Self-Organized Motion : Physicochemical Design Based on Nonlinear Dynamics. Questo articolo non è disponibile.
Lingua: inglese
Editore: RSC Publishing Nov 2018, 2018
- Rilegato
- Nuovo

Da: AHA-BUCH GmbH, Einbeck, GermaniaAHA-BUCH GmbH
Venditore AbeBooks dal 14 agosto 2006
Condizione: Nuovo
EUR 296,66
Descrizione dell’articolo da parte del venditore
Neuware - Self-propelled objects (particles, droplets) are autonomous agents that can convert energy from the environment into motion. These motions include nonlinear behaviour such as oscillations, synchronization, bifurcation, and pattern formation. In recent years, there has been much interest in self-propelled objects for their potential role in mass transport or their use as carriers in confined spaces. An improved understanding of self-organized motion has even allowed researchers to design objects for specific motion.This book gives an overview of the principles of self-propelled motion in chemical objects (particles, droplets) far from their thermodynamic equilibrium, at various spatial scales. Theoretical aspects, the characteristics of the motion and the design procedures of such systems are discussed from the viewpoint of nonlinear dynamics and examples of applications for these nonlinear systems are provided.This book is suitable for researchers and graduate students interested in physical and theoretical chemistry as well as soft matter.…
Codice articolo 9781788011662
- Titolo
- Self-Organized Motion : Physicochemical Design Based on Nonlinear Dynamics
- Autore
- Satoshi Nakata
- Editore
- RSC Publishing Nov 2018
- Anno di pubblicazione
- 2018
- Condizione
- Neu
- Rilegatura
- Buch
- Lingua
- inglese
- ISBN 10
- 178801166X
- ISBN 13
- 9781788011662
- Peso dell'articolo
- 726 grammi
- Dimensioni
- 234x165x28 mm
- Serie
- Libro 17 di 25: Chemical Biology
Self-propelled objects (particles, droplets) are autonomous agents that can convert energy from the environment into motion. These motions include nonlinear behaviour such as oscillations, synchronization, bifurcation, and pattern formation. In recent years, there has been much interest in self-propelled objects for their potential role in mass transport or their use as carriers in confined spaces. An improved understanding of self-organized motion has even allowed researchers to design objects for specific motion.
This book gives an overview of the principles of self-propelled motion in chemical objects (particles, droplets) far from their thermodynamic equilibrium, at various spatial scales. Theoretical aspects, the characteristics of the motion and the design procedures of such systems are discussed from the viewpoint of nonlinear dynamics and examples of applications for these nonlinear systems are provided.
This book is suitable for researchers and graduate students interested in physical and theoretical chemistry as well as soft matter.
"Riassunto" può appartenere a un’altra edizione di questo titolo.
Dalla quarta di copertina
Self-propelled objects (particles, droplets) are autonomous agents that can convert energy from the environment into motion. These motions include nonlinear behaviour such as oscillations, synchronization, bifurcation, and pattern formation. In recent years, there has been much interest in self-propelled objects for their potential role in mass transport or their use as carriers in confined spaces. An improved understanding of self-organized motion has even allowed researchers to design objects for specific motion.
This book gives an overview of the principles of self-propelled motion in chemical objects (particles, droplets) far from their thermodynamic equilibrium, at various spatial scales. Theoretical aspects, the characteristics of the motion and the design procedures of such systems are discussed from the viewpoint of nonlinear dynamics and examples of applications for these nonlinear systems are provided.
This book is suitable for researchers and graduate students interested in physical and theoretical chemistry as well as soft matter.
"Descrizione articolo" può appartenere a un’altra edizione di questo titolo.