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This is an agenda-setting and high-profile book that presents an
authoritative and cutting-edge analysis of nanoscience and
technology. The Oxford Handbook of Nanoscience and Technology
provides a comprehensive and accessible overview of the major
achievements in different aspects of this field.
The Handbook comprises 3 volumes, structured thematically, with 25
chapters each. Volume I presents fundamental issues of basic
physics, chemistry, biochemistry, tribology etc. of nanomaterials.
Volume II focuses on the progress made with host of nanomaterials
including DNA and protein based nanostructures. Volume III
highlights engineering and related developments, with a focus on
frontal application areas. All chapters are written by noted
international experts in the field. The book should be useful for
final year undergraduates specializing in the field. It should
prove indispensable to graduate students, and serious researchers
from academic and industrial sectors working in the field of
Nanoscience and Technology from different disciplines including
Physics, Chemistry, Biochemistry, Biotechnology, Medicine,
Materials Science, Metallurgy, Ceramics, Information Technology as
well as Electrical, Electronic and Computational Engineering.
This is an agenda-setting and high-profile book that presents an
authoritative and cutting-edge analysis of nanoscience and
technology. The Oxford Handbook of Nanoscience and Technology
provides a comprehensive and accessible overview of the major
achievements in different aspects of this field.
The Handbook comprises 3 volumes, structured thematically, with 25
chapters each. Volume I presents fundamental issues of basic
physics, chemistry, biochemistry, tribology etc. of nanomaterials.
Volume II focuses on the progress made with host of nanomaterials
including DNA and protein based nanostructures. Volume III
highlights engineering and related developments, with a focus on
frontal application areas. All chapters are written by noted
international experts in the field. The book should be useful for
final year undergraduates specializing in the field. It should
prove indispensable to graduate students, and serious researchers
from academic and industrial sectors working in the field of
Nanoscience and Technology from different disciplines including
Physics, Chemistry, Biochemistry, Biotechnology, Medicine,
Materials Science, Metallurgy, Ceramics, Information Technology as
well as Electrical, Electronic and Computational Engineering.
This is an agenda-setting and high-profile book that presents an
authoritative and cutting-edge analysis of nanoscience and
technology. The Oxford Handbook of Nanoscience and Technology
provides a comprehensive and accessible overview of the major
achievements in different aspects of this field.
The Handbook comprises 3 volumes, structured thematically, with 25
chapters each. Volume I presents fundamental issues of basic
physics, chemistry, biochemistry, tribology etc. of nanomaterials.
Volume II focuses on the progress made with host of nanomaterials
including DNA and protein based nanostructures. Volume III
highlights engineering and related developments, with a focus on
frontal application areas. All chapters are written by noted
international experts in the field. The book should be useful for
final year undergraduates specializing in the field. It should
prove indispensable to graduate students, and serious researchers
from academic and industrial sectors working in the field of
Nanoscience and Technology from different disciplines including
Physics, Chemistry, Biochemistry, Biotechnology, Medicine,
Materials Science, Metallurgy, Ceramics, Information Technology as
well as Electrical, Electronic and Computational Engineering.
This is an agenda-setting and high-profile book that presents an
authoritative and cutting-edge analysis of nanoscience and
technology. The Oxford Handbook of Nanoscience and Technology
provides a comprehensive and accessible overview of the major
achievements in different aspects of this field.
The Handbook comprises 3 volumes, structured thematically, with 25
chapters each. Volume I presents fundamental issues of basic
physics, chemistry, biochemistry, tribology etc. of nanomaterials.
Volume II focuses on the progress made with host of nanomaterials
including DNA and protein based nanostructures. Volume III
highlights engineering and related developments, with a focus on
frontal application areas. All chapters are written by noted
international experts in the field. The book should be useful for
final year undergraduates specializing in the field. It should
prove indispensable to graduate students, and serious researchers
from academic and industrial sectors working in the field of
Nanoscience and Technology from different disciplines including
Physics, Chemistry, Biochemistry, Biotechnology, Medicine,
Materials Science, Metallurgy, Ceramics, Information Technology as
well as Electrical, Electronic and Computational Engineering.
Six papers by physicists from the Japan, India, Brazil and the US
address some of the broad frontal issues of superconductivity,
which include the mechanisms of high-temperature superconductivity,
extra-high-temperature phenomena, the normal state pseudogap, the
observations of the isotope effect in a host of different
superconducting systems and their explanations, and the unusual
features of strongly correlated electron systems like heavy
fermions. Two extended papers explore the importance of positron
annihilation and using electron spin resonance techniques to study
superconducting materials. The treatments should be accessible to
working scientists and engineers and to graduate students of
physics, chemistry, materials science, solid-state electronics, and
other disciplines.
Studies Of High Temperature Superconductors Volume 15
Studies Of High Temperature Superconductors Volume 13 -- Advances
In Research & Applications
Superconductors is neither about basic aspects of superconductivity
nor about its applications, but its mainstay is superconducting
materials. Unusual and unconventional features of a large variety
of novel superconductors are presented and their technological
potential as practical superconductors assessed. The book begins
with an introduction to basic aspects of superconductivity. The
presentation is readily accessible to readers from a diverse range
of scientific and technical disciplines, such as metallurgy,
materials science, materials engineering, electronic and device
engineering, and chemistry. The derivation of mathematical formulas
and equations has been kept to a minimum and, wherever necessary,
short appendices with essential mathematics have been added at the
end of the text. The book is not meant to serve as an
encyclopaedia, describing each and every superconductor that
exists, but focuses on important milestones in their exciting
development.
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