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Physics professor and popular science writer, Wiggins, provides the general reader with a fun-filled, entertaining, and truly educational tour. This new paperback edition includes new material and a study guide useful for teachers and self-learners.
How did a simple glover's son with a Stratford grammar school education become the world's greatest playwright? It wasn't easy. This book intersperses family and financial challenges with sparse documented facts to provide a plausible, entertaining story of Shakespeare's life. Easy to read, accessible, and lively, this book provides a wide range of readers a unique opportunity to enjoy his works by visiting the root of his genius. Play-goers, students, book club members or anyone with curiosity about Shakespeare may enjoy this behind-the-scenes view, based on 25 years of study and travel by experienced educators and writers.
Presents five basic scientific hypotheses: the atomic model, the periodic law, the big bang theory, plate techtonics, and evolution.
Anne Hathaway Shakespeare's husband William became the world's greatest playwright. But what about her life in Stratford as Will worked in London? This lively, accessible novella builds Anne's story from sparse records and legends. The authors researched events and profiled characters, then turned them loose, producing plausible, interesting, and sometimes surprisingly unique results.
"Quantum Leaps in the Wrong Direction" carefully deconstructs five examples of pseudoscience--UFOs, out-of-body experiences, astrology, creationism, and ESP-- and gives easy recipes to test other dubious notions so that the reader can ascertain what lies in the realm of real science and what more properly deserves the tag of pseudoscience.
An in-depth look at the most intriguing puzzles in science today In this illuminating book, professors Arthur Wiggins and Charles Wynn explore what they believe are the five biggest science problems: Physics: Why do some particles have mass, while others have none? Chemistry: By what series of chemical reactions did atoms form the first living things? Biology: What is the complete structure and function of the proteome? Geology: Is accurate, long-range weather forecasting possible? Astronomy: Why is the universe expanding faster and faster? Wiggins and Wynn carefully explain each of these problems, then discuss the theories that address them. Some of the many topics covered include string theory, the human genome, chaos theory, and protein folding. Featuring humorous illustrations from renowned science cartoonist Sidney Harris, this book invites you to explore the events that led to these problems and the cutting-edge efforts being made to solve them. The authors also provide Idea Folders, which contain additional details about the unsolved problems, and Resources for Digging Deeper, such as books, periodicals, and Web sites.
In a thought-provoking and entertaining exploration of The Five Biggest Ideas in Science, authors Charles Wynn and Arthur Wiggins provide a panoramic view of the questions scientists seek to answer about the natural world: * Do basic building blocks of matter exist, and if so, what do they look like? * BIG IDEA #1: Physics' Model of the Atom * What relationships, if any, exist among different kinds of atoms? * BIG IDEA #2: Chemistry's Periodic Law * Where did the atoms of the universe come from,and what is their destiny? * BIG IDEA #3: Astronomy's Big Bang Theory * How is the matter of the universe arranged in planet Earth? * BIG IDEA #4: Geology's Plate Tectonics Model * How did life on planet Earth originate and develop? * BIG IDEA #5: Biology's Theory of Evolution Get set for a lively and informative discussion, as you also learn how to evaluate potential applications of these and other scientific ideas.
An in-depth look at the theories behind the most intriguing puzzles in physics, chemistry, biology, earth science, and astronomy In The Five Biggest Ideas in Science, authors Arthur W. Wiggins and Charles M. Wynn discussed science's most important current ideas. Now, they tackle the questions that science has been unable to answer-so far. Choosing one unsolved problem from each discipline, they explore the current scientific thinking behind these questions: How are particle masses determined? How did simple atoms first combine to form complex molecules? What role does the genome play in the development of life? Why is it so difficult to predict the weather? And what is the future of the univ...
What is it about mythology, mysticism and pseudoscience that has such a vast appeal to us? From dark roomed seances, to Tarot cards and Ouija boards, to Astrology and Rune stones, American Culture seems fascinated by the paranormal. Has our society lost faith in the age old institutions of religion? Or are we attempting to escape what many feel is a mundane reality? In this latest book, we will explore this search for wonder, and examine its negative effects on true science and critical thought.
A co-publication of the AMS, IAS/Park City Mathematics Institute, and Society for Industrial and Applied Mathematics Articles in this volume are based on lectures presented at the Park City summer school on “Mathematics and Materials” in July 2014. The central theme is a description of material behavior that is rooted in statistical mechanics. While many presentations of mathematical problems in materials science begin with continuum mechanics, this volume takes an alternate approach. All the lectures present unique pedagogical introductions to the rich variety of material behavior that emerges from the interplay of geometry and statistical mechanics. The topics include the order-disorde...