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This handbook develops a system for concurrent information processing that will enable users to perform crucial real-time data analysis and decision making. The book outlines the parameters for successful large-scale CIP and explains its underlying principles. It provides problem-solving methods and examples as it builds toward the creation of an operational CIP model.
This reference guide of power supply testing techniques has been written to serve the needs of both manufacturers and users. It provides information on both the principles and specific test procedures in three major areas: engineering test, manufacturing test and field service.
1 Overview of Guided Wave Optics.- 2 Slab Waveguides.- 3 The Semiclassical Laser Equations.- 4 Semiconductor Lasers.- 5 Optical Fibers.- 6 Integrated Optics.- List of Symbols Used.
The objective of this book is to present cutting-edge technology in electrical engineering. The research areas as diverse as computer and communication networks; electronic circuits and systems; lasers and photonics; semiconductor and solid-state devices; nano-electronics; biomedical engineering; computational methods; artificial intelligence; robotics, design and manufacturing; control and optimization; computer algorithms; games and graphics; software engineering; computer architecture; cryptography and computer security; power and energy systems; and financial analysis; have been presented in sufficient depth to provide the students the basic theory as well as insights into applications. The approach is designed to develop the thinking process in the students, enabling them to reach a sound understanding of a broad range of topics related to electrical engineering, while motivating their interest in the electrical power industry.For more details, please visit https://centralwestpublishing.com
1. Generalities on Radiated Interference.- 2. Electric and Magnetic Fields from Simple Circuit Shapes.- 3. Fields Radiated by Nonsinusoidal Sources.- 4. General Strategy for Designing a Low-Radiation Product.- 5. Controlling Radiated Emissions at the Chip and Integrated Circuit Level.- 6. Printed Circuit Board Design.- 7. Emission Control in Mother Boards and Backplanes.- 8. Controlling Radiated Fields from Switch-Mode Power Supplies.- 9. Reducing Radiated EMI via Internal Cabling and Packaging.- 10. Box Shielding.- 11. Controlling Radiation from External Cables.- 12. Principal Radiated Emission Specifications and Test Methods.- 13. Troubleshooting Radiated EMI Problems.- Appendix A: The Modified Dipole Model.- Appendix B: Some Validation Results Supporting the Simplified Radiation Model.
The March 1990 symposium brought together the physicists and engineers designing the machine, the industrial organizations supporting the design and construction, the education community, and the governmental groups responsible for the funding and management of the SSC project. This proceedings volu
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