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Paperback The Physics of Baseball: Third Edition, Revised, Updated, and Expanded Book

ISBN: 0060084367

ISBN13: 9780060084363

The Physics of Baseball: Third Edition, Revised, Updated, and Expanded

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Book Overview

Blending scientific fact and sports trivia, Robert Adair examines what a baseball or player in motion does-and why. How fast can a batted ball go? What effect do stitch patterns have on wind resistance? How far does a curve ball break? Who reaches first base faster after a bunt, a right- or left-handed batter? The answers are often surprising -- and always illuminating.This newly revised third edition considers recent developments in the science of...

Customer Reviews

5 ratings

Incredible Book!

I am a HUGE baseball fan, and have been since Junior High. I grew up at the little league fields watching my older brother play. Since I've been in college, my love for baseball has only grown. I read this book after just finishing college level introductory physics. While the concepts in this book are not the most complicated, readers who have not had a similar level of instruction may find some of them hard to grasp. I think this is mainly due to the author's writing style. At any rate, even if it takes you a few times to read and understand the explanation of why a curve ball curves (which I have gone back to time and again because it so amazing!), it is well worth the time. Baseball fans will gain more respect for the game and its players. Skeptics who think the game is mind-numbingly boring might even come to like the game after reading this, if they have any respect for the role mental ability and precision plays in sports.I highly recommend this book for baseball players, fans, physics majors (it's one of the more fun and easy to comprehend real-life applications of your field of study!), and anyone who isn't afraid of a little technical language!

The only book in its class

The author does a very good job of explaining the basic physics behind national pastime for those who are willing to understand and do a bit of their homework (you just need to be able to read figures and graphs). The various aspects of the game such as the flight of baseball, breaking balls, batting the ball, and the effect of the properties of bats are discussed concisely, without being bogged down into the details of physics. Since the book is targeted for the mass audience (though not including casual baseball fans), readers who studied physics and math at high school or first-year college level should find it very manageable to read and understand. The use of equations is kept at minimum (the author does not use much of mathematical argument anyway), so mathematically challenged readers can also enjoy and extract the most important part of discussions fully. It somewhat reads like a textbook, and will turn away those who have no fond memories in school. The otherwise fine book has its own place in the library of baseball books, since it is the only book in its class for over a decade. This is a very unique baseball book.

Change-Up Your Perspective on Pitching, Hitting and Running

When I was a teenager, I did a science fair project looking at statistical analyses of baseball games to help understand how one could improve the strategy of the game from a general manager's perspective. In The 2,000 Percent Solution, I wrote about the potential levels of perfection for a baseball team. So I have long been hooked on what measurement could add to my understanding of baseball. What a pleasant surprise it was when I discovered this fine book that used measurements and analyses to go even further!Whenever I listen to former Big Leaguers talk about baseball on television, I get lost by half of what they say. While I can see fast balls falling on the way to the plate, the broadcasters are describing a "rising" fast ball. Suddenly, the ball moves strangely, and they refer knowledgeably to the pitcher throwing a "splitter." Then a knuckle ball pitcher comes in, and the catcher can't seem to ever control the ball because there is little spin. Why is that happening? What's going on here?If you have ever wondered about questions like these, The Physics of Baseball will fill you in and actually give you the ability to amaze others with your precise explanations why the unexpected is either perceived to be happening or is actually happening. When I was a teenager, baseball games usually lasted about 2 hours. Now, they are much longer. This book gives you a way to take advantage of that, by giving you more interesting things to talk about during the prolonged games. The author also takes on the many controversies of recent years, such as corked bats, scuffed balls, and extra pine tar on the bat. Although he did not have the resources or information to definitively answer some questions, his educated guesses are probably good enough for now.If you don't really want to understand physics, you can mainly focus on the graphs and illustrations that simply show the conclusions of Professor Adair's analyses. That simpler approach makes the book a much quicker and more exciting read. Physics is not my favorite subject, but I was impressed by how much this book was able to add to my understanding and potential enjoyment of watching a baseball game. I think it will probably do the same for you.Although he is a professor, the author has the humility to consider whatever the players talk about as a potentially important subject. One of the most interesting topics is an evalutation of why Babe Ruth used a bat that was both longer and heavier than any modern slugger would ever consider using. There are also references to "juiced balls" and playing baseball in Denver, and what the impact might be on home runs and a pitcher's e.r.a.Play ball!

Technology of the flight of a baseball written for laymen.

Excellent treatment of the variables that affect the flight of a thrown or batted ball. Reveals facts that explain why the ball does, or doesn't do what people think it does. For example, most players, coaches and spectators are not aware that a fastball decelerates on its' flight from the pitcher to the catcher at a rate of about one mile per hour for every seven feet of travel. Thus the ball speed, as it reaches the batter, 60 feet six inches away, is about 8-9 MPH slower than the speed when it leaves the pitcher's hand. The Professor also explains the dynamics of the curve ball; and why a ball hit at Coor's Field travels farther than those hit at most other ballparks. His theories are interesting, enlightening, and provocative. I strongly recommend the book to any baseball fan who wants to understand why a thrown or batted ball does what it does.

Why curve ball curves; effects of bat and ball properties.

A fantastic book for any baseball fan with a scientific interest. Discusses in straightforward terms (with equations relegated to back of chapters) such things as why and how much a spinning ball curves, the interaction of bat and ball, how an outfielder gauges a fly ball, effects of atmospheric conditions, etc.
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