the late 1920s. This was one of the triumphs of the nascent quantum mechanics. The theory of field emission from bulk metals was proposed by Ralph H. Fowler and Lothar Wolfgang Nordheim. A family of approximate equations, "Fowler-Nordheim equations," is named after them. Strictly, Fowler-Nordheim equations apply only to field emission from bulk metals and (with suitable modification) to oth


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Product Details
  • ISBN-13: 9781234572822
  • Publisher: Books LLC, Wiki Series
  • Publisher Imprint: Books LLC, Wiki Series
  • Height: 246 mm
  • No of Pages: 146
  • Spine Width: 8 mm
  • Weight: 272 gr
  • ISBN-10: 1234572826
  • Publisher Date: 21 Dec 2012
  • Binding: Paperback
  • Language: English
  • Returnable: N
  • Sub Title: Schr Dinger Equation, Double-Slit Experiment, Bra-Ket Notation, Quantum Field Theory, Quantum Entanglement
  • Width: 189 mm


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