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- "The field of phase transitions and critical phenomena continues to be active in research, producing a steady stream of interesting and fruitful results. It has moved into a central place in condensed matter studies. Statistical physics, and more specifically, the theory of transitions between states of matter, more or less defines what we know about 'everyday' matter and its transformations. The major aim of this serial is to provide review articles that can serve as standard references for research workers in the field, and for graduate students and others wishing to obtain reliable information on important recent developments"
- "The field of phase transitions and critical phenomena continues to be active in research, producing a steady stream of interesting and fruitful results. No longer an area of specialist interest, it has acquired a central focus in condensed matter studies. The major aim of this serial is to provide review articles that can serve as standard references for research workers in the field, and for graduate students and others wishing to obtain reliable information on important recent developments. The two review articles in this volume complement each other in a remarkable way. Both deal with what might be called the modern geometric approach to the properties of macroscopic systems. The first article by Georgii (et al.) describes how recent advances in the application of geometric ideas leads to a better understanding of pure phases and phase transitions in equilibrium systems. The second article by Alava (et al.) deals with geometrical aspects of multi-body systems in a hands-on way, going beyond abstract theory to obtain practical answers.; The combination of computers and geometrical ideas described in this volume will doubtless play a major role in the development of statistical mechanics in the twenty-first century."
- "The field of phase transitions and critical phenomena continues to be active in research, producing a steady stream of interesting and fruitful results. No longer an area of specialist interest, it has acquired a central focus in condensed matter studies. The major aim of this serial is to provide review articles that can serve as standard references for research workers in the field, and for graduate students and others wishing to obtain reliable information on important recent developments. The two review articles in this volume complement each other in a remarkable way. Both deal with what might be called the modern geometric approach to the properties of macroscopic systems. The first article by Georgii (et al.) describes how recent advances in the application of geometric ideas leads to a better understanding of pure phases and phase transitions in equilibrium systems. The second article by Alava (et al.) deals with geometrical aspects of multi-body systems in a hands-on way, going beyond abstract theory to obtain practical answers. The combination of computers and geometrical ideas described in this volume will doubtless play a major role in the development of statistical mechanics in the twenty-first century"
- "This volume summarizes current knowledge on driven systems, from a pedagogical discussion of the original driven lattice gas to a brief survey of related models. Emphasis is placed on detailing open questions and unsolved problems as an incentive for the reader to pursue the subject further."@en
- "The field of phase transitions and critical phenomena continues to be active in research, producing a steady stream of interesting and fruitful results. It has moved into a central place in condensed matter studies. Statistical physics, and more specifically, the theory of transitions between states of matter, more or less defines what we know about 'everyday' matter and its transformations. The major aim of this serial is to provide review articles that can serve as standard references for research workers in the field, and for graduate students and others wishing to obtain reliable information on important recent developments."
- "The field of phase transitions and critical phenomena continues to be active in research, producing a steady stream of interesting and fruitful results. It has moved into a central place in condensed matter studies. Statistical physics, and more specifically, the theory of transitions between states of matter, more or less defines what we know about 'everyday' matter and its transformations. The major aim of this serial is to provide review articles that can serve as standard references for research workers in the field, and for graduate students and others wishing to obtain reliable information on important recent developments."@en
- "The field of phase transitions and critical phenomena continues to be active in research, producing a steady stream of interesting and fruitful results. No longer an area of specialist interest, it has acquired a central focus in condensed matter studies. The major aim of this serial is to provide review articles that can serve as standard references for research workers in the field, and for graduate students and others wishing to obtain reliable information on important recent developments. The two review articles in this volume complement each other in a remarkable way. Both deal with what."@en
- "The field of phase transitions and critical phenomena continues to be active in research, producing a steady stream of interesting and fruitful results. No longer an area of specialist interest, it has acquired a central focus in condensed matter studies. The major aim of this serial is to provide review articles that can serve as standard references for research workers in the field, and for graduate students and others wishing to obtain reliable information on important recent developments. The two review articles in this volume complement each other in a remarkable way. Both deal with what might be called the modern geometric approach to the properties of macroscopic systems. The first article by Georgii (et al.) describes how recent advances in the application of geometric ideas leads to a better understanding of pure phases and phase transitions in equilibrium systems. The second article by Alava (et al.) deals with geometrical aspects of multi-body systems in a hands-on way, going beyond abstract theory to obtain practical answers. The combination of computers and geometrical ideas described in this volume will doubtless play a major role in the development of statistical mechanics in the twenty-first century."@en
- "The field of phase transitions and critical phenomena continues to be active in research, producing a steady stream of interesting and fruitful results. No longer an area of specialist interest, it has acquired a central focus in condensed matter studies. The major aim of this serial is to provide review articles that can serve as standard references for research workers in the field, and for graduate students and others wishing to obtain reliable information on important recent developments. The two review articles in this volume complement each other in a remarkable way. Both deal with what might be called the modern geometric approach to the properties of macroscopic systems. The first article by Georgii (et al.) describes how recent advances in the application of geometric ideas leads to a better understanding of pure phases and phase transitions in equilibrium systems. The second article by Alava (et al.) deals with geometrical aspects of multi-body systems in a hands-on way, going beyond abstract theory to obtain practical answers. The combination of computers and geometrical ideas described in this volume will doubtless play a major role in the development of statistical mechanics in the twenty-first century."
- "The field of phase transitions and critical phenomena continues to be active in research, producing a steady stream of interesting and fruitful results. It has moved into a central place in condensed matter studies. Statistical physics, and more specifically, the theory of transitions between states of matter, more or less defines what we know about 'everyday' matter and its transformations. The major aim of this serial is to provide review articles that can serve as standard references for research workers in the field, and for graduate students and others wishing to obtain reliable informati."@en

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- http://id.loc.gov/authorities/names/n82235492
- http://viaf.org/viaf/108813844
- http://id.loc.gov/authorities/names/n80106716
- http://viaf.org/viaf/79085200
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- http://id.loc.gov/authorities/names/n79071046

- "Llibres electrònics."
- "Aufsatzsammlung."
- "Electronic books."
- "Electronic books."@en

- "Phase transitions and critical phenomena Vol. 20 Cumulative author, title and subject index, including table of contents, volumes 1 - 19"
- "Phase transitions and critical phenomena."
- "Phase transitions and critical phenomena. Volume 12 /"
- "Phase transitions and critical phenomena Vol. 12"
- "Phase transitions and critical phenomena. 12"
- "Phase Transitions and critical phenomena."
- "Phase transitions and critical phenomena. Volume 19 /"
- "Phase transitions and critical phenomena. Volume 18 /"
- "Phase transitions and critical phenomena / Vol. 18."
- "Phase Transitions and Critical Phenomena"
- "Phase transitions and critical phenomena. Volume 20, Cumulative author, title, and subject index ; including table of contents, Volumes 1-19"
- "Phase Transitions and Critical Phenomena, Volume 19"
- "Phase Transitions and Critical Phenomena /"
- "Phase transitions and critical phenomena. Volume 20, cumulative author, title and subject index including table of contents, volumes 1-19 /"
- "Phase transitions and critical phenomena. Volume 20"@en
- "Phase Transitions and Critical Phenomena. /"
- "Phase Transitions and Critical Phenomena, Volume 20: Cumulative Author, Title and Subject Index Including Table of Contents, Volumes 1-19"
- "Phase transitions and critical phenomena. Vol. 17, Statistical mechanics of driven diffusive systems /"@en
- "Phase transitions and critical phenomena.. 20,, Cumulative author, title and subject index including table of contents, volumes 1-19."
- "Phase transitions and critical phenomena. Volume 18"@en
- "Phase transitions and critical phenomena / Vol. 20, Cumulative author, title and subject index, including table of contents, vol. 1-19."
- "Phase transitions and critical phenomena. Vol. 12."
- "Phase Transitions and Critical Phenomena."@en
- "Phase transitions and critical phenomena /"@it
- "Phase transitions and critical phenomena /"
- "Phase transitions and critical phenomena /"@en
- "Phase Transitions and Critical Phenomena, Volume 18"
- "Phase transitions and critical phenomena/"
- "Phase transitions and critical phenomena.. 18."
- "Phase transitions and critical phenomena. V. 1."
- "Phase transitions and critical phenomena / Vol. 12."
- "Phase transitions and critical phenomena.. 19."
- "Phase transitions and critical phenomena. 18."
- "Phase transitions and critical phenomena"
- "Phase transitions and critical phenomena"@en
- "Phase transitions and critical phenomena / Vol. 19."
- "Phase transitions and critical phenomena / 12."
- "Phase transitions and critical phenomena. Volume 19"@en
- "Phase transitions and critical phenomena. Volume 19"
- "Phase transitions and critical phenomena,"@en
- "Phase transitions and critical phenomena,"

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