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The Key to Earth History An Introduction to Stratigraphy Peter Doyle Matthew R. Bennett and Alistair N. Baxter School of Earth Sciences, University of Greenwich, UK The Key to Earth History is the first textbook on stratigraphy to introduce the student to the basic tools used by geologists to reconstruct Earth’s history, as well as showing how these can be utilised to chart the pattern of global environmental change which has taken place since the formation of the Earth some 4600 million years ago. Divided into two sections, the book discusses how stratigraphy is the key to understanding the history of the Earth, and how it can be used as a dynamic tool in unravelling ancient Earth environments. The first part examines the basic stratigraphical methods used to establish, date and interpret sequences of rocks as the products of a series of events in the Earth’s history. The second part of the book presents the results obtained by geologists, who have used these stratigraphical tools in order to build up a record of the way in which the Earth’s global environment has changed through geological time. The reader is introduced to these concepts through the use of boxes highlighting key points, together with international case histories, and this user-friendly approach will ensure that The Key to Earth History is essential first-year reading for geology, environmental science and geography undergraduates.
Faith, Reason, and Earth History presents Leonard Brand¿s argument for constructive thinking about origins and earth history in the context of Scripture, showing readers how to analyze available scientific data and approach unsolved problems. Faith does not need to fear the data, but can contribute to progress in understanding earth history within the context of God¿s Word while still being honest about unanswered questions. In this patient explanation of the mission of science, the author models his conviction that ¿above all, it is essential that we treat each other with respect, even if we disagree on fundamental issues.¿ The original edition of this work (1997) was one of the first books on this topic written from the point of view of an experienced research scientist. A career biologist, paleontologist, and teacher, Brand brings to this well-illustrated book a rich assortment of practical scientific examples. This thoughtful and rigorous presentation makes Brand¿s landmark work highly useful both as a college-level text and as an easily accessible treatment for the educated lay person.
Here is a book for everyone who has an interest in how our planet works, what has happened during its 4,550 million year history and what might happen in the future. It tells how Earth scientists study the pattern of events that have shaped the planet and guided the evolution of life on Earth. In clear and simple language it describes how the effec
14 billion years. That's how long the universe has existed. Voyage to the beginning of everything and witness the formation of the universe from practically nothing to the immense and wonderfully complex realm in which we live. Admire the simplicity of our solar system's formation and watch the Earth take shape. See life slowly, then suddenly, fill up our planet while being venturing the to brink of annihilation more than once. Examine the increasingly complex history of humans. Finally, glimpse the future of humans, Earth, and the solar system. -The Past Is the Key to the Future- is a chronological history of time, the universe, Earth, and life woven together in a beautiful tapestry of existence. Author Andy Epton brings his experience teaching astronomy and Earth science to print in his first book. The text is conversational so it feels as if he is talking to you directly and having a simple conversation about the wonders of nature. The content is complex but presented in such a manner as to be easily accessible.
“Tells the story . . . of how ‘natural philosophers’ developed the ideas of geology accepted today . . . Fascinating.” —San Francisco Book Review Earth has been witness to dinosaurs, global ice ages, continents colliding or splitting apart, and comets and asteroids crashing, as well as the birth of humans who are curious to understand it. But how was all this discovered? How was the evidence for it collected and interpreted? In this sweeping and accessible book, Martin J. S. Rudwick, the premier historian of the Earth sciences, tells the gripping human story of the gradual realization that the Earth’s history has not only been long but also astonishingly eventful. Rudwick begins in the seventeenth century with Archbishop James Ussher, who famously dated the creation of the cosmos to 4004 BC. His narrative later turns to the late eighteenth and early nineteenth centuries, when geological evidence was used—and is still being used—to reconstruct a history of the Earth that is as varied and unpredictable as human history. itself. Along the way, Rudwick rejects the popular view of this story as a conflict between science and religion and shows how the modern scientific account of the Earth’s deep history retains strong roots in Judeo-Christian ideas. Extensively illustrated, Earth’s Deep History is an engaging and impressive capstone to Rudwick’s distinguished career. “Deftly explains how ideas of natural history were embedded in cultural history.” —Nature “An engaging read for nonscientists and specialists alike.” —Library Journal “Wonderfully erudite and absorbing.” —Times Literary Supplement “Fascinating, well written, and novel . . . Essential.” —Choice “Thrilling.” —London Review of Books
The Royal Society's Science Book of the Year "[A]n exuberant romp through evolution, like a modern-day Willy Wonka of genetic space. Gee’s grand tour enthusiastically details the narrative underlying life’s erratic and often whimsical exploration of biological form and function.” —Adrian Woolfson, The Washington Post In the tradition of Richard Dawkins, Bill Bryson, and Simon Winchester—An entertaining and uniquely informed narration of Life's life story. In the beginning, Earth was an inhospitably alien place—in constant chemical flux, covered with churning seas, crafting its landscape through incessant volcanic eruptions. Amid all this tumult and disaster, life began. The earliest living things were no more than membranes stretched across microscopic gaps in rocks, where boiling hot jets of mineral-rich water gushed out from cracks in the ocean floor. Although these membranes were leaky, the environment within them became different from the raging maelstrom beyond. These havens of order slowly refined the generation of energy, using it to form membrane-bound bubbles that were mostly-faithful copies of their parents—a foamy lather of soap-bubble cells standing as tiny clenched fists, defiant against the lifeless world. Life on this planet has continued in much the same way for millennia, adapting to literally every conceivable setback that living organisms could encounter and thriving, from these humblest beginnings to the thrilling and unlikely story of ourselves. In A (Very) Short History of Life on Earth, Henry Gee zips through the last 4.6 billion years with infectious enthusiasm and intellectual rigor. Drawing on the very latest scientific understanding and writing in a clear, accessible style, he tells an enlightening tale of survival and persistence that illuminates the delicate balance within which life has always existed.
The Key to Earth History introduces students to the basic tools used by geologists to reconstruct the Earth's history, and shows how these tools can be used to chart the pattern of global environmental change since the formation of the Earth some 4600 million years ago. It tells a story of mountain building, climate change and of the evolution of life, and uses the North Atlantic region (Europe and North America) as a study area to illustrate this story. Divided into two parts, the book shows how stratigraphy is the key to understanding the history of the Earth. The first part examines the basic stratigraphical methods used to establish, date and interpret the rock record as the product of a series of events whithin Earth history. The second part presents the results obtained by geologists, who have used these stratigraphical tools to reconstruct the pattern of global environmental change through geological time and focuses on the geological evolution of the North Atlantic region. The Key to Earth History is essential reading for geologists, geographers and environmental scientists, as well as to all those interested in the story of the planet. "The authors provide no one with an alibi for bad stratigraphic teaching!" —Geoscientist "The aims of this introductory textbook are to explain the process and pattern of Earth history, to generate interest and enthusiasm, to make stratigraphy fun and exciting! These aims are admirably achieved." —The Holocene "This is a great little book! I found that, not only was everything covered, but that it was covered in a refreshing, readable, no-nonsense fashion." —Earth Science Reviews "The Key to Earth History really should be compulsory reading for all ... geology students." —Geologie
Visualizing Earth History integrates artwork and images from National Geographic and other rich visuals to provide a broad overview of earth history. Author, Loren Babock explores Earth’s history as a series of interrelated processes that continue to have significant outcomes for humans and other living things.
An illustrated survey of 100 key events in Earth's dramatic history.
The supercontinent-cycle hypothesis attributes planetary-scale episodic tectonic events to an intrinsic self-organizing mode of mantle convection, governed by the buoyancy of continental lithosphere that resists subduction during the closure of old ocean basins, and the consequent reorganization of mantle convection cells leading to the opening of new ocean basins. Characteristic timescales of the cycle are typically 500 to 700 million years. Proposed spatial patterns of cyclicity range from hemispheric (introversion) to antipodal (extroversion), to precisely between those end members (orthoversion). Advances in our understanding can arise from theoretical or numerical modelling, primary data acquisition relevant to continental reconstructions, and spatiotemporal correlations between plate kinematics, geodynamic events and palaeoenvironmental history. The palaeogeographic record of supercontinental tectonics on Earth is still under development. The contributions in this Special Publication provide snapshots in time of these investigations and indicate that Earth’s palaeogeographic record incorporates elements of all three end-member spatial patterns.