This is an acclaimed book intended for the general reader who is interested in science. The author is a physicist who is well-known for his development of the property called "self-organized criticality", a property or phenomenon that lies at the heart of large dynamical systems. It can be used to analyse systems that are complicated, and which are part of the new science of complexity. It is a unifying concept that can be used to study phenomena in fields as diverse as economics, astronomy, the earth sciences, and physics. The author discusses his discovery of self-organized criticality; its relation to the world of classical physics; computer simulations and experiments which aid scientists' understanding of the property; and the relation...
We all represent examples of self-organised and self-assembled structures. The natural world is full...
Power laws and distributions with heavy tails are common features of many complex systems. Examples ...
Abstract. In this paper we propose to consider living systems as "coherent critical structures&...
Critical Phenomena play a fundamental role in the modern physics. Critical behavior is characterized...
One of the most fascinating and important phenomena studied by Statistical Physics is the so-called ...
Concepts, methods and techniques of statistical physics in the study of correlated, as well as uncor...
We suggest that ensembles of self-replicating entities such as biological systems naturally evolve t...
The last decade and a half has seen an ardent development of self-organised criticality (SOC), a new...
This book is based on the outcome of the “2012 Interdisciplinary Symposium on Complex Systems” held ...
Introduced by the late Per Bak and his colleagues, self-organized criticality (SOC) has been one of ...
Evolutionary physics studies the general behaviour of non equilibrium systems, subject to non-linear...
International audienceThree aspects of complexity are fractals, chaos, and self-organized criticalit...
Introduced by the late Per Bak and his colleagues, self-organized criticality (SOC) has been one of ...
Encyclopedia of Complexity and Systems Science provides an authoritative single source for understan...
Abstract: Nature essentially consists of complex systems. The paper presents a conceptual framework ...
We all represent examples of self-organised and self-assembled structures. The natural world is full...
Power laws and distributions with heavy tails are common features of many complex systems. Examples ...
Abstract. In this paper we propose to consider living systems as "coherent critical structures&...
Critical Phenomena play a fundamental role in the modern physics. Critical behavior is characterized...
One of the most fascinating and important phenomena studied by Statistical Physics is the so-called ...
Concepts, methods and techniques of statistical physics in the study of correlated, as well as uncor...
We suggest that ensembles of self-replicating entities such as biological systems naturally evolve t...
The last decade and a half has seen an ardent development of self-organised criticality (SOC), a new...
This book is based on the outcome of the “2012 Interdisciplinary Symposium on Complex Systems” held ...
Introduced by the late Per Bak and his colleagues, self-organized criticality (SOC) has been one of ...
Evolutionary physics studies the general behaviour of non equilibrium systems, subject to non-linear...
International audienceThree aspects of complexity are fractals, chaos, and self-organized criticalit...
Introduced by the late Per Bak and his colleagues, self-organized criticality (SOC) has been one of ...
Encyclopedia of Complexity and Systems Science provides an authoritative single source for understan...
Abstract: Nature essentially consists of complex systems. The paper presents a conceptual framework ...
We all represent examples of self-organised and self-assembled structures. The natural world is full...
Power laws and distributions with heavy tails are common features of many complex systems. Examples ...
Abstract. In this paper we propose to consider living systems as "coherent critical structures&...