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What determines whether complex life will arise on a planet, or even any life at all? Questions such as these are investigated in this groundbreaking book. In doing so, the authors synthesize information from astronomy, biology, and paleontology, and apply it to what we know about the rise of life on Earth and to what could possibly happen elsewhere in the universe. Everyone who has been thrilled by the recent discoveries of extrasolar planets and the indications of life on Mars and the Jovian moon Europa will be fascinated by Rare Earth, and its implications for those who look to the heavens for companionship.
"This is the first real biography of the Earth - not only a brilliant portrait of the emergence and evolution of life on this planet, but a vivid and frightening look at Earth's remote future. Peter Ward and Donald Brownlee combine storytelling power with extreme scientific care, and their narrative is as transfixing as any of H.G. Wells's fantasies, but more enthralling, for Ward and Brownlee have real power to prognosticate. This is a book that makes one shiver, but also inspires one to wonder how humanity (if we survive in the short term) will fare in the distant future." Oliver Sachs Peter Ward and Don Brownlee, a geologist and an astronomer respectively, are in the vanguard of the new field of astrobiology. Combining their knowledge of the evolution of life on our planet with their understanding of the life cycles of stars and solar systems, the authors tell the awe-inspiring story of the second half of Earth's life. The process of planetary evolution will essentially reverse itself; life as we know it will subside until only the simplest forms remain. The oceans will evaporate, and as the sun slowly expands, Earth itself will eventually meet a fiery end.
"Carbon is arguably humankind's most important chemical element - indeed, possibly the most important element in the universe. Created in the fiery furnaces of stars, carbon is the chemical backbone of the planets and life as we know it. It is essential to every part of our lives: the bones and tissue which give us all shape, the food we eat, the tools we use, the climate which supports life on this planet. Despite these facts, carbon's importance is often overlooked. In this short, popular-level book, astronomers Theodore Snow and Donald Brownlee consider carbon from a cosmic perspective, explaining the inherent chemical and physical nature of the element as well as the ways in which it is ...
What determines whether complex life will arise on a planet, or even any life at all? Questions such as these are investigated in this groundbreaking book. In doing so, the authors synthesize information from astronomy, biology, and paleontology, and apply it to what we know about the rise of life on Earth and to what could possibly happen elsewhere in the universe. Everyone who has been thrilled by the recent discoveries of extrasolar planets and the indications of life on Mars and the Jovian moon Europa will be fascinated by Rare Earth, and its implications for those who look to the heavens for companionship.
In his quest to define ‘sporting greatness’, double Olympic champion Alistair Brownlee has spent nearly 4 years interviewing and training with some of the greatest minds in sport to discover what it takes to become – and remain – a champion.
This book explores four foundations of scientific endeavour - the cosmos, human intelligence, cultural beliefs, and technological structures - and investigates some of the paradoxes each of them raises. The concurrent study of all four together reveals several tensions and interconnections among them that point the way to a greater unification of faith and science. Kaiser shows that the resolution of these paradoxes inevitably leads us into theological discourse and raises new challenges for theological endeavour. In order to address these challenges, Kaiser draws on the wider resources of the Judeo-Christian tradition and argues for a refocusing of contemporary theology from the perspective of natural science.
There may be just two great questions in life - why am I here, and why is there suffering? In seeking answers to those questions, believers and skeptics alike have reduced God and the character and our understanding of God into neat, pointless little boxes into which neither God nor the universe fit. In seeking resolution, can it be found in science, nature, and the universe itself? Does the universe hold clues to the nature of God, and can it point in the direction of solving both the question of life's meaning and purpose, and the existence of evil and suffering? This is a beautifully and powerfully written book of science and faith, seamlessly woven together not so much to provide answers as to break believers and skeptics out of their metaphysical, theological, and scientific ruts.
A gripping tale of exploration aboard H.M.S. Challenger, an expedition that laid the foundations for modern oceanography From late 1872 to 1876, H.M.S. Challenger explored the world's oceans. Conducting deep sea soundings, dredging the ocean floor, recording temperatures, observing weather, and collecting biological samples, the expedition laid the foundations for modern oceanography. Following the ship's naturalists and their discoveries, earth scientist Doug Macdougall engagingly tells a story of Victorian-era adventure and ties these early explorations to the growth of modern scientific fields. In this lively story of discovery, hardship, and humor, Macdougall examines the work of the expedition's scientists, especially the naturalist Henry Moseley, who rigorously categorized the flora and fauna of the islands the ship visited, and the legacy of John Murray, considered the father of modern oceanography. Macdougall explores not just the expedition itself but also the iconic place that H.M.S. Challenger has achieved in the annals of ocean exploration and science.
There are eight columns in the Periodic Table. The eighth column is comprised of the rare gases, so-called because they are the rarest elements on earth. They are also called the inert or noble gases because, like nobility, they do no work. They are colorless, odorless, invisible gases which do not react with anything, and were thought to be unimportant until the early 1960s. Starting in that era, David Fisher has spent roughly fifty years doing research on these gases, publishing nearly a hundred papers in the scientific journals, applying them to problems in geophysics and cosmochemistry, and learning how other scientists have utilized them to change our ideas about the universe, the sun, ...
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