Metal interfaces
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Metal interfaces a seminar on metal interfaces held during the Thirty-third National Metal Congress and Exposition, Detroit, October 13 to 19, 1951 by

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Published by American Society for Metals in Cleveland .
Written in English


  • Metals.,
  • Surface chemistry.

Book details:

Edition Notes

Includes bibliographical references.

Statementsponsored by the American Society for Metals.
ContributionsAmerican Society for Metals.
LC ClassificationsQD171 .A62, QD171 M35
The Physical Object
Pagination335 p. :
Number of Pages335
ID Numbers
Open LibraryOL19702786M

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Schematic diagrams are provided throughout the book to illustrate interface phenomena and the principles that govern them. Metal-Dielectric Interfaces in Gigascale Electronics provides a unifying approach to the diverse and sometimes contradictory test results that are reported in the literature on metal-dielectric interfaces. The goal is to Cited by: Metal-Dielectric Interfaces in Gigascale Electronics: Thermal and Electrical Stability (Springer Series in Materials Science Book ) - Kindle edition by Ming He, Toh-Ming Lu. Download it once and read it on your Kindle device, PC, phones or tablets. Use features like bookmarks, note taking and highlighting while reading Metal-Dielectric Interfaces in Gigascale Electronics: Thermal and.   Purchase Metal-Ceramic Interfaces - 1st Edition. Print Book & E-Book. ISBN , Book Edition: 1. About this book Covering interface science from a novel surface science perspective, this seven-volume handbook offers a comprehensive overview of both these and numerous other topics.

Interfaces in Metal Matrix Composites, Volume 1 presents the position of the science of interfaces, as well as the necessary background for the effort in progress to apply these materials. The book discusses the mechanical and physical aspects of the interface; the effect of the interface on longitudinal tensile properties; and the effect of the filament-matrix interface on off-axis tensile. Interface is also a thriller with a message: Elections don't work anymore, either. This is because of television. It takes a similar technical and stylistic approach; "ordinary" folks turn out to be really important, humour that people will recognise from Stephenson's solo novels, The other collaboration between these two authors, Cobweb, was a /5. Spinterface is a term coined to indicate an interface between a ferromagnet and an organic is a widely investigated topic in molecular spintronics, since the role of interfaces plays a huge part in the functioning of a device. In particular, spinterfaces are widely studied in the scientific community because of their hybrid organic/inorganic composition. Monolayer (ML) MoS 2 is one of the most extensively studied two-dimensional (2D) semiconductors. However, it suffers from low carrier mobility and pervasive Schottky contact with metal electrodes. 2D semiconductor Bi 2 O 2 S, a sulfur analogue of 2D Bi 2 O 2 Se, has been prepared recently. ML fully hydrogen-passivated Bi 2 O 2 S 2 (Bi 2 O 2 S 2 H 2) posseses a comparable band gap ( eV.

Interface is a novel by Neal Stephenson and J. Frederick George (a pseudonym of George Jewsbury) and originally published under the joint pseudonym Stephen ts of the novel have credited the work to Stephenson and is a thriller, set in the then-future year of when a shadowy coalition bent on controlling the world economy attempts to manipulate a candidate for Author: Neal Stephenson and George Jewsbury. Metal–oxide interfaces play very critical roles in metal-catalyzed heterogeneous reactions. Atomic-level tailoring of the interfaces and discovering their atomic structures under reaction conditions are essentially important but remain challenging. Atomic layer deposition (ALD), owing to its unique character. Martin Wolf received his Ph.D. degree in physics in from the FUB, Germany, for his work on photochemistry at metal surfaces performed under the direction of Gerhard Ertl. After a postdoctoral period in Austin, Texas, with Mike White, and at IBM Yorktown Heights, with Tony Heinz, he set up a laboratory for femtosecond surface spectroscopy. The key to understand metal/electrolyte interfaces is the “electrochemical double layer,” which consists of a charged metal surface and a near‐surface regime enriched with ions of opposite sign.