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The Physics of Superionic Conductors and Electrode Materials (Softcover Reprint of the Original 1st 1983)

The Physics of Superionic Conductors and Electrode Materials

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"The Physics of Superionic Conductors and Electrode Materials" by John W. Perram is a physics book focused on Devices & Sensors. Best for students, educators, and scientifically curious readers.

The following chapters present most of the lectures delivered at the NATO Advanced Studies Institute on "The Physics of Super ionic Conductors and Electrode Materials", held at Odense Univer sity's Mathematics Department between the 4th and 22nd of August, 1980. The aim of the organizing committee was to present in a rather detailed fashion the most recent advances in the computa tional mathematics and physics of condensed matter physics and to see how these advances could be applied to the study of ionically conducting solids. The first half of the meeting was mainly taken up with lectures. In the second week, working groups on the various aspects were set up, the students joining these groups being helped in the implementation of the lecture material. The leaders of these groups deserve special mention for the tremendous effort they put into this aspect of the meeting, particularly: Dr. Aneesur Rahman (Molecular Dynamics group) Dr. Fred Horne (Ion Transport group) Drs. Nick Quirke and David Adams (Monte Carlo methods) Dr. Heinz Schulz (Diffraction group) Dr. John Harding (Defect Calculations group) The Molecular Dynamics group achieved a certain amount of notoriety within the University by appearing to live in the terminal room.

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Best For: Researchers and students in condensed matter physics and materials science
Focus: Computational mathematics and physics related to superionic conductors and electrode materials
Covers: Recent advances in computational approaches to condensed matter physics, specifically superionic conductors and electrode materials
Why It Matters: Provides detailed insights into the physics of materials critical for energy storage and electronic applications, based on lectures from a specialized advanced studies institute

"The Physics of Superionic Conductors and Electrode Materials" by John W. Perram is a physics book focused on Devices & Sensors. Best for students, educators, and scientifically curious readers.

Topic: Devices & Sensors

Author: John W. Perram

Who this is for:

  • Physics students
  • Science-minded readers
  • Readers building technical understanding

Why this book matters: It provides structured coverage of physics concepts in a way that supports deeper understanding and continued study.

The following chapters present most of the lectures delivered at the NATO Advanced Studies Institute on "The Physics of Super ionic Conductors and Electrode Materials", held at Odense Univer sity's Mathematics Department between the 4th and 22nd of August, 1980. The aim of the organizing committee was to present in a rather detailed fashion the most recent advances in the computa tional mathematics and physics of condensed matter physics and to see how these advances could be applied to the study of ionically conducting solids. The first half of the meeting was mainly taken up with lectures. In the second week, working groups on the various aspects were set up, the students joining these groups being helped in the implementation of the lecture material. The leaders of these groups deserve special mention for the tremendous effort they put into this aspect of the meeting, particularly: Dr. Aneesur Rahman (Molecular Dynamics group) Dr. Fred Horne (Ion Transport group) Drs. Nick Quirke and David Adams (Monte Carlo methods) Dr. Heinz Schulz (Diffraction group) Dr. John Harding (Defect Calculations group) The Molecular Dynamics group achieved a certain amount of notoriety within the University by appearing to live in the terminal room.

AuthorJohn W. Perram
PublisherSpringer
Published2013-04-30
ISBN-139781468444926
BindingPaperback
Pages281
LanguageEnglish
SubjectsScience
TopicDevices & Sensors
SeriesNATO Asi Subseries B:

Format: Paperback

Length: 281 pages

Language: English

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