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This is a book no high school in the United States should be without. It is an alternative to high-priced education. This book contains information every parent and college prospect should know. Learn how to graduate early, earn a bachelor's degree for half the cost, and much, much more. From the college application process, scholarships, the SAT, sports after high school, college majors, distance education, transferring, and quick credits, this book has it all. The author takes her first-hand experience to comprise a college guide for anyone thinking about earning a bachelor's degree. This book will save you time, money, and heartache. It is a must-read.
Discrete Mathematics: Essentials and Applications offers a comprehensive survey of the area, particularly concentrating on the basic principles and applications of Discrete Mathematics. This up-to-date text provides proofs of significance, keeping the focus on numerous relevant examples and many pertinent applications. Written in a simple and clear tone, the title features insightful descriptions and intuitive explanations of all complex concepts and ensures a thorough understanding of the subject matter.
Probability, Random Variables, Statistics, and Random Processes: Fundamentals & Applications is a comprehensive undergraduate-level textbook. With its excellent topical coverage, the focus of this book is on the basic principles and practical applications of the fundamental concepts that are extensively used in various Engineering disciplines as well as in a variety of programs in Life and Social Sciences. The text provides students with the requisite building blocks of knowledge they require to understand and progress in their areas of interest. With a simple, clear-cut style of writing, the intuitive explanations, insightful examples, and practical applications are the hallmarks of this book. The text consists of twelve chapters divided into four parts. Part-I, Probability (Chapters 1 - 3), lays a solid groundwork for probability theory, and introduces applications in counting, gambling, reliability, and security. Part-II, Random Variables (Chapters 4 - 7), discusses in detail multiple random variables, along with a multitude of frequently-encountered probability distributions. Part-III, Statistics (Chapters 8 - 10), highlights estimation and hypothesis testing. Part-IV, Random Processes (Chapters 11 - 12), delves into the characterization and processing of random processes. Other notable features include: Most of the text assumes no knowledge of subject matter past first year calculus and linear algebra With its independent chapter structure and rich choice of topics, a variety of syllabi for different courses at the junior, senior, and graduate levels can be supported A supplemental website includes solutions to about 250 practice problems, lecture slides, and figures and tables from the text Given its engaging tone, grounded approach, methodically-paced flow, thorough coverage, and flexible structure, Probability, Random Variables, Statistics, and Random Processes: Fundamentals & Applications clearly serves as a must textbook for courses not only in Electrical Engineering, but also in Computer Engineering, Software Engineering, and Computer Science.
Introduction to Digital Communications explores the basic principles in the analysis and design of digital communication systems, including design objectives, constraints and trade-offs. After portraying the big picture and laying the background material, this book lucidly progresses to a comprehensive and detailed discussion of all critical elements and key functions in digital communications.
This is a book no high school in the United States should be without. It is an alternative to high-priced education. This book contains information every parent and college prospect should know. Learn how to graduate early, earn a bachelor's degree for half the cost, and much, much more. From the college application process, scholarships, the SAT, sports after high school, college majors, distance education, transferring, and quick credits, this book has it all. The author takes her first-hand experience to comprise a college guide for anyone thinking about earning a bachelor's degree. This book will save you time, money, and heartache. It is a must-read.
Le frottement est un phenomene physique qui se manifeste au niveau des surfaces en contacts. Il presente un risque accablant dans la degradation des systemes de commande en introduisant des erreurs de suivi, des cycles limites et carrement des instabilites. Afin de compenser les effets de frottement en temps reel, le but de ce travail est de proposer une approche d'identification en ligne du modele de frottement GMS. Pour ce faire, une identification de la composante statique est proposee basee sur une approche d'optimisation nonlineaire min-max. Ensuite, une autre approche basee sur la mesure de la force de frottement en utilisant un observateur robuste est proposee. Cette aproche consiste a lineariser le modele de frottement et proposer une theorie de filtrage pour respecter les conditions d'application de l'observateur. Dans le cas de l'absence de la mesure de la force de frottement une adaptation basee sur une approche de filtrage avec des conditions initiales appropriees afin de calculer la force de frottement filtree est proposee. Une validation experimentale est proposee a la fin du travail.
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