Thursday, September 5, 2013

Electrical Engineering: Principles & Applications 6e, Hambley


Electrical Engineering: Principles & Applications 6th Edition by Allan R. Hambley helps college students learn electrical-engineering fundamentals with minimal frustration. Its objectives are to current basic ideas in a common setting, to point out students how the principles of electrical engineering apply to particular issues in their own fields, and to reinforce the general learning process.

Circuit analysis, digital systems, electronics, and electromechanics are covered. The pedagogical features stimulate scholar curiosity and engender consciousness of the material’s relevance to their chosen profession. The book includes numerous pedagogical features designed with the goal of stimulating scholar curiosity, eliminating frustration, and engendering consciousness of the relevance of the material to their chosen profession.

Statements of learning aims open each chapter. Feedbacks within the margins emphasize and summarize vital points or point out widespread pitfalls that college students must avoid. Brief boxed articles reveal how electrical-engineering rules are applied in different fields of engineering. For instance, see the articles on active noise cancellation (page 295) and digital pacemakers (beginning on page 393).

Each chapter gives college students a chance to test their knowledge. Solutions appear in Appendix E and complete options are included in the Pupil Solutions files. There are whole solutions to the in-chapter exercises and Follow Assessments, included as PDF information on-line, build scholar confidence and point out where additional research is needed.

Summaries of vital factors at each chapter present references for students. Key equations are highlighted in the book to draw consideration to important results. Protection of MATLAB and the Symbolic Toolbox for network analysis has been added in Chapters 2 through 6. Roughly one hundred fifty issues are new to this edition, changing some of the problems from the earlier edition, and lots of different problems have been modified.

Additions to Chapter 2 embrace extra dialogue of conductances, illustration of shortcuts to writing node and mesh equations, utilizing MATLAB to unravel network equations numerically and symbolically, and two new examples. The material on making use of superposition to circuits with controlled sources has been deleted to make room for the additions, and the chapter has been slightly reorganized.

Part 3.8 Symbolic Integration and Differentiation Using MATLAB has been added. Section 4.6 Transient Analysis Using the MATLAB Symbolic Toolbox has been added. Additions to Chapter 5 embrace the idea of complex power and Part 5.8 AC Evaluation Using MATLAB. Chapter 9 has been modified to mirror modifications in the LabVIEW software.

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