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Flocks of birds, schools of fish and swarms of locusts display amazing forms of collective motion, while huge numbers of glow worms can emit light signals with almost unbelievable synchronization. These and many other collective phenomena in animal societies take place according to laws very similar to those governing the collective behavior in the inanimate nature, such as the magnetization of iron and the light radiation of lasers. During recent years, this has led to the study of swarm behavior as a challenging new field of science, in which ideas from the physical world are applied in order to understand the formation and structure of animal swarms. From these studies, it has become clear that such collective behavior of animals emerges in a self-organized way, without any need of overall coordination. In this book, we present different swarm phenomena of the animal world and compare them to their counterparts in physics, in a conceptual and non-technical way, addressed to a general readership.
This book investigates the fundamental question of how complex, coordinated behaviors in animal societies emerge through self-organization without central control. Helmut Satz, a physicist, utilizes principles from statistical mechanics and condensed matter physics to draw parallels between biological swarms and inanimate physical systems. The text argues that the mechanisms governing phenomena like magnetism and laser radiation provide a robust framework for understanding the collective motion of birds, fish, and insects.
What You Will Find
Scope Limits
Experts recognize this work as a bridge between the physical sciences and behavioral biology, noting its accessibility for non-specialists. Readers frequently highlight the clarity of the author's analogies, which successfully demystify complex systems for a general audience.
Page Count:
144
Publication Date:
2020-01-01
Publisher:
OUP Oxford
ISBN-10:
0192595024
ISBN-13:
9780192595027
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