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Conductors, semiconductors, supercon...
~
Huebener, R. P.
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Conductors, semiconductors, superconductors = an introduction to solid-state physics /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Conductors, semiconductors, superconductors/ by Rudolf P. Huebener.
Reminder of title:
an introduction to solid-state physics /
Author:
Huebener, R. P.
Published:
Cham :Springer Nature Switzerland : : 2025.,
Description:
xix, 256 p. :ill. (some col.), digital ;24 cm.
[NT 15003449]:
Spectacular Advances -- Well Ordered Lattice Structures in Crystals -- Permanent Movement in the Crystal Lattice -- Electric Conductor or Insulator?-Energy Bands -- Metals Obey the Rules of Quantum Statistics -- Less Can Be More: Semiconductors -- Circling Electrons in High Magnetic Fields -- The Winner: Superconductors -- The Big Surprise: High-Temperature Superconductivity -- Magnetism: Order Among the Elementary Magnets -- Nanostructures: Superlattices, Quantum Wires, and Quantum Dots -- Defects in the Crystal Lattice: Useful or Harmful?.
Contained By:
Springer Nature eBook
Subject:
Solid state physics. -
Online resource:
https://doi.org/10.1007/978-3-031-93666-1
ISBN:
9783031936661
Conductors, semiconductors, superconductors = an introduction to solid-state physics /
Huebener, R. P.
Conductors, semiconductors, superconductors
an introduction to solid-state physics /[electronic resource] :by Rudolf P. Huebener. - Fourth edition. - Cham :Springer Nature Switzerland :2025. - xix, 256 p. :ill. (some col.), digital ;24 cm. - Undergraduate lecture notes in physics,2192-4805. - Undergraduate lecture notes in physics..
Spectacular Advances -- Well Ordered Lattice Structures in Crystals -- Permanent Movement in the Crystal Lattice -- Electric Conductor or Insulator?-Energy Bands -- Metals Obey the Rules of Quantum Statistics -- Less Can Be More: Semiconductors -- Circling Electrons in High Magnetic Fields -- The Winner: Superconductors -- The Big Surprise: High-Temperature Superconductivity -- Magnetism: Order Among the Elementary Magnets -- Nanostructures: Superlattices, Quantum Wires, and Quantum Dots -- Defects in the Crystal Lattice: Useful or Harmful?.
This compact undergraduate textbook provides a concise yet thorough introduction to the fundamentals of solid-state physics, while also briefly discussing the historical context surrounding key scholars in the field. The vivid explanations and unique didactic approach adopted in the book aim to generate interest in these subjects while also serving as a motivating primer and supporting companion for studying more detailed and advanced textbooks in solid-state physics. The book is also suitable as a quick refresher for students preparing for examinations. The fourth edition features extensions in many sections. In particular, superconductivity in interfaces and monolayers and the concepts of quantum computers are subjects of new sections. Primarily concentrating on the electric and magnetic properties of materials, the book benefits undergraduate students in the fields of physics, materials science, and electrical engineering.
ISBN: 9783031936661
Standard No.: 10.1007/978-3-031-93666-1doiSubjects--Topical Terms:
518873
Solid state physics.
LC Class. No.: QC176
Dewey Class. No.: 530.412
Conductors, semiconductors, superconductors = an introduction to solid-state physics /
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Spectacular Advances -- Well Ordered Lattice Structures in Crystals -- Permanent Movement in the Crystal Lattice -- Electric Conductor or Insulator?-Energy Bands -- Metals Obey the Rules of Quantum Statistics -- Less Can Be More: Semiconductors -- Circling Electrons in High Magnetic Fields -- The Winner: Superconductors -- The Big Surprise: High-Temperature Superconductivity -- Magnetism: Order Among the Elementary Magnets -- Nanostructures: Superlattices, Quantum Wires, and Quantum Dots -- Defects in the Crystal Lattice: Useful or Harmful?.
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This compact undergraduate textbook provides a concise yet thorough introduction to the fundamentals of solid-state physics, while also briefly discussing the historical context surrounding key scholars in the field. The vivid explanations and unique didactic approach adopted in the book aim to generate interest in these subjects while also serving as a motivating primer and supporting companion for studying more detailed and advanced textbooks in solid-state physics. The book is also suitable as a quick refresher for students preparing for examinations. The fourth edition features extensions in many sections. In particular, superconductivity in interfaces and monolayers and the concepts of quantum computers are subjects of new sections. Primarily concentrating on the electric and magnetic properties of materials, the book benefits undergraduate students in the fields of physics, materials science, and electrical engineering.
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EB QC176
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