This Very Short Introduction looks deep into space and describes the worlds that make up our Solar System: terrestrial planets, giant planets, dwarf planets and various other objects such as satellites (moons), asteroids and Trans-Neptunian objects. It considers how our knowledge has advanced over the centuries, and how it has expanded at a growing rate in recent years. David A. Rothery gives an overview of the origin, nature, and evolution of our Solar System, including the controversial issues of what qualifies as a planet, and what conditions are required for a planetary body to be habitable by life. He looks at rocky planets and the Moon, giant planets and their satellites, and how the surfaces have been sculpted by geology, weather, and impacts. ABOUT THE SERIES: The Very Short Introductions series from Oxford University Press contains hundreds of titles in almost every subject area. These pocket-sized books are the perfect way to get ahead in a new subject quickly. Our expert authors combine facts, analysis, perspective, new ideas, and enthusiasm to make interesting and challenging topics highly readable.
Extensively revised and updated, this new edition of David A. Rothery's acclaimed geological guide to the outer solar system includes results and close-up color and black and white images from both the 1995-1999 Galileo mission to Jupiter and the Voyager space probe. Rothery, a noted planetary scientist, explains the geological aspects of the major satellites of the outer planets, from Jupiter to Neptune and the Pluto-Charon system. In particular he shows how tectonic and volcanic processes, driven by heat from within, have shaped the rigid outer layers of these worlds. Rothery also discusses the similarities and differences among them and the ways in which they resemble Earth-like planets. This fascinating book is written in an introductory style ideal for first- or second-year college courses. Amateur geologists and astronomers will also find its insights rewarding.
This Very Short Introduction discusses the nature of planets and gas giants, and their rings and moons. It also looks beyond Pluto, in the Kuiper Belt, at the knowledge we have about planets around other stars. With many striking photos to illustrate the details, it demonstrates the unique world of every planet.
Proving to be both varied and fascinating, moons are far more common than planets in our Solar System. Our own Moon has had a profound influence on Earth, not only through tidal effects, but even on the behaviour of some marine animals. Many remarkable things have been discovered about the moons of the giant outer planets from Voyager, Galileo, Cassini, and other spacecraft. Scientists have glimpsed volcanic activity on Io, found oceans of water on Titan, and captured photos of icy geysers bursting from Enceladus. It looks likely that microbial life beyond the Earth may be discovered on a moon rather than a planet. In this Very Short Introduction David Rothery introduces the reader to the moons of our Solar System, beginning with the early discoveries of Galileo and others, describing their variety of mostly mythological names, and the early use of Jupiter's moons to establish position at sea and to estimate the speed of light. Rothery discusses the structure, formation, and influence of our Moon, and those of the other planets, and ends with the recent discovery of moons orbiting asteroids, whilst looking forward to the possibility of finding moons of exoplanets in planetary systems far beyond our own. ABOUT THE SERIES: The Very Short Introductions series from Oxford University Press contains hundreds of titles in almost every subject area. These pocket-sized books are the perfect way to get ahead in a new subject quickly. Our expert authors combine facts, analysis, perspective, new ideas, and enthusiasm to make interesting and challenging topics highly readable.
Extensively revised and updated, this new edition of David A. Rothery's acclaimed geological guide to the outer solar system includes results and close-up color and black and white images from both the 1995-1999 Galileo mission to Jupiter and the Voyager space probe. Rothery, a noted planetary scientist, explains the geological aspects of the major satellites of the outer planets, from Jupiter to Neptune and the Pluto-Charon system. In particular he shows how tectonic and volcanic processes, driven by heat from within, have shaped the rigid outer layers of these worlds. Rothery also discusses the similarities and differences among them and the ways in which they resemble Earth-like planets. This fascinating book is written in an introductory style ideal for first- or second-year college courses. Amateur geologists and astronomers will also find its insights rewarding.
A new and detailed picture of Mercury is emerging thanks to NASA’s MESSENGER mission that spent four years in orbit about the Sun’s innermost planet. Comprehensively illustrated by close-up images and other data, the author describes Mercury’s landscapes from a geological perspective: from sublimation hollows, to volcanic vents, to lava plains, to giant thrust faults. He considers what its giant core, internal structure and weird composition have to tell us about the formation and evolution of a planet so close to the Sun. This is of special significance in view of the discovery of so many exoplanets in similarly close orbits about their stars. Mercury generates its own magnetic field, like the Earth (but unlike Venus, Mars and the Moon), and the interplay between Mercury’s and the Sun’s magnetic field affects many processes on its surface and in the rich and diverse exosphere of neutral and charged particles surrounding the planet. There is much about Mercury that we still don’t understand. Accessible to the amateur, but also a handy state-of-the-art digest for students and researchers, the book shows how our knowledge of Mercury developed over the past century of ground-based, fly-by and orbital observations, and looks ahead at the mysteries remaining for future missions to explore.
How do volcanoes erupt, what makes earthquakes so destructive, and why do tsunamis happen? Volcanoes, Earthquakes and Tsunamis answers these questions and more, giving you everything you need to know about these powerful natural phenomena. It covers the plate tectonic background to Earth processes, where magma is made and how it erupts, volcano types, eruption hazards and how they are monitored, faults and earthquakes, the causes of tsunamis and tsunami preparedness. You will examine many examples of these frightening events, find out to what extent they can be predicted and mitigated against, and come to realize how they are related and the impact they have on human society and the natural world. Written by Dr David Rothery, a volcanologist, geologist, planetary scientist and Professor of Planetary Geosciences at the Open University, Volcanoes, Earthquakes and Tsunamis: A Complete Introduction is designed to give you everything you need to know, all in one place. It covers the key areas that students are expected to be confident in, outlining the basics in clear English and providing added-value features like a glossary of essential terms and even examples of questions you might be asked in your seminar or exam. The book covers the essentials of most university courses, with an introduction on how the Earth moves, followed by separate sections on volcanoes (including eruptions, types of volcano, volcanic hazards, volcanoes and climate, monitoring volcanoes, predicting eruptions and living with volcanoes), earthquakes (including faults, measurement, seismic monitoring, prediction, prevention and preparedness) and tsunamis. The colour plates referred to in the book can be downloaded from the Teach Yourself online library or accessed through the Teach Yourself Library app.
Though the U.S. Constitution was ratified in 1788, its impact on our lives is as recent as today's news. Claims and counterclaims about the constitutionality of governmental actions are a habit of American politics. This document, which its framers designed to limit power, often has made political conflict inevitable. It also has accommodated and legitimized the political and social changes of a vibrant, powerful democratic nation. A product of history's first modern revolution, the Constitution embraced a new formula for government: it restrained power on behalf of liberty, but it also granted power to promote and protect liberty. The U.S. Constitution: A Very Short Introduction explores the major themes that have shaped American constitutional history: federalism, the balance of powers, property, representation, equality, rights, and security. Informed by the latest scholarship, this book places constitutional history within the context of American political and social history. As our nation's circumstances have changed, so has our Constitution. Today we face serious challenges to the nation's constitutional legacy. Endless wars, a sharply divided electorate, economic inequality, and immigration, along with a host of other issues, have placed demands on government and on society that test our constitutional values. Understanding how the Constitution has evolved will help us adapt its principles to the challenges of our age. ABOUT THE SERIES: The Very Short Introductions series from Oxford University Press contains hundreds of titles in almost every subject area. These pocket-sized books are the perfect way to get ahead in a new subject quickly. Our expert authors combine facts, analysis, perspective, new ideas, and enthusiasm to make interesting and challenging topics highly readable.
Astrobiology is the study of the origin and development of life on this and other planets. What fascinates people about astrobiology is that it seeks answers to long-standing unsolved questions: How quickly did life evolve on Earth and why did life persist here? Is there life elsewhere in the Solar System or beyond? The research of astrobiology has become more crucial than ever in recent decades, as biologists have discovered microbes that live in ever more extreme settings, such as bubbling hot springs, in acid, or deep within rocks. Rooted in strong and rigorous research, astrobiology incorporates the work of microbiologists, geologists, and astronomers. In this Very Short Introduction, David C. Catling introduces the origins of astrobiology and demonstrates its impact on current astronomical research and potential future discoveries. ABOUT THE SERIES: The Very Short Introductions series from Oxford University Press contains hundreds of titles in almost every subject area. These pocket-sized books are the perfect way to get ahead in a new subject quickly. Our expert authors combine facts, analysis, perspective, new ideas, and enthusiasm to make interesting and challenging topics highly readable.
Welfare states vary across nations and change over time. And the balance between markets and government; free enterprise and social protection is perennially in question. But all developed societies have welfare states of one kind or another - they are a fundamental dimension of modern government. And even after decades of free-market criticism and reform, their core institutions have proven resilient and popular. This Very Short Introduction describes the modern welfare state, explaining its historical and contemporary significance and arguing that far from being 'a failure' or 'a problem', welfare states are an essential element of contemporary capitalism, and a vital concomitant of democratic government. In this accessible and entertaining account, David Garland cuts through the fog of misunderstandings to explain in clear and simple terms, what welfare states are, how they work, and why they matter. ABOUT THE SERIES: The Very Short Introductions series from Oxford University Press contains hundreds of titles in almost every subject area. These pocket-sized books are the perfect way to get ahead in a new subject quickly. Our expert authors combine facts, analysis, perspective, new ideas, and enthusiasm to make interesting and challenging topics highly readable.
The history of decadent culture runs from ancient Rome to nineteenth-century Paris, Victorian London, fin de siècle Vienna, Weimar Berlin, and beyond. The decline of Rome provides the pattern for both aesthetic and social decadence, a pattern that artists and writers in the nineteenth century imitated, emulated, parodied, and otherwise manipulated for aesthetic gain. What begins as the moral condemnation of modernity in mid-nineteenth century France on the part of decadent authors such as Charles Baudelaire ends up as the perverse celebration of the pessimism that accompanies imperial decline. This delight in decline informs the rich canon of decadence that runs from Joris-Karl Huysmans's À Rebours to Oscar Wilde's The Picture of Dorian Gray, Aubrey Beardsley's drawings, Gustav Klimt's paintings, and numerous other works. In this Very Short Introduction, David Weir explores the conflicting attitudes towards modernity present in decadent culture by examining the difference between aesthetic decadence--the excess of artifice--and social decadence, which involves excess in a variety of forms, whether perversely pleasurable or gratuitously cruel. Such contrariness between aesthetic and social decadence led some of its practitioners to substitute art for life and to stress the importance of taste over morality, a maneuver with far-reaching consequences, especially as decadence enters the realm of popular culture today. ABOUT THE SERIES: The Very Short Introductions series from Oxford University Press contains hundreds of titles in almost every subject area. These pocket-sized books are the perfect way to get ahead in a new subject quickly. Our expert authors combine facts, analysis, perspective, new ideas, and enthusiasm to make interesting and challenging topics highly readable.
One of nature's most awesome phenomena, volcanoes are endlessly fascinating. Now you don't have to be a scientist to understand the different types of volcanoes. Teach Yourself Volcanoes explains why eruptions occur, how volcanoes are monitored, how eruptions are predicted, and more. Includes suggested destinations for viewing real-life volcanic activity.
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