New Structures for Physics [recurso electrónico] / edited by Bob Coecke.

Por: Coecke, Bob [editor.]Colaborador(es): SpringerLink (Online service)Tipo de material: TextoTextoSeries Lecture Notes in Physics ; 813Editor: Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 2011Descripción: XVIII, 1031 p. online resourceTipo de contenido: text Tipo de medio: computer Tipo de portador: online resourceISBN: 9783642128219Tema(s): Physics | Information theory | Algebra | Mathematical physics | Physics | Mathematical Methods in Physics | Category Theory, Homological Algebra | Theory of ComputationFormatos físicos adicionales: Printed edition:: Sin títuloClasificación CDD: 530.15 Clasificación LoC:QC5.53Recursos en línea: Libro electrónicoTexto
Contenidos:
Part I An ABC on Compositionality -- Part II Manifestations of Linearity -- Part III More Example Applications -- Part IV Informatic Geometry -- Part V. Spatio-Temporal Geometry -- Part VI Geometry and Topology in Computation.
En: Springer eBooksResumen: This volume provides a series of tutorials on mathematical structures which recently have gained prominence in physics, ranging from quantum foundations, via quantum information, to quantum gravity. These include the theory of monoidal categories and corresponding graphical calculi, Girard’s linear logic, Scott domains, lambda calculus and corresponding logics for typing, topos theory, and more general process structures. Most of these structures are very prominent in computer science; the chapters here are tailored towards an audience of physicists.
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Libro Electrónico Biblioteca Electrónica
Colección de Libros Electrónicos QC5.53 (Browse shelf(Abre debajo)) 1 No para préstamo 374355-2001

Part I An ABC on Compositionality -- Part II Manifestations of Linearity -- Part III More Example Applications -- Part IV Informatic Geometry -- Part V. Spatio-Temporal Geometry -- Part VI Geometry and Topology in Computation.

This volume provides a series of tutorials on mathematical structures which recently have gained prominence in physics, ranging from quantum foundations, via quantum information, to quantum gravity. These include the theory of monoidal categories and corresponding graphical calculi, Girard’s linear logic, Scott domains, lambda calculus and corresponding logics for typing, topos theory, and more general process structures. Most of these structures are very prominent in computer science; the chapters here are tailored towards an audience of physicists.

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