Dissipative, Entropy-Production Systems across Condensed Matter and Interdisciplinary Classical VS. Quantum Physics

The thematic range of this book is wide and can loosely be described as polydispersive. Figuratively, it resembles a polynuclear path of yielding (poly)crystals. Such path can be taken when looking at it from the first side. However, a closer inspection of the book’s contents gives rise to a much mo...

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Year of Publication:2022
Language:English
Physical Description:1 electronic resource (176 p.)
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spelling Gadomski, Adam edt
Dissipative, Entropy-Production Systems across Condensed Matter and Interdisciplinary Classical VS. Quantum Physics
MDPI - Multidisciplinary Digital Publishing Institute 2022
1 electronic resource (176 p.)
text txt rdacontent
computer c rdamedia
online resource cr rdacarrier
The thematic range of this book is wide and can loosely be described as polydispersive. Figuratively, it resembles a polynuclear path of yielding (poly)crystals. Such path can be taken when looking at it from the first side. However, a closer inspection of the book’s contents gives rise to a much more monodispersive/single-crystal and compacted (than crudely expected) picture of the book’s contents presented to a potential reader. Namely, all contributions collected can be united under the common denominator of maximum-entropy and entropy production principles experienced by both classical and quantum systems in (non)equilibrium conditions. The proposed order of presenting the material commences with properly subordinated classical systems (seven contributions) and ends up with three remaining quantum systems, presented by the chapters’ authors. The overarching editorial makes the presentation of the wide-range material self-contained and compact, irrespective of whether comprehending it from classical or quantum physical viewpoints.
English
Research & information: general bicssc
Physics bicssc
multistability
ergodicity
Brownian motion
tilted periodic potential
Lévy noise
nonequilibrium thermodynamics
active particles
entropy production
dissipative structures
quantum entanglement
linear entropy
coherence
purity of states
concurrence
three-qubit systems
quantum graphs
microwave networks
Euler characteristic
Neumann and Dirichlet boundary conditions
II law of thermodynamics
Carnot principle
Kelvin principle
Ostwald principle
perpetuum mobile type III
Clausius I and II principles
formal implication
model theory
spherulites
(poly)crystal formation
complex growing phenomenon
soft condensed matter
physical kinetics
anticoherence
entanglement
nonlinear systems
human serum albumin
hyaluronan
conformational entropy
dihedral angles
frequency distribution
epidemy
compartmental models
computer simulation
SARS-CoV-2-like disease spreading
chemical computing
network
oscillators
top-down design
Oregonator model
Japanese flag problem
3-0365-5275-8
Gadomski, Adam oth
language English
format eBook
author2 Gadomski, Adam
author_facet Gadomski, Adam
author2_variant a g ag
author2_role Sonstige
title Dissipative, Entropy-Production Systems across Condensed Matter and Interdisciplinary Classical VS. Quantum Physics
spellingShingle Dissipative, Entropy-Production Systems across Condensed Matter and Interdisciplinary Classical VS. Quantum Physics
title_full Dissipative, Entropy-Production Systems across Condensed Matter and Interdisciplinary Classical VS. Quantum Physics
title_fullStr Dissipative, Entropy-Production Systems across Condensed Matter and Interdisciplinary Classical VS. Quantum Physics
title_full_unstemmed Dissipative, Entropy-Production Systems across Condensed Matter and Interdisciplinary Classical VS. Quantum Physics
title_auth Dissipative, Entropy-Production Systems across Condensed Matter and Interdisciplinary Classical VS. Quantum Physics
title_new Dissipative, Entropy-Production Systems across Condensed Matter and Interdisciplinary Classical VS. Quantum Physics
title_sort dissipative, entropy-production systems across condensed matter and interdisciplinary classical vs. quantum physics
publisher MDPI - Multidisciplinary Digital Publishing Institute
publishDate 2022
physical 1 electronic resource (176 p.)
isbn 3-0365-5276-6
3-0365-5275-8
illustrated Not Illustrated
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is_hierarchy_title Dissipative, Entropy-Production Systems across Condensed Matter and Interdisciplinary Classical VS. Quantum Physics
author2_original_writing_str_mv noLinkedField
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