<p><P>Time delays in dynamical systems arise as an inevitable consequence of finite speeds of information transmission. Realistic models increasingly demand the inclusion of delays in order to properly understand, analyze, design, and control real-life systems. </P><P>The goal of this book is to pre
Complex Systems: Theory and Applications
โ Scribed by Rebecca Martinez
- Publisher
- Nova Science
- Year
- 2017
- Tongue
- English
- Leaves
- 163
- Series
- Mathematics Research Developments
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Synopsis
This books provides new research on the theories and applications of complex systems. Chapter One reviews the process algebra approach to quantum electrodynamics. Chapter Two describes a specific aspect of complex systems and the fact that they may consist of established subsystems or components that originate from converging industries. Chapter Three examines the development of the generalised nonlinear Schrรถdinger equation of rotating cosmogonical body formation. Chapter Four analyses the application of neural network modeling in organising a hierarchical teaching system based on mentorship. The final chapter presents two methods to evaluate the collaborative potential of a network of 16 organisations and identifies measures to promote their coordination.
โฆ Table of Contents
Contents
Preface
Chapter 1
A Process Algebra Approach to Quantum Electrodynamics: Physics From the Top Up
Chapter 2
Realizing Success for Complex Converging Systems
Abstract
Introduction
Theoretical Background
Factors for Standard Success for Subsystem Standards
Conclusion and Discussion
References
Chapter 3
Development of the Generalized Nonlinear Schrรถdinger Equation of Rotating Cosmogonical Body Formation
Abstract
1. Introduction
2. The Distribution of Mass Density and Potential as a Result of an Initial Gravitational Condensation of a Molecular Cloud
3. The Derivation of the General Antidiffusion Equation for a Slowly Evolving Process of Initial Gravitational Condensation of a Rotating Spheroidal Body
4. The Antidiffusion Velocity into a Rotating Cosmogonical Body and the Characterizing Number as Control Parameter of Its Dynamical States
5. The Derivation of the Generalized Nonlinear Schrรถdinger Equation in the Statistical Theory of Rotating Cosmogonical Bodies
6. A Frequency Interpretation of the Gravitational Potential and the Gravitational Strength of a Rotating Spheroidal Body
Conclusion
References
Biographical Sketch
Chapter 4
The Application of Neural Network Modeling in Organizing a Hierarchical Teaching System Based on Mentorship
Abstract
Group 2-6
Group 3-a
Group 2-d
Group 1-4
Conclusion
References
Chapter 5
Modelling Organisation Networks Collaborating on Health and Environment within ASEAN
Abstract
1. Introduction
2. Mining the Organisationsโ Profiles
3. The Organisations/Issues Lattice
3.1. The Formal Context of Organisations and Issues
3.2. Navigating the Organisations/Issues Lattice
4. Organisation Networks as Cognitive Systems
4.1. Organisation Networks as Information Integration Systems (IIS)
4.2. IIS Induced by Organisationsโ Boards
4.3. IIS induced by Organisationsโ Partnerships
5. Discussion
5.1. Comparison with Other Approaches
5.2. The entanglement of Governance
Conclusion
Acknowledgments
Appendix
References
Index
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