Plasma Environments of Non-magnetic Planets

Plasma Environments of Non-magnetic Planets

Author: Tamás I. Gombosi

Publisher: Pergamon

Published: 1993

Total Pages: 352

ISBN-13:

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Hardbound. The symposium consisted of 75 invited and contributed presentations about controversial and poorly understood phenomena related to the plasma environments of comets, weakly magnetized and non-magnetized solar system bodies with significant atmospheres. Understanding of the major physical and chemical processes controlling cometary plasma environments has greatly improved following the historic spacecraft encounters with comets Halley and Giacobini-Zinner. Pioneer Venus has provided detailed information about the plasma environment of Venus over a full solar cycle. The Phobos mission has also significantly enhanced our understanding of the Martian magnetosphere and its solar wind interaction. There is renewed interest in the solar wind interaction with our Moon and efforts are continuing toward further exploration of the plasma environments of Io, Titan and Triton. Although these bodies have vastly different plasma environments, there are severa


Plasma Physics of the Local Cosmos

Plasma Physics of the Local Cosmos

Author: National Research Council

Publisher: National Academies Press

Published: 2004-06-06

Total Pages: 100

ISBN-13: 9780309092159

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Solar and space physics is the study of solar system phenomena that occur in the plasma state. Examples include sunspots, the solar wind, planetary magnetospheres, radiation belts, and the aurora. While each is a distinct phenomenon, there are commonalities among them. To help define and systematize these universal aspects of the field of space physics, the National Research Council was asked by NASA's Office of Space Science to provide a scientific assessment and strategy for the study of magnetized plasmas in the solar system. This report presents that assessment. It covers a number of important research goals for solar and space physics. The report is complementary to the NRC report, The Sun to the Earthâ€"and Beyond: A Decadal Research Strategy for Solar and Space Physics, which presents priorities and strategies for future program activities.


The Plasma Environment of Venus, Mars and Titan

The Plasma Environment of Venus, Mars and Titan

Author: Karoly Szego

Publisher: Springer

Published: 2012-02-09

Total Pages: 334

ISBN-13: 9781461432890

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This volume summarizes the recent results of the exploration of Venus, Mars and Titan in the field of space plasma physics. These are the only non-magnetic solar system bodies having dense atmospheres. A number of space missions investigated these objects; the past and the current missions are put in context with modern theoretical descriptions. The strength of the book is the comparison of the similarities and differences in the plasma interaction of Venus, Mars and Titan; such comparisons have not yet been published. This volume is aimed at graduate students and researchers working in planetary science and space physics. Previously published in Space Science Reviews journal, Vol. 162/1-4, 2011.


The Mars Plasma Environment

The Mars Plasma Environment

Author: C.T. Russell

Publisher: Springer Science & Business Media

Published: 2010-05-30

Total Pages: 503

ISBN-13: 0387709436

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This book contains the latest results on the plasma environment of Mars and its interaction with the solar wind. These results include mapping of the plasma environment with the instruments on Mars Express and Mars Global Surveyor, the latest numerical simulations, and theoretical studies. This comprehensive examination of the Mars environment also sets the stage for the interpretation of the Venus Express measurements.


Planetary Magnetism

Planetary Magnetism

Author: U.R. Christensen

Publisher: Springer

Published: 2012-10-13

Total Pages: 668

ISBN-13: 9781461426332

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The articles in this volume cover, for the first time, all aspects of planetary magnetism, from the observations made by space missions to their interpretation in terms of the properties of all the planets in the solar system. Studies of dynamo-generated magnetic fields in Mercury, the Earth, the giant planets, as well as in Ganymede, one of Jupiter’s moons, are presented. Crustal magnetic field in Mars, the Mon and the Earth are described as well as magnetic fields induced in the solar system bodies. There are several articles dealing with dynamo theory and modelling and applications to the different planets.


Advances In Geosciences (A 4-volume Set) - Volume 7: Planetary Science (Ps)

Advances In Geosciences (A 4-volume Set) - Volume 7: Planetary Science (Ps)

Author: Anil Bhardwaj

Publisher: World Scientific

Published: 2007-06-15

Total Pages: 234

ISBN-13: 9814475092

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Advances in Geosciences is the result of a concerted effort in bringing the latest results and planning activities related to earth and space science in Asia and the international arena. The volume editors are all leading scientists in their research fields covering six sections: Hydrological Science (HS), Planetary Science (PS), Solar Terrestrial (ST), Solid Earth (SE), Ocean Science (OS) and Atmospheric Science (AS). The main purpose is to highlight the scientific issues essential to the study of earthquakes, tsunamis, atmospheric dust storms, climate change, drought, flood, typhoons, monsoons, space weather, and planetary exploration.


Solar and Space Physics

Solar and Space Physics

Author: National Research Council

Publisher: National Academies Press

Published: 2014-09-25

Total Pages: 37

ISBN-13: 0309313953

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In 2010, NASA and the National Science Foundation asked the National Research Council to assemble a committee of experts to develop an integrated national strategy that would guide agency investments in solar and space physics for the years 2013-2022. That strategy, the result of nearly 2 years of effort by the survey committee, which worked with more than 100 scientists and engineers on eight supporting study panels, is presented in the 2013 publication, Solar and Space Physics: A Science for a Technological Society. This booklet, designed to be accessible to a broader audience of policymakers and the interested public, summarizes the content of that report.


Dawn-Dusk Asymmetries in Planetary Plasma Environments

Dawn-Dusk Asymmetries in Planetary Plasma Environments

Author: Stein Haaland

Publisher: John Wiley & Sons

Published: 2017-10-30

Total Pages: 378

ISBN-13: 111921632X

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Dawn­Dusk Asymmetries in Planetary Plasma Environments Dawn-dusk asymmetries are ubiquitous features of the plasma environment of many of the planets in our solar system. They occur when a particular process or feature is more pronounced at one side of a planet than the other. For example, recent observations indicate that Earth's magnetopause is thicker at dawn than at dusk. Likewise, auroral breakups at Earth are more likely to occur in the pre-midnight than post-midnight sectors. Increasing availability of remotely sensed and in situ measurements of planetary ionospheres, magnetospheres and their interfaces to the solar wind have revealed significant and persistent dawn-dusk asymmetries. As yet there is no consensus regarding the source of many of these asymmetries, nor the physical mechanisms by which they are produced and maintained. Volume highlights include: A comprehensive and updated overview of current knowledge about dawn-dusk asymmetries in the plasma environments of planets in our solar system and the mechanisms behind them Valuable contributions from internationally recognized experts, covering both observations, simulations and theories discussing all important aspects of dawn-dusk asymmetries Space weather effects are caused by processes in space, mainly the magnetotail, and can be highly localized on ground. Knowing where the source, i.e., where dawn-dusk location is will allow for a better prediction of where the effects on ground will be most pronounced Covering both observational and theoretical aspects of dawn dusk asymmetries, Dawn­-Dusk Asymmetries in Planetary Plasma Environments will be a valuable resource for academic researchers in space physics, planetary science, astrophysics, physics, geophysics and earth science.


The Atmosphere and Climate of Mars

The Atmosphere and Climate of Mars

Author: Robert M. Haberle

Publisher: Cambridge University Press

Published: 2017-06-29

Total Pages: 613

ISBN-13: 110817938X

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Humanity has long been fascinated by the planet Mars. Was its climate ever conducive to life? What is the atmosphere like today and why did it change so dramatically over time? Eleven spacecraft have successfully flown to Mars since the Viking mission of the 1970s and early 1980s. These orbiters, landers and rovers have generated vast amounts of data that now span a Martian decade (roughly eighteen years). This new volume brings together the many new ideas about the atmosphere and climate system that have emerged, including the complex interplay of the volatile and dust cycles, the atmosphere-surface interactions that connect them over time, and the diversity of the planet's environment and its complex history. Including tutorials and explanations of complicated ideas, students, researchers and non-specialists alike are able to use this resource to gain a thorough and up-to-date understanding of this most Earth-like of planetary neighbours.


Advances in Geosciences

Advances in Geosciences

Author: Anil Bhardwaj

Publisher: World Scientific

Published: 2006

Total Pages: 234

ISBN-13: 981270986X

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Advances in Geosciences is the result of a concerted effort in bringing the latest results and planning activities related to earth and space science in Asia and the international arena. The volume editors are all leading scientists in their research fields covering six sections: Hydrological Science (HS), Planetary Science (PS), Solar Terrestrial (ST), Solid Earth (SE), Ocean Science (OS) and Atmospheric Science (AS). The main purpose is to highlight the scientific issues essential to the study of earthquakes, tsunamis, atmospheric dust storms, climate change, drought, flood, typhoons, monsoons, space weather, and planetary exploration.