ISIAME 2012. Proceedings of the International Symposium on the Industrial Applications of the Mössbauer Effect (ISIAME 2012) held in Dalian, PR China, 2-7 Sept 2012
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- Livraison à domicile ou en point Mondial Relay entre le 29 juillet et le 5 août
- PrésentationCartonné
- Poids0.865 kg
- Dimensions15,9 cm × 24,1 cm × 3,2 cm
- ISBN9789400764903
- EAN9789400764903
- Date de parution11/09/2013
- ÉditeurSpringer
Résumé
This book provides an excellent overview on the most recent results on the industrial applications of Mössbauer spectroscopy attained on the fields of nanotechnology, metallurgy, biotechnology and pharmaceutical industry, applied mineralogy, energy production industry (coal, oil, nuclear, solar, etc.), computer industry, space technology, electronic and magnetic devices technology, ion implantation technology, including topics like characterization of novel construction materials, electronic components and magnetic materials, composite materials, colloids, amorphous and nanophase materials, small particles, coatings, interfaces, thin films and multilayers, catalysis, corrosion, tribology, surface modification, hydrogen storage, ball milling, radiation effects, electrochemistry, batteries, etc.
From the various reports a broad overview emerges illustrating that the method can successfully be applied in a wide variety of topics. brbrPreviously published in the journal Hyperfine Interactions.
From the various reports a broad overview emerges illustrating that the method can successfully be applied in a wide variety of topics. brbrPreviously published in the journal Hyperfine Interactions.
This book provides an excellent overview on the most recent results on the industrial applications of Mössbauer spectroscopy attained on the fields of nanotechnology, metallurgy, biotechnology and pharmaceutical industry, applied mineralogy, energy production industry (coal, oil, nuclear, solar, etc.), computer industry, space technology, electronic and magnetic devices technology, ion implantation technology, including topics like characterization of novel construction materials, electronic components and magnetic materials, composite materials, colloids, amorphous and nanophase materials, small particles, coatings, interfaces, thin films and multilayers, catalysis, corrosion, tribology, surface modification, hydrogen storage, ball milling, radiation effects, electrochemistry, batteries, etc.
From the various reports a broad overview emerges illustrating that the method can successfully be applied in a wide variety of topics. brbrPreviously published in the journal Hyperfine Interactions.
From the various reports a broad overview emerges illustrating that the method can successfully be applied in a wide variety of topics. brbrPreviously published in the journal Hyperfine Interactions.