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Home > Art, Film & Photography > Polycrystals: Atomic Diffusion, Effective Diffusion Coefficient, Lattice Diffusion Coefficient, Polycrystal, Grain Boundary Diffusion Coefficient
Polycrystals: Atomic Diffusion, Effective Diffusion Coefficient, Lattice Diffusion Coefficient, Polycrystal, Grain Boundary Diffusion Coefficient

Polycrystals: Atomic Diffusion, Effective Diffusion Coefficient, Lattice Diffusion Coefficient, Polycrystal, Grain Boundary Diffusion Coefficient


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About the Book

Chapters: Atomic Diffusion, Effective Diffusion Coefficient, Lattice Diffusion Coefficient, Polycrystal, Grain Boundary Diffusion Coefficient. Source: Wikipedia. Pages: 19. Not illustrated. Free updates online. Purchase includes a free trial membership in the publisher's book club where you can select from more than a million books without charge. Excerpt: Atomic diffusion is a diffusion process whereby the random thermally-activated movement of atoms in a solid results in the net transport of atoms. For example, helium atoms inside a balloon can diffuse through the wall of the balloon and escape, resulting in the balloon slowly deflating. Other air molecules (e.g. oxygen, nitrogen) have lower mobilities and thus diffuse more slowly through the balloon wall. There is a concentration gradient in the balloon wall, because the balloon was initially filled with helium, and thus there is plenty of helium on the inside, but there is relatively little helium on the outside (helium is not a major component of air). The rate of transport is governed by the diffusivity and the concentration gradient. Interstitial Atomic diffusion across a 4-coordinated lattice. Note that the atoms often block each other from moving to adjacent sites. As per Ficks law, the net flux (or movement of atoms) is always in the opposite direction of the concentration gradient.In the crystal solid state, diffusion within the crystal lattice occurs by either interstitial or substitutional mechanisms and is referred to as lattice diffusion. In interstitial lattice diffusion, a diffusant (such as C in an iron alloy), will diffuse in between the lattice structure of another crystalline element. In substitutional lattice diffusion (self-diffusion for example), the atom can only move by substituting place with another atom. Substitutional lattice diffusion is often contingent upon the availability of point vacancies throughout the crystal lattice. Diffusing particl...More: http: //booksllc.net/?id=268403


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Product Details
  • ISBN-13: 9781158585281
  • Publisher: Books LLC
  • Publisher Imprint: Books LLC
  • Height: 152 mm
  • No of Pages: 20
  • Spine Width: 1 mm
  • Weight: 45 gr
  • ISBN-10: 1158585284
  • Publisher Date: 15 Sep 2010
  • Binding: Paperback
  • Language: English
  • Returnable: N
  • Sub Title: Atomic Diffusion, Effective Diffusion Coefficient, Lattice Diffusion Coefficient, Polycrystal, Grain Boundary Diffusion Coefficient
  • Width: 229 mm


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