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Showing 1 - 3 of 3 matches in All Departments
The art and science of real-world fighting. Explore the physics behind the physical! Krav Maga ("contact combat" in Hebrew) is a hard-hitting and efficient form of self-defense that was popularized by Israeli soldiers. Stressing practical, real-world fighting and a philosophy of self-defense, its popularity has grown worldwide over the past few decades. In The Physics of Krav Maga, John Eric Goff, a physicist, best-selling author, and martial arts practitioner, explains the science behind dozens of Krav Maga moves, from headlocks to hammer fists. Focusing on Warrior Krav Maga, a fighting style that combines the key elements of Krav Maga with kickboxing, wrestling, karate, and other fighting specialties, this equation-free, conceptual introduction is aimed at martial arts practitioners interested in refining their fighting technique and all fans of the fascinating moment when sports meet science. With step-by-step descriptions and detailed photos of each critical motion, Goff takes a scientific look at everything from punch speed to power output and reaction time. Armed with this book, readers will understand the physics behind each move. They will also learn how to * enhance their level of physical fitness * disrupt an opponent's balance-while keeping theirs * make use of leverage to defeat a larger, stronger attacker * become faster and more powerful * inflict pain up close * use weapons-and "weapons of opportunity" * and much more! Anyone interested in martial arts, in how physics applies to sports and combat, and in how a physicist wins a fight will love The Physics of Krav Maga.
Nothing is quite as thrilling as watching superior athletes do the seemingly impossible. From Doug Flutie's "Hail Mary" pass to Lance Armstrong's record-breaking climb of Alp d'Huez to David Beckham's astounding ability to bend a soccer kick, we marvel and wonder, "How did they do that?" Well, physics professor John Eric Goff has the answers. This tour of the wide world of sports uses some of the most exhilarating feats in recent athletic history to make basic physics concepts accessible and fun. Goff discusses the science behind American football, soccer, cycling, skating, diving, long jumping, and a host of other competitive sports. Using elite athletes such as Greg Louganis and Bob Beamon as starting points, he explains in clear, lively language the basic physical properties involved in amazing and everyday athletic endeavors. Accompanied by illustrations and mathematical equations, each chapter builds on knowledge imparted in earlier portions of the book to provide a firm understanding of the concepts involved. Fun, witty, and imbued throughout with admiration for the simple beauty of physics, "Gold Medal Physics" is sure to inspire readers to think differently about the next sporting event they watch.
Nothing is quite as thrilling as watching superior athletes do the seemingly impossible. From Doug Flutie's "Hail Mary" pass to Lance Armstrong's record-breaking climb of Alp d'Huez to David Beckham's astounding ability to bend a soccer kick, we marvel and wonder, "How did they do that?" Well, physics professor John Eric Goff has the answers. This tour of the wide world of sports uses some of the most exhilarating feats in recent athletic history to make basic physics concepts accessible and fun. Goff discusses the science behind American football, soccer, cycling, skating, diving, long jumping, and a host of other competitive sports. Using elite athletes such as Greg Louganis and Bob Beamon as starting points, he explains in clear, lively language the basic physical properties involved in amazing and everyday athletic endeavors. Accompanied by illustrations and mathematical equations, each chapter builds on knowledge imparted in earlier portions of the book to provide a firm understanding of the concepts involved. Fun, witty, and imbued throughout with admiration for the simple beauty of physics, "Gold Medal Physics" is sure to inspire readers to think differently about the next sporting event they watch.
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