Physics of New Materials / Springer Series in Materials Science Bd.27 (PDF)
(Sprache: Englisch)
Physics of New Materials starts from basic science,
specially solid-state physics, and then moves into the
research and development of advanced materials. The emphasis
of the discussions is concentrated on the electronicand
atomic structures and...
specially solid-state physics, and then moves into the
research and development of advanced materials. The emphasis
of the discussions is concentrated on the electronicand
atomic structures and...
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Physics of New Materials starts from basic science,
specially solid-state physics, and then moves into the
research and development of advanced materials. The emphasis
of the discussions is concentrated on the electronicand
atomic structures and properties of transition-metal
systems, liquidand amorphous materials, the nano-phase
materials, layered compounds, martensite and other
structural-transformed materials, and ordered alloys.
Though these discussions, the physical aspects and
principles ofnew materials, such as strong ferromagnetic
alloys, shape memory alloys, amorphous alloys, ultra-fine
particles, intercalated layered compounds, deformable
ceramics, and nuclear-physics techniques. In addition to
these theoretical treatments, modern experimental
techniques, exemplified by M|ssbauer spectroscopy and
electron microscopy, demonstrate the vast scope of schemes
needed in the development of new materials.
specially solid-state physics, and then moves into the
research and development of advanced materials. The emphasis
of the discussions is concentrated on the electronicand
atomic structures and properties of transition-metal
systems, liquidand amorphous materials, the nano-phase
materials, layered compounds, martensite and other
structural-transformed materials, and ordered alloys.
Though these discussions, the physical aspects and
principles ofnew materials, such as strong ferromagnetic
alloys, shape memory alloys, amorphous alloys, ultra-fine
particles, intercalated layered compounds, deformable
ceramics, and nuclear-physics techniques. In addition to
these theoretical treatments, modern experimental
techniques, exemplified by M|ssbauer spectroscopy and
electron microscopy, demonstrate the vast scope of schemes
needed in the development of new materials.
Bibliographische Angaben
- 2013, 1994, 305 Seiten, Englisch
- Herausgegeben: Francisco E. Fujita
- Verlag: Springer Berlin Heidelberg
- ISBN-10: 3662004615
- ISBN-13: 9783662004616
- Erscheinungsdatum: 09.03.2013
Abhängig von Bildschirmgröße und eingestellter Schriftgröße kann die Seitenzahl auf Ihrem Lesegerät variieren.
eBook Informationen
- Dateiformat: PDF
- Größe: 29 MB
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Sprache:
Englisch
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