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On Gaia
A Critical Investigation of the Relationship between Life and Earth
2013
EN
A critical examination of James Lovelock's controversial Gaia hypothesisOne of the enduring questions about our planet is how it has remained continuously habitable over vast stretches of geological time despite the fact that its atmosphere and climate are potentially unstable. James Lovelock's Gaia hypothesis posits that life itself has intervened in the regulation of the planetary environment in order to keep it stable and favorable for life. First proposed in th...
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The Story of Earth
The First 4.5 Billion Years, from Stardust to Living Planet
2012
EN
Hailed by The New York Times for writing “with wonderful clarity about science . . . that effortlessly teaches as it zips along,” nationally bestselling author Robert M. Hazen offers a radical new approach to Earth history in this intertwined tale of the planet’s living and nonliving spheres.With an astrobiologist’s imagination, a historian’s perspective, and a naturalist’s eye, Hazen calls upon twenty-first-century discoveries that have revolutionized geo...
2013
EN
Accessible
What is Life? Where did it come from? Why does it end?In this beautiful and definitive new book, Professor Brian Cox takes us on an incredible journey to discover how a few fundamental laws gave birth to the most complex, diverse and unique force in the Universe – life itself.There are thought to be as many as 100 million different species on Earth – each and every one governed by the same laws. Everything in the Universe, from the smallest microbe to the largest cluster of...
Gaia:A New Look at Life on Earth
A New Look at Life on Earth
- Series -
- Oxford Landmark Science
2000
EN
In this classic work that continues to inspire its many readers, Jim Lovelock puts forward his idea that life on earth functions as a single organism. Written for non-scientists, Gaia is a journey through time and space in search of evidence with which to support a new and radically different model of our planet. In contrast to conventional belief that living matter is passive in the face of threats to its existence, the book explores the hypothesis that the earth's livingmatter air, ocean...
Under a Green Sky
Global Warming, the Mass Extinctions of the Past, and What They Can Tell Us About Our Future
2009
EN
Accessible
By looking backward at the course of great extinctions, a paleontologist sees what the future holds.More than 200 million years ago, a cataclysmic event known as the Permian extinction destroyed more than 90 percent of all species and nearly 97 percent of all living things. Its origins have long been a puzzle for paleontologists. During the 1990s and the early part of this century, a great battle was fought between those who thought that death had come from above and those who thou...
The Universe and Me
On the Origin of Everything
2009
EN
The Universe and Me is his most ambitious work to date. A tour de force, this book represents a synthesis of at least a dozen separate scientific disciplines, including cosmology, physics, chemistry, microbiology, paleobiology, paleoclimatology, paleontology, botany, optics, mammology, primatology, anthropology and the history of science. All of these skillfully and woven together into a fabric of great charm. This is, literally, the greatest story ever told. It is our story. The story of ...
The Emerald Planet
How plants changed Earth's history
- Series -
- Oxford Landmark Science
2017
EN
Plants have profoundly moulded the Earth's climate and the evolutionary trajectory of life. Far from being 'silent witnesses to the passage of time', plants are dynamic components of our world, shaping the environment throughout history as much as that environment has shaped them. In The Emerald Planet, David Beerling puts plants centre stage, revealing the crucial role they have played in driving global changes in the environment, in recording hidden facets of Earth's history, an...
2012
EN
The Precambrian is the oldest era of Earth's history, and, of its origins (4 billion and 500 million years ago), the appearance of the first invertebrates with exoskeletons (542 million years ago). In this long period of time, the planet, newly formed, was affected by cosmic events and geological shocking that border on the limits of imagination.
Oxygen
A Four Billion Year History
- Series -
- Princeton Science Library
2025
EN
Accessible
The remarkable scientific story of how Earth became an oxygenated planetThe air we breathe is twenty-one percent oxygen, an amount higher than on any other known world. While we may take our air for granted, Earth was not always an oxygenated planet. How did it come to be this way? Donald Canfield covers this vast history, emphasizing its relationship to the evolution of life and the evolving chemistry of Earth. He guides readers through the various lines of scient...
Improbable Planet
How Earth Became Humanity's Home
2016
EN
The Latest Scientific Discoveries Point to an Intentional CreatorMost of us remember the basics from science classes about how Earth came to be the only known planet that sustains complex life. But what most people don't know is that the more thoroughly researchers investigate the history of our planet, the more astonishing the story of our existence becomes. The number and complexity of the astronomical, geological, chemical, and biological features recognized as ...
Acquiring Genomes
A Theory Of The Origin Of Species
2008
EN
In this groundbreaking book, Lynn Margulis and Dorion Sagan present an answer to one of the enduring mysteries of evolution -- the source of inherited variation that gives rise to new species. Random genetic mutation, long believed to be the main source of variation, is only a marginal factor. As the authors demonstrate in this book, the more important source of speciation, by far, is the acquisition of new genomes by symbiotic merger. The result of thirty years of delving into a vast, mos...
Rare Earth
Why Complex Life is Uncommon in the Universe
2007
EN
In November 12, 2002, Dr. John Chambers of the NASA Ames Research Center gave a seminar to the Astrobiology Group at the University of Washington. The audience of about 100 listened with rapt attention as Chambers described results from a computer study of how planetary systems form. The goal of his research was to answer a deceptively simple question: How often would newly forming planetary systems produce Earth-like planets, given a star the size of our own sun? By “Earth-like” Chambers ...











