Materials science, testing and informatics IV

selected, peer reviewed papers from the 6th Hungarian Conference on Materials Science, Siófok, Hungary, October 14-16, 2007
  • 456 Pages
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Trans Tech Publications , Stafa-Zurich, Switzerland, Enfield, NH
Materials science -- Congresses, Materials -- Testing -- Congr
Other titlesPapers from the 6th Hungarian Conference on Materials Science
Statementedited by P.J. Szabó, T. Réti, T. Czigány.
GenreCongresses
SeriesMaterials science forum -- v. 589
ContributionsSzabó, P. J., Réti, T., Czigány, T.
Classifications
LC ClassificationsTA401.3 .H86 2007
The Physical Object
Paginationxiv, 456 p. :
ID Numbers
Open LibraryOL23195080M
ISBN 100878493719
ISBN 139780878493715
LC Control Number2009417350

Review from Ringgold Inc., ProtoView: This volume contains 71 reviewed papers from the October Sixth Hungarian Conference on Materials Science (which, unlike its predecessors, also covered testing and informatics). The conference and the collection were organized in five sections covering classical materials and technologies, including mechanical engineering, electrotechnics, energetics.

Materials science informatics is rooted in an analogous need to “translate” physical sciences research and discoveries into materials-based solutions to address a broad range of issues and challenges for business, government, and the environment.

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(Materials Science and Engineering) Department Materials Science and Engineering, National Institute of Technology, Tiruchirappalli – ELECTIVES (I Semester) Code Course of Study L T P C MT Mechanical Behavior of Materials 3 0 0 3 MT Selection of Materials 3 0 0 3 MT Computational Techniques 3 0 0 3.

What is “materials informatics”. Why do we need informatics for materials science and engineering. What experimental and computational resources and tools are needed to enable materials informatics.

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Building on the extraordinary success of seven best-selling editions, Callister's new Eighth Edition of Materials Science and Engineering continues to promote student understanding of the three primary types of materials (metals, ceramics, and polymers) and composites, as well as the relationships that exist between the structural elements of materials and their properties.

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