PDF Ebook Electric Circuits (7th Edition), by James W. Nilsson, Susan Riedel
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Electric Circuits (7th Edition), by James W. Nilsson, Susan Riedel
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Electric Circuits, Seventh Edition features a redesigned art program, a new four-color format, and 75% new or revised problems throughout. In the midst of these changes, the book retains the goals that have made it a best-seller: 1) To build an understanding of concepts and ideas explicitly in terms of previous learning; 2) To emphasize the relationship between conceptual understanding and problem solving approaches; 3) To provide readers with a strong foundation of engineering practices. Chapter topics include Circuit Variables; Circuit Elements; Simple Resistive Circuits; Techniques of Circuit Analysis; The Operational Amplifier; Inductors, Capacitors, and Mutual Inductance; Response of First-Order RL and RC Circuits; Natural and Step Responses of RLC Circuits; Sinusoidal Steady-State Analysis; and more. For anyone interested in circuit analysis.
- Sales Rank: #327430 in Books
- Published on: 2004-05-17
- Original language: English
- Number of items: 1
- Dimensions: 9.52" h x 1.66" w x 8.68" l,
- Binding: Hardcover
- 992 pages
Most helpful customer reviews
1 of 2 people found the following review helpful.
Forget it!
By Ryan Wood
This book is not even worth 1 star. I won't bother you with the details since some of the other reviews posted are right on, especially that long one I saw by SDP_8. I will add that I wouldn't sweat about not having the solutions available. There are plenty of online sites where you can look that information up for any text book, just ask any of your fellow students. Because of this book, I transfered to a local Technical College for EE for more hands on. I have lost all respect for Engineering Courses at major Universities. All book, little or no labs, and your judged on how well you do on tests from worthless and confusing books like this.
29 of 31 people found the following review helpful.
From a professor's point of view
By K. B. Floyd
Background: I've used this text for 5 years now, beginning with the 7th Ed, and now probably moving to the 9th. Before my teaching career I was a circuit designer for HP for about 12 years. I teach at a community college, and we use this text because most of the universities to which my students transfer use it. I've never had a student complain about this text, either personally or in a student evaluation.
The good:
I think the text is well-written, the explanations are clear and concise and at exactly the level that sophomore EE/ECE students need. The examples are well-chosen and sufficient in number to effectively present the fundamental concepts.
What could be improved:
1. More general problems are needed that require the student to solve the circuits using generic components (R, L, C) instead of giving numeric values for all components. The purely numeric approach leads to a "sea of numbers" plug-and-chug solution that has little meaning to the student and even less value in terms of understanding circuit behaviour. Students need to get used to working their solutions into the standard algebraic forms that provide insight into the behaviour of the circut. (I have designed my labs to make up for this.)
2. The order of the topics assumes the student is taking their first course in differential equations concurrently, and so postpones the introduction of the LaPlace transform until near the end of the semester. Too much time is spent solving 1st and 2nd order linear, constant coefficient ODEs by methods engineers will never use again. This makes LaPlace methods look like an afterthought, when in fact it is how EEs actually work in the field.
All in all, I view this book as a very positive text, and will probably continue to use it. It does a good job of demonstrating the thinking required of an engineer, and helping the persistent student to develope it.
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To the struggling student using this text:
More than likely your problems are with prerequite concepts. All circuits texts appropriate for this level assume you are good at algebra, trig, and calculus (no, I mean GOOD at them), and that you have completed 2 semesters of calculus-based physics. This is requred to learn the topic of circuit analysis at the level expected of you.
Also, you should not expect to learn the concepts in any engineering, physics, or upper level math class by simply mimicing examples. You must learn to generalize the fundamental concepts so that you can apply them in ways you haven't seen in an example. If you can't learn that, then you may want to consider a change in either attitude or major. Engineers are not "paid the big bucks" to solve problems that have already been solved before. You must develope the ability to think generally, and this entails a lot of time and effort. Unless you are a genius, there is some frustration inherent in the process. It is at these times that "the book sucks, the professor sucks, so I guess I'll go write a review on Amazon."
Your time would be more profitably spent making proper use of the examples in the book (and in your class notes). Before beginning your homework problems try working through all the examples without referring to the solution. Don't just read them, work them out on paper. Keep working the examples until you understand them, only then are you ready to begin the homework set. You might think you don't have time for this, but it will reduce your "head-banging time" later on. The examples are not intended to be templates into which you can substitute similar values from each assigned problem in order to produce an answer. That would be the opposite of helpful.
0 of 1 people found the following review helpful.
Received as stated
By Jennice Bautista
Worth the rent. It arrived in great condition and book was very helpful
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