Mathematical Problems in Engineering

Propagation Phenomena and Transitions in Complex Systems 2012


Publishing date
03 Aug 2012
Status
Published
Submission deadline
03 Feb 2012

Lead Editor

1University Politehnica of Bucharest, 70709 Bucharest, Romania

2University of Salerno, Via Ponte Don Melillo, 84084 Fisciano, Italy

3University of West Florida, Pensacola, FL 32514, USA

4East China Normal University, Shanghai 200062, China


Propagation Phenomena and Transitions in Complex Systems 2012

Description

Today, engineers face an increasing challenge in advanced engineering applications that are based on efficient mathematical models for propagation and transition phenomena. Propagation aspects implying commutative and/or additive consequences of quantum physics are used extensively in the design of long range transmission systems. Differential geometry is adapted for solving nonlinear partial differential equations with very great number of variables for transitions in complex optoelectronics systems. Special mathematical functions are used in modeling very small-scale material properties (energy levels and induced transitions) in quantum physics for the design of nanostructures in microelectronics. Time series with extremely high transmission rates are used for multiplexed transmission systems for large communities, such as traffic in computer networks or transportations, financial time series, and time series of fractional order in general. All these advanced engineering subjects require efficient mathematical models in the development of classical tools for complex systems such as differential geometry, vector algebra, partial differential equations, and time series dynamics. The objective in such applications is to take into consideration efficiency aspects of mathematical and physical models required by basic phenomena of propagation and transitions in complex systems, such as in situations implying physical limits as long distances propagation phenomena (solitons), quantum transitions in nanostructures, complex systems with great number of variables, and infinite spatiotemporal extension of material media. This special issue seeks high-quality research and review papers in developments and methods for efficient mathematical approaches for propagation phenomena and transitions in complex systems with applications in experimental physics and engineering. Potential topics include, but are not limited to:

  • Accurate and efficient mathematical models for long distances propagation phenomena
  • Specific methods for solving nonlinear partial differential equations describing wave propagation and transitions in nonlinear optics and optoelectronics
  • Mathematical tools for analyzing the dynamics of complex systems with applications to in nanostructures, microelectronics, and image processing
  • Dynamical models for infinite spatiotemporal extension of material media or for highly repetitive phenomena

Other ideas that achieve the goal of improving the mathematical methods and models describing propagation phenomena and transitions in complex systems based on innovative developments and efficient methods, such as network calculus, network dynamics, and cyber-physical networking systems, are welcome.

Before submission authors should carefully read over the journal's Author Guidelines, which are located at http://www.hindawi.com/journals/mpe/guidelines/. Prospective authors should submit an electronic copy of their complete manuscript through the journal Manuscript Tracking System at http://mts.hindawi.com/ according to the following timetable:


Articles

  • Special Issue
  • - Volume 2012
  • - Article ID 578719
  • - Research Article

Dual-EKF-Based Real-Time Celestial Navigation for Lunar Rover

Li Xie | Peng Yang | ... | Ming Li
  • Special Issue
  • - Volume 2012
  • - Article ID 986134
  • - Research Article

Hidden-Markov-Models-Based Dynamic Hand Gesture Recognition

Xiaoyan Wang | Ming Xia | ... | Carlo Cattani
  • Special Issue
  • - Volume 2012
  • - Article ID 532610
  • - Research Article

Stable One-Dimensional Periodic Wave in Kerr-Type and Quadratic Nonlinear Media

Roxana Savastru | Simona Dontu | ... | Vasile Babin
  • Special Issue
  • - Volume 2012
  • - Article ID 928161
  • - Research Article

Cutting Affine Moment Invariants

Jianwei Yang | Ming Li | ... | Yunjie Chen
  • Special Issue
  • - Volume 2012
  • - Article ID 827901
  • - Research Article

Homotopy Perturbation Method and Variational Iteration Method for Harmonic Waves Propagation in Nonlinear Magneto-Thermoelasticity with Rotation

Khaled A. Gepreel | S. M. Abo-Dahab | T. A. Nofal
  • Special Issue
  • - Volume 2012
  • - Article ID 958101
  • - Research Article

Simplicial Approach to Fractal Structures

Carlo Cattani | Ettore Laserra | Ivana Bochicchio
  • Special Issue
  • - Volume 2012
  • - Article ID 371890
  • - Research Article

Gaussian Curvature in Propagation Problems in Physics and Engineering

Ezzat G. Bakhoum
  • Special Issue
  • - Volume 2012
  • - Article ID 653939
  • - Research Article

Solving Linear Coupled Fractional Differential Equations by Direct Operational Method and Some Applications

S. C. Lim | Chai Hok Eab | ... | S. Y. Chen
  • Special Issue
  • - Volume 2012
  • - Article ID 706326
  • - Research Article

Study of the Fractal and Multifractal Scaling Intervening in the Description of Fracture Experimental Data Reported by the Classical Work: Nature 308, 721–722(1984)

Liliana Violeta Constantin | Dan Alexandru Iordache
  • Special Issue
  • - Volume 2012
  • - Article ID 478295
  • - Research Article

Multidimensional Wave Field Signal Theory: Transfer Function Relationships

Natalie Baddour
Mathematical Problems in Engineering
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Acceptance rate11%
Submission to final decision118 days
Acceptance to publication28 days
CiteScore2.600
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