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Hannah Holmes A mesmerizing expedition around our dusty world Some see dust as dull and useless stuff. But in the hands of author Hannah Holmes, it becomes a dazzling and mysterious force; Dust, we discover, built the planet we walk upon. And it tinkers with the weather and spices the air we breathe. Billions of tons of it rise annually into the air--the dust of deserts and forgotten kings mixing with volcanic ash, sea salt, leaf fragments, scales from butterfly wings, shreds of T-shirts, and fireplace soot. Eventually, though, all this dust must settle. The story of restless dust begins among exploding stars, then treks through the dinosaur beds of the Gobi Desert, drills into Antarctic gla...
Exploring the links between politics, climate, energy, ecology and economics, the author shows the causes and consequences of our actions and values, and informs readers what they can do to ensure their well being and the future survival of human civilization. Figures, charts and tables and literary highlights help convey the message.
Astronaut Dr. Buzz Aldrin commended the author citing his proposal to transform the Space Shuttle fleet, before retiring it, into a space tourism fleet, which would generate profits for NASA. Dr. Donald Brownlee Director of NASA’s “STARDUST” Mission that flew to comet “Wild 2” said this about the author: “One of Dr. Misconi most significant publications was his 1979 Nature paper on streaming of interstellar grains into the solar system. The paper predicted that interstellar dust should stream into the solar system from the direction, the then detectable interstellar gas and it also described the interaction of the extrasolar particles with the solar wind and the IP (Interplanetar...
Biographic Memoirs: Volume 74 contains the biographies of deceased members of the National Academy of Sciences and bibliographies of their published works. Each biographical essay was written by a member of the Academy familiar with the professional career of the deceased. For historical and bibliographical purposes, these volumes are worth returning to time and again.
This excellent overview will appeal to all researchers who have an interest in Leonid showers. It contains over forty research papers that present some of the first observational results of the November 1999 Leonid meteor storm, the first storm observed by modern observing techniques.
Considering the development of life on Earth, the existence of life in extreme environments and the potential for life elsewhere in the Universe, this book gives a fascinating insight into our place in the Universe. Chris Impey leads the reader through the history, from the Copernican revolution to the emergence of the field of astrobiology – the study of life in the cosmos. He examines how life on Earth began, exploring its incredible variety and the extreme environments in which it can survive. Finally, Impey turns his attention to our Solar System and the planets beyond, discussing whether there may be life elsewhere in the Universe. Written in non-technical language, this book is ideal for anyone wanting to know more about astrobiology and how it is changing our views of life and the Universe. An accompanying website available at www.cambridge.org/9780521173841 features podcasts, articles and news stories on astrobiology.
Every year Earth is bombarded with about 40,000 tons of extraterrestrial material. This includes microscopic cosmic dust particles shed by comets and asteroids in outer space, meteorites, as well as large comets and asteroids that have led to catastrophic events in the geologic past. Originally considered only a curiosity, extraterrestrial matter found on Earth provides the only samples we have from comets, asteroids and other planets. Only recently mankind has started to actively collect extraterrestrial matter in space (Apollo program, Stardust mission) rather than to wait for its delivery to Earth. Still, most of our knowledge of the origin and evolution of our solar system is based on ca...
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, ...
Foundations of science are specific conditions of the cosmos, of human intelligence, of cultural beliefs, and of technological structures that make the pursuit of modern science possible. Each of the four foundations of scientific endeavour can be studied as a topic on its own. 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. This book explores four foundations of scientific endeavour and investigates some of the paradoxes each of them raises. 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.