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Non-Asymptotic Theory of Waves in Excitable Media Across Nature and Technology

Non-Asymptotic Theory of Waves in Excitable Media Across Nature and Technology

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"Non-Asymptotic Theory of Waves in Excitable Media Across Nature and Technology" by Gennadiy Vladimiroxich Zhizhin, Gennadiĭ Vladimirovich Zhizhin is a mathematics book and learning resource focused on Dynamics. Best for teachers, students, and readers looking for stronger mathematical understanding.

The non-asymptotic theory of waves in excitable media refers to the complex dynamics of wave phenomena in systems that exhibit excitable behavior, spanning both natural and technological contexts. Unlike traditional asymptotic theories that focus on long-term behavior, non-asymptotic approaches emphasize the transient, finite-time dynamics of wave propagation, pattern formation, and instability within excitable media. These systems reveal diverse wave behaviors. Understanding the non-asymptotic characteristics of these waves offers crucial insights into processes such as heart arrhythmias, neural signaling, chemical oscillations, and engineered wave-control mechanisms, making it a vital area of study across multiple fields. Non-Asymptotic Theory of Waves in Excitable Media Across Nature and Technology explores various wave processes in gaseous and condensed media, the flight model of gregarious locusts and bark beetles, emissions of prominences on the sun, and other processes. The methods described can also be used in other examples of wave propagation in excitable media. This book covers topics such as spatiotemporal chaos, spiral wave dynamics, and nonlinear wave propagation, and is a useful resource for scientists, academicians, engineers, and researchers.

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Best For: Researchers and students interested in wave dynamics within excitable media in physics and environmental science.
Focus: Transient and finite-time dynamics of wave propagation and pattern formation in excitable media.
Covers: Non-asymptotic theoretical approaches to wave phenomena in natural and technological excitable systems.
Why It Matters: Provides insight into complex wave behaviors beyond long-term asymptotic analysis, relevant for understanding dynamic processes in both natural environments and engineered systems.

"Non-Asymptotic Theory of Waves in Excitable Media Across Nature and Technology" by Gennadiy Vladimiroxich Zhizhin, Gennadiĭ Vladimirovich Zhizhin is a mathematics book and learning resource focused on Dynamics. Best for teachers, students, and readers looking for stronger mathematical understanding.

Topic: Dynamics

Author: Gennadiy Vladimiroxich Zhizhin, Gennadiĭ Vladimirovich Zhizhin

Who this is for:

  • Teachers and classroom instructors
  • Students building subject mastery
  • Readers looking for practical learning support

Why this book matters: It stands out as a practical math resource that helps explain concepts, strengthen problem-solving, and support classroom or independent learning.

The non-asymptotic theory of waves in excitable media refers to the complex dynamics of wave phenomena in systems that exhibit excitable behavior, spanning both natural and technological contexts. Unlike traditional asymptotic theories that focus on long-term behavior, non-asymptotic approaches emphasize the transient, finite-time dynamics of wave propagation, pattern formation, and instability within excitable media. These systems reveal diverse wave behaviors. Understanding the non-asymptotic characteristics of these waves offers crucial insights into processes such as heart arrhythmias, neural signaling, chemical oscillations, and engineered wave-control mechanisms, making it a vital area of study across multiple fields. Non-Asymptotic Theory of Waves in Excitable Media Across Nature and Technology explores various wave processes in gaseous and condensed media, the flight model of gregarious locusts and bark beetles, emissions of prominences on the sun, and other processes. The methods described can also be used in other examples of wave propagation in excitable media. This book covers topics such as spatiotemporal chaos, spiral wave dynamics, and nonlinear wave propagation, and is a useful resource for scientists, academicians, engineers, and researchers.

AuthorGennadiy Vladimiroxich Zhizhin, Gennadiĭ Vladimirovich Zhizhin
PublisherIGI Global
Published2023
ISBN-139781668477465
BindingPaperback
LanguageEnglish
SubjectsMathematics
TopicDynamics

Format: Paperback

Language: English

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