The Physics of Metals: Volume 1, Electrons

The Physics of Metals: Volume 1, Electrons
Title The Physics of Metals: Volume 1, Electrons PDF eBook
Author Sir Nevill Francis Mott
Publisher CUP Archive
Pages 454
Release 1969-07
Genre Science
ISBN 0521071062

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This advanced 1969 treatise was written by a team of international experts, and presents a definitive account of a major field of modern physics.

Fundamentals of the Theory of Metals

Fundamentals of the Theory of Metals
Title Fundamentals of the Theory of Metals PDF eBook
Author A. A. Abrikosov
Publisher Courier Dover Publications
Pages 641
Release 2017-10-18
Genre Science
ISBN 0486819019

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This comprehensive primer by a Nobel Physicist covers the electronic spectra of metals, electrical and thermal conductivities, galvanomagnetic and thermoelectrical phenomena, the behavior of metals in high-frequency fields, sound absorption, and Fermi-liquid phenomena. Addressing in detail all aspects of the energy spectra of electrons in metals and the theory of superconductivity, it continues to be a valuable resource for the field almost thirty years after its initial publication. Targeted at undergraduate students majoring in physics as well as graduate and postgraduate students, research workers, and teachers, this is an essential reference on the topic of electromagnetism and superconductivity in metals. No special knowledge of metals beyond a course in general physics is needed, although the author does presume a knowledge of quantum mechanics and quantum statistics.

The Theory of the Properties of Metals and Alloys

The Theory of the Properties of Metals and Alloys
Title The Theory of the Properties of Metals and Alloys PDF eBook
Author Nevill Francis Mott
Publisher
Pages 326
Release 1963
Genre Alloys
ISBN

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Science, Technology and Applications of Metals in Additive Manufacturing

Science, Technology and Applications of Metals in Additive Manufacturing
Title Science, Technology and Applications of Metals in Additive Manufacturing PDF eBook
Author Bhaskar Dutta
Publisher Elsevier
Pages 355
Release 2019-08-15
Genre Technology & Engineering
ISBN 0128166436

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Science, Technology and Applications of Metal Additive Manufacturing provides a holistic picture of metal Additive Manufacturing (AM) that encompasses the science, technology and applications for the use of metal AM. Users will find design aspects, various metal AM technologies commercially available, a focus on merits and demerits, implications for qualification and certification, applications, cost modeling of AM, and future directions. This book serves as an educational guide, providing a holistic picture of metal AM that encompasses science, technology and applications for the real-life use of metal AM. - Includes an overall understanding of metal additive manufacturing, Including steps involved (process flow) - Discusses available commercial metal AM technologies and their relative strengths and weaknesses - Reviews the process of qualification of AM parts, various applications, cost modeling, and the future directions of metal AM

The Physics of Metals: Volume 2, Defects

The Physics of Metals: Volume 2, Defects
Title The Physics of Metals: Volume 2, Defects PDF eBook
Author P. B. Hirsch
Publisher Cambridge University Press
Pages 0
Release 2009-06-18
Genre Science
ISBN 9780521113106

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The Physics of Metals is an advanced treatise written by a team of experts. It presents an authoritative account of selected topics in a major field of modern physics and will prove indispensable to both experimental and theoretical solid state physicists and metallurgists seeking a clear explanation of the state of knowledge of the physical phenomena occurring in metals, without recourse to elaborate mathematics. The whole work was inspired by the desire to honour Sir Nevill Mott by writing an account of some of the topics treated in Mott and Jones's classic work The Theory of the Properties of Metals and Alloys.

Physics of Transition Metal Oxides

Physics of Transition Metal Oxides
Title Physics of Transition Metal Oxides PDF eBook
Author Sadamichi Maekawa
Publisher Springer Science & Business Media
Pages 356
Release 2004-06-22
Genre Technology & Engineering
ISBN 9783540212935

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The fact that magnetite (Fe304) was already known in the Greek era as a peculiar mineral is indicative of the long history of transition metal oxides as useful materials. The discovery of high-temperature superconductivity in 1986 has renewed interest in transition metal oxides. High-temperature su perconductors are all cuprates. Why is it? To answer to this question, we must understand the electronic states in the cuprates. Transition metal oxides are also familiar as magnets. They might be found stuck on the door of your kitchen refrigerator. Magnetic materials are valuable not only as magnets but as electronics materials. Manganites have received special attention recently because of their extremely large magnetoresistance, an effect so large that it is called colossal magnetoresistance (CMR). What is the difference between high-temperature superconducting cuprates and CMR manganites? Elements with incomplete d shells in the periodic table are called tran sition elements. Among them, the following eight elements with the atomic numbers from 22 to 29, i. e. , Ti, V, Cr, Mn, Fe, Co, Ni and Cu are the most im portant. These elements make compounds with oxygen and present a variety of properties. High-temperature superconductivity and CMR are examples. Most of the textbooks on magnetism discuss the magnetic properties of transition metal oxides. However, when one studies magnetism using tradi tional textbooks, one finds that the transport properties are not introduced in the initial stages.

Mechanical Properties of Metals

Mechanical Properties of Metals
Title Mechanical Properties of Metals PDF eBook
Author C. W. Lung
Publisher World Scientific
Pages 442
Release 1999
Genre Technology & Engineering
ISBN 9789810226220

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The book is intended to describe the basic and newly developed elements of the physics of solids and materials science on mechanical properties of metals with as much continuity as is possible. Particular emphasis has been placed in atomistic and fractal approaches and continuum theory of dislocations is also introduced. Since the book is meant for the two main topics of progress in recent years, some interesting and important topics which have not been discussed or introduced are given in detail.For a long time, pair potentials were used very expensively in simulation studies. They can reproduce usefully total energies for many systems. But when one turns to elastic properties, fracture of surfaces, and the vacancy formation energy, deficiencies and limitations begin to emerge. These limitations of the simple pair potential approximation have been addressed by the development of empirical many-body potentials which is the major theme of our book.Over a decade or more, diverse scientists have recognized that many of the structures common in their experiments have a special kind of geometrical complexity. The key to this progress is the recognition that many random structures obey a symmetry that objects look the same on many different scales of observation. The concept of fractals was introduced by Mandelbrot and applied to fractures by himself and collaborators. Their work pointed to a correlation between toughness and the fractal dimension. Our interest is the fractal aspects of fractured surfaces. We will discuss more in our book.The strain field of a dislocation has a long range part and this part can be discussed rigorously from elasticity theory. Recent progress in elastic strain fields and dislocation mobility were made by Indenbom and Lothe. The elementary essentials will be introduced in our book.