Editorial Team, T: Condensed Matter Physics Made Simple. Este artículo no está disponible.
Idioma: inglés
Editorial: Independently Published Apr 2026, 2026
- Tapa blanda
- Nuevo

Librería: AHA-BUCH GmbH, Einbeck, AlemaniaAHA-BUCH GmbH
Vendedor de 5 estrellas
Vendedor de AbeBooks desde 14 de agosto de 2006
No disponible
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Condición: Nuevo
EUR 15,37
Descripción del artículo del vendedor
Neuware - Condensed Matter Physics Made Simple is a fun to read plain-English guide. Condensed matter physics is the branch of physics that runs the world. The secrets behind transistors, flash memory, solar power, EV batteries, Hall sensors, fiber optics, and the chips pushing AI forward.
N° de ref. del artículo 9789199156965
- Título
- Editorial Team, T: Condensed Matter Physics Made Simple
- Autor
- Turing Editorial Team
- Editorial
- Independently Published Apr 2026
- Año de publicación
- 2026
- Estado
- Neu
- Encuadernación
- Taschenbuch
- Idioma
- inglés
- ISBN 10
- 9199156962
- ISBN 13
- 9789199156965
- Peso del artículo
- 126 gramos
- Dimensiones
- 229x152x4 mm
- Serie
- Libro 6 de 7: Advanced Physics in Everyday Langauge
Condensed Matter Physics Made Simple is a fun to read plain-English guide. Condensed matter physics is the branch of physics that runs the world. The secrets behind transistors, flash memory, solar power, EV batteries, Hall sensors, fiber optics, and the chips pushing AI forward.
This book follows the field in everyday language, covering everything from crystal structure and electron bands to quantum Hall effects, topological states, magnons, color centers, and memristors. It shows how large groups of atoms produce behavior that no single atom has on its own, and why that fact matters for power, heat, speed, storage, and control. It explains how crystals set the rules for electrons, why band gaps make semiconductors work, how lithium-ion batteries store charge, why magnets keep data in place, and how defects in diamond can become sensors.
If you want the physics under modern technology, start here.
This book follows the field in everyday language, covering everything from crystal structure and electron bands to quantum Hall effects, topological states, magnons, color centers, and memristors. It shows how large groups of atoms produce behavior that no single atom has on its own, and why that fact matters for power, heat, speed, storage, and control. It explains how crystals set the rules for electrons, why band gaps make semiconductors work, how lithium-ion batteries store charge, why magnets keep data in place, and how defects in diamond can become sensors.
If you want the physics under modern technology, start here.
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