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Magnetite

Editat de Dawn M. Angrove
en Limba Engleză Hardback – 7 iun 2011
Magnetite is the most magnetic of all the naturally occurring minerals on Earth. Naturally magnetised pieces of magnetite, called lodestone, will attract small pieces of iron, and this was how ancient man first discovered the property of magnetism. This book gathers and presents current research from across the globe in the study of magnetite; its structure, properties and applications. Some topics discussed, herein, include adsorption and magnetothermal phenomena of high-disperse magnetite; electrochemical properties of magnetite and its role in flow accelerated corrosion; the unique structures and properties of magnetite and its relevance to biology and biotechnology; the synthesis methods of magnetite particles in wet chemistry; and magnetic hyperthermia studies in magnetite ferrofluids.
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Specificații

ISBN-13: 9781617618390
ISBN-10: 161761839X
Pagini: 489
Ilustrații: tables, graphs, diagrams, charts
Dimensiuni: 256 x 185 x 33 mm
Greutate: 1.12 kg
Ediția:New.
Editura: Nova Science Publishers Inc

Cuprins

Preface; Magnetite: The Story of the Mineral's Formation & Stability; Magnetite Nano-Particles in Information Processing: From the Bacteria to the Human Brain Neocortex; Adsorption & Magnetothermal Phenomena of High-Disperse Magnetite; Magnetite Applications for Reduction of Chlorinated Organic Compounds & Hexavalent Chromium; Catalytic Applications of Magnetite: Hydrogen Production through WGS Reaction; Magnetite: Electrochemical Properties & its Role in Flow Accelerated Corrosion; Magnetite: Structure, Properties & Applications; From Polynuclear Complex Precursors to Magnetite Nanoparticles: Synthesis & Properties; Novel Environmental Friendly Synthesis of Superparamagnetic Magnetite Nanoparticles in Organic Solvent-Free Water System using Mechanochemical Effect; Magnetite: Structure, Properties & Applications; Crystallographic Studies on Polygenetic Magnetites from Diverse Types of Felsic Bodies in India; Magnetic Hyperthermia Studies in Magnetite Ferrofluids; Optical Probing of Magnetic Field-Induced Phenomena in Magnetite-Based Ferrofluids; Magnetic Minerals, Life, & its Emergence; Index.