Showing posts with label physics. Show all posts
Showing posts with label physics. Show all posts

Real Science-4-Kids, Physics Level 1, Student Text Review

Real Science-4-Kids, Physics Level 1, Student Text
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Real Science-4-Kids, Physics Level 1, Student Text ReviewHaving heard rave reviews about this set (text, lab book, language connects) I was excited to teach this curriculum at a homeschool co-op in which I'm involved. (I used to teach physics and chemistry in the private and public sector.) As I have worked my way through the text and labs, I've been surprised at the number of issues that keep coming up. Call me "new fashioned" but let's work in metric (any lab that requires measurement). That's what 'real' scientists do. Call me picky but when she asks the kids to make a graph, she doesn't even get the independent and dependent variables on the right axis (the penny battery lab). She calls for equipment in the materials list but it isn't discussed how they're supposed to use in the actual procedure (the marble lab). Some charts are very poorly laid out (the slinky lab). Explanations are poorly written (the electroscope lab). Even the banana smash lab worked better w/play doh. The cars make a great observable imprint. Why waste a banana? I've had more success w/the Janet Van Cleave book on Physics experiments and demonstrations. The text is ok but lacks any excitement. Paul Hewitt's Conceptual Physics, while for an older crowd, can completely be used for this 3rd-5th grade age group and has wonderful analogies, graphics, and explanations. I've used it to supplement what I've been teaching at the co-op and my 9-11 year olds are doing great with it. My opinion: not worth the money.Real Science-4-Kids, Physics Level 1, Student Text OverviewReal Science-4-Kids Physics, Level I, written at a 4th and 5th grade level, presents college level physics in a way children can understand. Concepts included are: Laws of physics and the scientific method; force, work and energy; potential and kinetic energy; motion; chemical and electrical energy; current, magnets and electromagnets; light and sound energy; and conservation of energy.

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Physics for Scientists and Engineers, Chapters 1-39 (with Student Tools CD-ROM) Review

Physics for Scientists and Engineers, Chapters 1-39 (with Student Tools CD-ROM)
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Physics for Scientists and Engineers, Chapters 1-39 (with Student Tools CD-ROM) ReviewFor my physics for physics majors series, my professor is using the Giancoli books. Within those books there are multiple problems that the book does not give you any clue how to solve. The sheer number of these problems eliminates the chance that they are there to help the physics student figure it out for themselves. I was having "fun" with one of the problems in the book, when one of my neighbors stated that he remembered doing a similar problem from his Serway book. He showed me his book, and sure enough, there was a detailed explanation of how to solve that type of problem, and how they derived their equations. The fact that they used no calculus to derive the equation when it was unneccesary in my opinion was a plus. Five stars to a book that can solve the problems in other books!Physics for Scientists and Engineers, Chapters 1-39 (with Student Tools CD-ROM) OverviewThis best-selling, calculus-based text is recognized for its carefully crafted, logical presentation of the basic concepts and principles of physics. Raymond Serway, Robert Beichner, and contributing author John W. Jewett present a strong problem-solving approach that is further enhanced through increased realism in worked examples. Problem-solving strategies and hints allow students to develop a systematic approach to completing homework problems. The outstanding ancillary package includes full multimedia support, online homework, and a content-rich Web site that provides extensive support for instructors and students. The CAPA (Computer-assisted Personalized Approach), WebAssign, and University of Texas homework delivery systems give instructors flexibility in assigning online homework.

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A Practical Guide to Data Analysis for Physical Science Students Review

A Practical Guide to Data Analysis for Physical Science Students
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A Practical Guide to Data Analysis for Physical Science Students ReviewThis book really covers it all - from error handling and propagation to how to make data regression for data analysis and so on - for the experimental physics student. It's very well written in a direct and right-to-the-point way. Definatly a great book.A Practical Guide to Data Analysis for Physical Science Students OverviewThis textbook is intended for undergraduates who are carrying out laboratory experiments in the physical sciences for the first time.It is a practical guide on how to analyze data and estimate errors.The necessary formulas for performing calculations are given, and the ideas behind them are explained, although this is not a formal text on statistics.Specific examples are worked through step by step in the text.Emphasis is placed on the need to think about whether a calculated error is sensible. Students should take this book with them to the laboratory, and the format is intended to make this convenient.The book will provide the necessary understanding of what is involved, should inspire confidence in the method of estimating errors, and enable numerical calculations without too much effort.

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Glencoe Physics: Principles and Problems, Student Edition (Glencoe Science) Review

Glencoe Physics: Principles and Problems, Student Edition (Glencoe Science)
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Glencoe Physics: Principles and Problems, Student Edition (Glencoe Science) ReviewExcellent and prompt service; I was very happy with the book's condition. It looked almost new.Glencoe Physics: Principles and Problems, Student Edition (Glencoe Science) OverviewAccelerate student learning with the perfect blend of content and problem-solving strategies!Physics: Principles and Problems offers integrated support, abundant opportunities for problem solving, and a variety of realistic applications. The program has a balance of good conceptual presentation with a strong problem-solving strand. The program resources are organized in a way that saves you preparation time and allows you to meet the needs of students in your diverse classroom. New for 2009 features include more problems - Supplemental Problems, Challenge Problems, Pre-AP/Critical Thinking Problems and practice for end-of-course exams - , better math support with unique Example Problems that offer "coaching notes" to aid comprehension, and Teacher-tested lab options!

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Prentice Hall Physical Science: Concepts in Action ?2009: Student Edition with Earth and Space Science (NATL) Review

Prentice Hall Physical Science: Concepts in Action 2009: Student Edition with Earth and Space Science (NATL)
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Prentice Hall Physical Science: Concepts in Action 2009: Student Edition with Earth and Space Science (NATL) ReviewGreat book; teaches well. It holds a lot of information presented in a unique, elaborate way. The language is pretty interesting and studying from this textbook at 11:00pm won't make you fall asleep. There are some really interesting pictures and great examples for each concept, which help reach the basic understanding required at this level.
Prentice Hall Physical Science: Concepts in Action 2009: Student Edition with Earth and Space Science (NATL) OverviewPrentice Hall Physical Science: Concepts in Action ©2009
Student Edition with Earth and Space Science
Prentice Hall Physical Science: Concepts in Action helps students make the important connection between the science they read and what they experience every day. Relevant content, lively explorations, and a wealth of hands-on activities take students' understanding of science beyond the page and into the world around them. Now includes even more technology, tools and activities to support differentiated instruction!

Features and Benefits
Virtual Physical Science—a Prentice Hall exclusive—is the most robust interactive lab available.
A proven formula for reading success before, during, and after every lesson enables students to fully understand key concepts.
Relevant content, lively explorations, and a wealth of hands-on activities help students understand science.
Exclusive partnership with Discovery Channel School™ brings exciting video content to every chapter.
The Complete Interactive Textbook—available online and on CD-ROM. Audio of the full text read aloud supports English Language learners and reluctant readers.
PresentationEXPRESS™ helps you create dynamic presentation with slides, videos, and participatory activities.

Research and Validity
Quantitative and qualitative research supporting Prentice Hall Science programs


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Mathematical Methods: For Students of Physics and Related Fields (Lecture Notes in Physics) Review

Mathematical Methods: For Students of Physics and Related Fields (Lecture Notes in Physics)
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Mathematical Methods: For Students of Physics and Related Fields (Lecture Notes in Physics) ReviewWhen I took undergraduate quantum mechanics 30 years ago, we learned a lot about Louis deBroglie, Max Planck, the photoelectric effect, then moved into wave functions, the Schroedinger equation, simple one-dimensional potentials and the hydrogen atom. Maybe there was a little angular momentum tossed in. It was not until graduate school that I learned much about
/X> = xi/x>
where /X> is a vector in an n-dimensional, linearly independent vector space and the xi's were its components in the basis /x>. A lot of things like representations might have made more sense. Anyway, Hassani's undergraduate text gives one an excellent view of vectors and coordinate systems. In particular, it trains one well to leap into the more abstract view of vectors one reads about in, say, R. Shankar's excellent book on quantum mechanics, and also gives one a good deal of exercise on how to translate between coordinate systems. In graduate school, I found the ability to roam between coordinate systems to be very, very handy and the laborious time spent learning it was worth it. I'm not done with this book yet. I'm now getting into his chapters on complex variables and differential equations, but Hassani's treatment of vectors and coordinate systems is very good indeed. Undergraduate physics students who plan to go on into graduate school will find time with this book well spent.Mathematical Methods: For Students of Physics and Related Fields (Lecture Notes in Physics) OverviewIntended to follow the usual introductory physics courses, this book has the unique feature of addressing the mathematical needs of sophomores and juniors in physics, engineering and other related fields. Many original, lucid, and relevant examples from the physical sciences, problems at the ends of chapters, and boxes to emphasize important concepts help guide the student through the material.Beginning with reviews of vector algebra and differential and integral calculus, the book continues with infinite series, vector analysis, complex algebra and analysis, ordinary and partial differential equations. Discussions of numerical analysis, nonlinear dynamics and chaos, and the Dirac delta function provide an introduction to modern topics in mathematical physics.This new edition has been made more user-friendly through organization into convenient, shorter chapters. Also, it includes an entirely new section on Probability and plenty of new material on tensors and integral transforms.

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A Student's Guide to Maxwell's Equations Review

A Student's Guide to Maxwell's Equations
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A Student's Guide to Maxwell's Equations ReviewThis is the best overview of Maxwell's equations I have ever come across. I cannot praise it enough for it's brilliant clarity.
If you have taken or are taking an electromagnetism or vector calculus course, you may have run into the classic problem of not being able to see the forest through the trees. These courses can be very dense, and anything that can help give a sense of perspective can be very helpful. Daniel Fleisch's book is just such a tool. It provides a thorough overview of Maxwell's equations with stunning clarity. Each equation is broken down into it's component parts, and the physical significance of each part is thoroughly explained. In this way, not only are the core concepts of Maxwell's equations made clear, but many concepts from vector calculus are also brought out in crystal clarity, (I got much more out of this book than I did the often recommended "Div, Grad, Curl"). It will help you see the "forest through the trees".
Also of note are the problem sets at the end of each chapter. The problems work very well to reinforce the concepts from each chapter. They are not overly difficult or too simplistic. They are geared specifically at reinforcing concepts. The author has also posted on his web site a set of solutions for every problem, and each of the problems is thoroughly worked out with clear explanations. This is a HUGE plus for anyone picking up this book for self-study.
In my mind this book is a perfect compliment to an electromagnetism or a vector calculus class (or as a review after having taken such a class). Although the writing is clear enough that one could probably get a lot even without having had a vector calculus class, ideally one would have had at least some minimal exposure to vector calculus. It's not that you need to be an expert in vector calculus; all the concepts are explained very well in the book and the actual calculus you need for solving the problems is minimal, but in my mind the book will work best for those with some exposure to vector calculus.
My only suggestion to the author would be to include a table summarizing Maxwell's equations, (and perhaps a table of some basic constants). Other than that, this is a perfect book. It is THE standard by which other self-study books ought to be compared.
Update: When I wrote the above review I was half way through chapter 4 (of five chapters). Having completed the book, I do want to point out that the beginning of chapter 5 ('From Maxwell's Equations to the Wave Equation) does include a summary of Maxwell's equations. It would have been nice to have such a table at the front or back of the book for quick reference, but the summary is there, contrary to what I had originally thought. Chapter five also has a nice summary of the del operator and its use in finding the gradient, divergence, and curl. And finally, chapter five provides a very good physical description of the Divergence Theorem and Stokes' Theorem. So all in all, there is really little one can fault in this book. It's the book to get if you want to see the forest through the trees.[Side note to author (written before the above update, and answered by the author in the comments): I believe the solution to problem 2.3 for surfaces 'A' and 'B' should include a factor of 1/2 since the area is a triangle; I did not see a feedback form on the website, or I would have posted there.]
A Student's Guide to Maxwell's Equations OverviewGauss's law for electric fields, Gauss's law for magnetic fields, Faraday's law, and the Ampere-Maxwell law are four of the most influential equations in science. In this guide for students, each equation is the subject of an entire chapter, with detailed, plain-language explanations of the physical meaning of each symbol in the equation, for both the integral and differential forms. The final chapter shows how Maxwell's equations may be combined to produce the wave equation, the basis for the electromagnetic theory of light. This book is a wonderful resource for undergraduate and graduate courses in electromagnetism and electromagnetics. A website hosted by the author at www.cambridge.org/9780521701471 contains interactive solutions to every problem in the text as well as audio podcasts to walk students through each chapter.

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Basic Training in Mathematics: A Fitness Program for Science Students Review

Basic Training in Mathematics: A Fitness Program for Science Students
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Basic Training in Mathematics: A Fitness Program for Science Students ReviewThis is the best book I have found for explaining the math needed by physicists and others in the hard sciences. Shankar uses a very conceptual approach to the mathematics without dwelling on proofs - leaving the reader with an understanding of the mathematics involved. He also tackles difficult ideas like: why are complex numbers necessary and where do they come from? Most books simply assume these ideas and run off into the wild blue yonder with some proofs to give a veneer of completeness, whereas Shankar tries to give a conceptual underpinning that is invaluable when he tackles advanced topics (such as contour integration). His approach throughout is conceptual and pragmatic - giving you a solid understanding for the math you will actually use. Though it is designed for undergraduates, I would also recommend it to anyone either reviewing their math or (re)learning math they should have already known. I used this book to study for the math section of my physics PhD. qualifier and I only wish that I had stumbled across it sooner - it would have made many of my physics courses a lot easier.Basic Training in Mathematics: A Fitness Program for Science Students OverviewBased on course material used by the author at Yale University,this practical text addresses the widening gap found between themathematics required for upper-level courses in the physical sciencesand the knowledge of incoming students. This superb book offersstudents an excellent opportunity to strengthen their mathematicalskills by solving various problems in differential calculus. Bycovering material in its simplest form, students can look forward to asmooth entry into any course in the physical sciences.

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