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As the crowd stood and applauded for the neurophysiologist Du Bois-Reymond’s lecture on August 14, 1872, they did not know that his lecture on the seven riddles of the universe would be long remembered. Scientists at the time believed that science could unlock all of the mysteries of the universe. However, the scientific revolution of the early 20th century fueled by relativity and quantum mechanics would upend the scientific world confirming Du Bois-Reymond’s insights. This book explores the brilliance of Du Bois-Reymond’s life and work and a vastly expanded scientific understanding of these riddles through the modern disciplines of physics, chemistry, and biology. Despite the progress, underlying metaphysical notions still haunt the riddles. Utilizing notions from Whitehead’s Process Philosophy, the author delves into the underlying structure of our universe and outlines the nature of the deity that emerges. Part two of this book examines the riddles consequent demands on theology and religion through the lens of the extraordinary teacher, philosopher, and theologian William DeWitt Hyde. The author clarifies notions about miracles, immortality, and wisdom. This book takes the reader on a vivid, imaginative journey towards unraveling the mysteries of our existence, roles in society, and personal loyalties.
In tracing this story of discovery, astronomer and physicist Harrison explores the concept of infinite space, the structure and age of the universe, the nature of light, and other subjects that once were so perplexing.
Holding doctorates in chemistry, physics and biology, Peter Plichta applies his multifaceted scientific knowledge to the search for a universal building plan and makes a profound discovery. Plichta shows how a mathematical formula based on prime numbers underlies the mystery of the world. By decoding this fundamental numerical code, Plichta answers questions that have baffled mankind for ages and proves that the universe did not arise out of chance.
Describes the 1999 space shuttle mission to launch the Chandra X-Ray Observatory, which uses an x-ray telescope to study black holes and supernovas, and to look for dark matter. Suggested level: primary.
This book tells the story of how, over the past century, dedicated observers and pioneering scientists achieved our current understanding of the universe. It was in antiquity that humankind first attempted to explain the universe often with the help of myths and legends. This book, however, focuses on the time when cosmology finally became a true science. As the reader will learn, this was a slow process, extending over a large part of the 20th century and involving many astronomers, cosmologists and theoretical physicists. The book explains how empirical astronomical data (e.g., Leavitt, Slipher and Hubble) were reconciled with Einstein's general relativity; a challenge which finally led Friedmann, De Sitter and Lemaître, and eventually Einstein himself, to a consistent understanding of the observational results. The reader will realize the extraordinary implications of these achievements and how deeply they changed our vision of the cosmos: From being small, static, immutable and eternal, it became vast and dynamical - originating from (almost) nothing, and yet now, nearly 14 billion years later, undergoing accelerated expansion. But, as always happens, as well as precious knowledge, new mysteries have also been created where previously absolute certainty had reigned.
Step into the mind of the greatest physicist of all time Try to think like Einstein as you come to grips with 120 enigmas, quizzes, and tests of logic based on his greatest work: the theory of relativity, E=mc2, Brownian Motion, zero-point gravity, and many other groundbreaking ideas, all woven into some of the best puzzles ever. With so many incredible discoveries to draw on, plus a selection of Einstein's most illuminating quotes and over 200 illustrations, this lavishly produced book will open the door to a range of stunning scientific concepts. As the great man once said: "You have to learn the rules of the game. And then you have to play better than anyone else"--a challenge that all puzzle enthusiasts will find irresistible.
For readers of Sean Carroll, Brian Greene, Katie Mack, and anyone who wants to know what theoretical physicists actually do. This Way to the Universe is a celebration of the astounding, ongoing scientific investigations that have revealed the nature of reality at its smallest, at its largest, and at the scale of our daily lives. The enigmas that Professor Michael Dine discusses are like landmarks on a fantastic journey to the edge of the universe. Asked where to find out about the Big Bang, Dark Matter, the Higgs boson particle—the long cutting edge of physics right now—Dine had no single book he could recommend. This is his accessible, authoritative, and up-to-date answer. Comprehensible to anyone with a high-school level education, with almost no equations, there is no better author to take you on this amazing odyssey. Dine is widely recognized as having made profound contributions to our understanding of matter, time, the Big Bang, and even what might have come before it. This Way to the Universe touches on many emotional, critical points in his extraordinary carreer while presenting mind-bending physics like his answer to the Dark Matter and Dark Energy mysteries as well as the ideas that explain why our universe consists of something rather than nothing. People assume String Theory can never be tested, but Dine intrepidly explores exactly how the theory might be tested experimentally, as well as the pitfalls of falling in love with math. This book reflects a lifetime pursuing the deepest mysteries of reality, by one of the most humble and warmly engaging voices you will ever read.