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The collection focuses on the advancements of characterization of
minerals, metals, and materials and the applications of
characterization results on the processing of these materials.
Advanced characterization methods, techniques, and new instruments
are emphasized. Areas of interest include, but are not limited to:
* Novel methods and techniques for characterizing materials across
a spectrum of systems and processes. * Characterization of
mechanical, thermal, electrical, optical, dielectric, magnetic,
physical, and other properties of materials. * Characterization of
structural, morphological, and topographical natures of materials
at micro- and nano- scales. * Characterization of extraction and
processing including process development and analysis. * Advances
in instrument developments for microstructure analysis and
performance evaluation of materials, such as computer tomography
(CT), X-ray and neutron diffraction, electron microscopy (SEM, FIB,
TEM), and spectroscopy (EDS, WDS, EBSD) techniques. * 2D and 3D
modelling for materials characterization. The book explores
scientific processes to characterize materials using modern
technologies, and focuses on the interrelationships and
interdependence among processing, structure, properties, and
performance of materials.
This collection gives broad and up-to-date results in the research
and development of materials characterization and processing.
Coverage is well-rounded from minerals, metals, and materials
characterization and developments in extraction to the fabrication
and performance of materials. In addition, topics as varied as
structural steels to electronic materials to plant-based composites
are explored. The latest research presented in this wide area make
this book both timely and relevant to the materials science field
as a whole. The book explores scientific processes to characterize
materials using modern technologies, and focuses on the
interrelationships and interdependence among processing, structure,
properties, and performance of materials. Topics covered include
ferrous materials, non-ferrous materials, minerals, ceramics,
clays, soft materials, method development, processing, corrosion,
welding, solidification, composites, extraction, powders,
nanomaterials, advanced materials, and several others.
This collection gives broad and up-to-date results in the research
and development of materials characterization and processing.
Coverage is well-rounded from minerals, metals, and materials
characterization and developments in extraction to the fabrication
and performance of materials. In addition, topics as varied as
structural steels to electronic materials to plant-based composites
are explored. The latest research presented in this wide area make
this book both timely and relevant to the materials science field
as a whole. The book explores scientific processes to characterize
materials using modern technologies, and focuses on the
interrelationships and interdependence among processing, structure,
properties, and performance of materials. Topics covered include
ferrous materials, non-ferrous materials, minerals, ceramics,
clays, soft materials, method development, processing, corrosion,
welding, solidification, composites, extraction, powders,
nanomaterials, advanced materials, and several others.
The collection focuses on the advancements of characterization of
minerals, metals, and materials and the applications of
characterization results on the processing of these materials.
Advanced characterization methods, techniques, and new instruments
are emphasized. Areas of interest include, but are not limited to:
* Novel methods and techniques for characterizing materials across
a spectrum of systems and processes. * Characterization of
mechanical, thermal, electrical, optical, dielectric, magnetic,
physical, and other properties of materials. * Characterization of
structural, morphological, and topographical natures of materials
at micro- and nano- scales. * Characterization of extraction and
processing including process development and analysis. * Advances
in instrument developments for microstructure analysis and
performance evaluation of materials, such as computer tomography
(CT), X-ray and neutron diffraction, electron microscopy (SEM, FIB,
TEM), and spectroscopy (EDS, WDS, EBSD) techniques. * 2D and 3D
modelling for materials characterization.
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Characterization of Minerals, Metals, and Materials 2019 (Hardcover, 1st ed. 2019)
Bowen Li, Jian Li, Shadia Ikhmayies, Mingming Zhang, Yunus Eren Kalay, …
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R9,941
R8,574
Discovery Miles 85 740
Save R1,367 (14%)
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Ships in 12 - 17 working days
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This collection gives broad and up-to-date results in the research
and development of materials characterization and processing.
Topics covered include characterization methods, ferrous materials,
non-ferrous materials, minerals, ceramics, polymer and composites,
powders, extraction, microstructure, mechanical behavior,
processing, corrosion, welding, solidification, magnetic,
electronic, environmental, nano-materials, and advanced materials
The book explores scientific processes to characterize materials
using modern technologies, and focuses on the interrelationships
and interdependence among processing, structure, properties, and
performance of materials.
The collection focuses on the advancements of characterization of
minerals, metals, and materials and the applications of
characterization results on the processing of these materials.
Advanced characterization methods, techniques, and new instruments
are emphasized. Areas of interest include, but are not limited to:
* Novel methods and techniques for characterizing materials across
a spectrum of systems and processes. * Characterization of
mechanical, thermal, electrical, optical, dielectric, magnetic,
physical, and other properties of materials. * Characterization of
structural, morphological, and topographical natures of materials
at micro- and nano- scales. * Characterization of extraction and
processing including process development and analysis. * Advances
in instrument developments for microstructure analysis and
performance evaluation of materials, such as computer tomography
(CT), X-ray and neutron diffraction, electron microscopy (SEM, FIB,
TEM), and spectroscopy (EDS, WDS, EBSD) techniques. * 2D and 3D
modelling for materials characterization. The book explores
scientific processes to characterize materials using modern
technologies, and focuses on the interrelationships and
interdependence among processing, structure, properties, and
performance of materials.
This collection gives broad and up-to-date results in the research
and development of materials characterization and processing.
Coverage is well-rounded from minerals, metals, and materials
characterization and developments in extraction to the fabrication
and performance of materials. In addition, topics as varied as
structural steels to electronic materials to plant-based composites
are explored. The latest research presented in this wide area make
this book both timely and relevant to the materials science field
as a whole. The book explores scientific processes to characterize
materials using modern technologies, and focuses on the
interrelationships and interdependence among processing, structure,
properties, and performance of materials. Topics covered include
ferrous materials, non-ferrous materials, minerals, ceramics,
clays, soft materials, method development, processing, corrosion,
welding, solidification, composites, extraction, powders,
nanomaterials, advanced materials, and several others.
This collection gives broad and up-to-date results in the research
and development of materials characterization and processing.
Coverage is well-rounded from minerals, metals, and materials
characterization and developments in extraction to the fabrication
and performance of materials. In addition, topics as varied as
structural steels to electronic materials to plant-based composites
are explored. The latest research presented in this wide area make
this book both timely and relevant to the materials science field
as a whole. The book explores scientific processes to characterize
materials using modern technologies, and focuses on the
interrelationships and interdependence among processing, structure,
properties, and performance of materials. Topics covered include
ferrous materials, non-ferrous materials, minerals, ceramics,
clays, soft materials, method development, processing, corrosion,
welding, solidification, composites, extraction, powders,
nanomaterials, advanced materials, and several others.
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