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- The Methodological Aspect of Development and Application Multivariate Classification G-mode for Analyses Geochemical Trend
- Estimating the Stability of a Delayed SIQRS Model with Temporary Immunity
- Study on Finite Dimensional Imprecise Numbers
- Recent Study on a High-Precision Registration Technology Based on Bundle Adjustment in Structured Light Scanning System
- Implementing and Solving Games with Best Payoff Method
- Customized Bubble Continuous Positive Airway Pressure (BCPAP) Device at the National Hospital Abuja Gives Immediate Clinical Improvement (Respiratory Rate, Grunting and Oxygenation) in Neonates with Respiratory Distress
- Experimenting on Spline Solution of Linear Seventh Order Boundary Value Problems Using Tenth Degree Functions and Comparison with Different Degrees of Spline Solutions
- Research on the Existence and Uniqueness of Limit Cycles in a Class of Planar Differential Systems
- The Research for Discovering Monthly Fuzzy Patterns
- Recognition and Prevention of Ocular Morbidity Due to Retinopathy of Prematurity in High Risk Twin Infant Pairs

This paper establishes a very important scientific solution to science of complexity for physicists, and presents a multidisciplinary involved physics and engineering. The innovative solution for complex systems presented here is verified on the basis of principles in engineering such as feedback-system analysis using the classical control theory. This paper proposes that a complex system is a closedloop system with a negative feedback element and is a solvable problem. A complex system can be analyzed using the system analysis theory in control engineering, and its behavior can be realized using a specially designed simulator.

**Author(s) Details **

**Deok-Soo Cha**

Eho Technology Co., Busan, South Korea.

View Book :- http://bp.bookpi.org/index.php/bpi/catalog/book/210

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