Solid to Solid Phase Transformations in Organic Materials
Solid to Solid Phase Transformations in Organic Materials by James M. Howe
Book DescriptionGet the best of the best in presentations from TMS' 2005 Annual Meeting. Now available as a collection in portable document format (PDF), seven papers are featured: Alumina and Bauxite: Industry Trends and Developments; Arsenic Metallurgy; Magnesium, Primary Production and Environmental; Post-Consumer Recycling; Characterization of Minerals, Metals & Materials; Multicomponent Multiphase Diffusion; Applications and Fundamentals of High Aspect Ratio Nanomaterials.
Buy Solid to Solid Phase Transformations in Organic Materials book by James M. Howe from Australia's Online Bookstore, Boomerang Books.
Book DetailsISBN: 9780873395960
(235mm x 159mm x 117mm)
Imprint: The Minerals, Metals & Materials Society
Publisher: The Minerals, Metals & Materials Society
Publish Date: 31-Jul-2005
Country of Publication: United States
Books By Author James M. Howe
In-Situ Electron Microscopy, Hardback (April 2012)
Adopting a didactical approach from fundamentals to actual experiments and applications, this handbook and ready reference covers real-time observations using modern scanning electron microscopy and transmission electron microscopy, while also providing information on the required stages and samples.
Proceedings of an International Conference on Solid- Solid Phase Transformations in Inorganic Materials 2005, Hardback (March 2010)
This book contains two volumes of the latest developments in diffusional and displacive phase transformations in materials. It also delves into the emerging areas of phase transformations research, such as transformations in nano- and constrained-systems as well as computer modeling of phase transformations.
Interfaces in Materials, Hardback (March 1997)» View all books by James M. Howe
A simple approach to understanding the different types of key engineering interfaces, particularly when applied to metal alloys. This book addresses phenomena such as interfacial structure, thermodynamic properties, segregation and crystal growth in regular-solution terms.
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