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The Scientific Foundation of Space Weather (Hardcover, 1st ed. 2019): Daniel Baker, Andre Balogh, Tamas Gombosi, Hannu E. J.... The Scientific Foundation of Space Weather (Hardcover, 1st ed. 2019)
Daniel Baker, Andre Balogh, Tamas Gombosi, Hannu E. J. Koskinen, Astrid Veronig, …
R4,504 R3,775 Discovery Miles 37 750 Save R729 (16%) Ships in 12 - 17 working days

This book provides an in-depth review of all aspects of space weather. Written by world-leading experts, these sixteen review papers cover everything from space weather's origin on the Sun and its propagation in interplanetary space to its impact on the Earth and other solar system bodies. The history of space weather and even events with anthropogenic origin are also covered. Thus, the volume serves as both a comprehensive reference for researchers and a starting point for graduate students. Originally published in Space Science Reviews in the Topical Collection "The Scientific Foundation of Space Weather"

Particle Acceleration in Cosmic Plasmas (Paperback, 2013 ed.): Andre Balogh, Andrei Bykov, Robert P. Lin, John Raymond, Manfred... Particle Acceleration in Cosmic Plasmas (Paperback, 2013 ed.)
Andre Balogh, Andrei Bykov, Robert P. Lin, John Raymond, Manfred Scholer
R4,667 Discovery Miles 46 670 Ships in 10 - 15 working days

The review articles collected in this volume present a critical assessment of particle acceleration mechanisms and observations from suprathermal particles in the magnetosphere and heliosphere to high-energy cosmic rays, thus covering a range of energies over seventeen orders of magnitude, from 103 eV to 1020 eV. The main themes are observations of accelerated populations from the magnetosphere to extragalactic scales and assessments of the physical processes underlying particle acceleration in different environments (magnetospheres, the solar atmosphere, the heliosphere, supernova remnants, pulsar wind nebulae and relativistic outflows). Several contributions review the status of shock acceleration in different environments and also the role of turbulence in particle acceleration. Observational results are compared with modelling in different parameter regimes. The book concludes with contributions on the status of particle acceleration research and its future perspectives. This volume is aimed at graduate students and researchers active in astrophysics and space science. Previously published in Space Science Reviews journal, Vol. 173 Nos. 1-4, 2012.

Physics of Collisionless Shocks - Space Plasma Shock Waves (Paperback, 2013 ed.): Andre Balogh, Rudolf A. Treumann Physics of Collisionless Shocks - Space Plasma Shock Waves (Paperback, 2013 ed.)
Andre Balogh, Rudolf A. Treumann
R7,288 Discovery Miles 72 880 Ships in 10 - 15 working days

The present book provides a contemporary systematic treatment of shock waves in high-temperature collisionless plasmas as are encountered in near Earth space and in Astrophysics. It consists of two parts. Part I develops the complete theory of shocks in dilute hot plasmas under the assumption of absence of collisions among the charged particles when the interaction is mediated solely by the self-consistent electromagnetic fields. Such shocks are naturally magnetised implying that the magnetic field plays an important role in their evolution and dynamics. This part treats subcritical shocks which dissipate flow energy by generating anomalous resistance or viscosity. The main emphasis is, however, on super-critical shocks where the anomalous dissipation is insufficient to retard the upstream flow. These shocks, depending on the direction of the upstream magnetic field, are distinguished as quasi-perpendicular and quasi-parallel shocks which exhibit different behaviours, reflecting particles back upstream and generating high electromagnetic wave intensities. Particle acceleration and turbulence at such shocks become possible and important. Part II treats planetary bow shocks and the famous Heliospheric Termination shock as examples of two applications of the theory developed in part I.

The Solar Activity Cycle - Physical Causes and Consequences (Hardcover, 2015 ed.): Andre Balogh, Hugh Hudson, Kristof Petrovay,... The Solar Activity Cycle - Physical Causes and Consequences (Hardcover, 2015 ed.)
Andre Balogh, Hugh Hudson, Kristof Petrovay, Rudolf Steiger
R4,674 Discovery Miles 46 740 Ships in 10 - 15 working days

A collection of papers edited by four experts in the field, this book sets out to describe the way solar activity is manifested in observations of the solar interior, the photosphere, the chromosphere, the corona and the heliosphere. The 11-year solar activity cycle, more generally known as the sunspot cycle, is a fundamental property of the Sun. This phenomenon is the generation and evolution of magnetic fields in the Sun's convection zone, the photosphere. It is only by the careful enumeration and description of the phenomena and their variations that one can clarify their interdependences. The sunspot cycle has been tracked back about four centuries, and it has been recognized that to make this data set a really useful tool in understanding how the activity cycle works and how it can be predicted, a very careful and detailed effort is needed to generate sunspot numbers. This book deals with this topic, together with several others that present related phenomena that all indicate the physical processes that take place in the Sun and its exterior environment. The reviews in the book also present the latest theoretical and modelling studies that attempt to explain the activity cycle. It remains true, as has been shown in the unexpected characteristics of the first two solar cycles in the 21st century, that predictability remains a serious challenge. Nevertheless, the highly expert and detailed reviews in this book, using the very best solar observations from both ground- and space based telescopes, provide the best possible report on what is known and what is yet to be discovered. Originally published in Space Science Reviews, Vol 186, Issues 1-4, 2014.

Large-scale Magnetic Fields in the Universe (Paperback): Rainer Beck, Andre Balogh, D. V. Bykov, Rudolf A. Treumann, Lawrence... Large-scale Magnetic Fields in the Universe (Paperback)
Rainer Beck, Andre Balogh, D. V. Bykov, Rudolf A. Treumann, Lawrence Widrow
R5,705 Discovery Miles 57 050 Ships in 10 - 15 working days

A collection of sixteen coordinated reviews on the origins of large-scale magnetic fields in the Universe, this book discusses magnetic fields in all relevant astrophysical contexts, from the interstellar medium to the scales of galaxies and clusters of galaxies. Magnetic fields are described in their very diverse environments, from stellar winds to galactic haloes and astrophysical jets; together with the roles they play in forming the structures and shaping the dynamics of these objects. Both observational evidence and its theoretical interpretations are covered up to the largest scales in the Universe. The authors are all leading scientists in their fields, making this book an authoritative, up-to-date and enduring contribution to astrophysics. This volume is aimed at graduate students and researchers in astrophysics. Previously published in Space Science Reviews journal, Vol. 166/1-4 and Vol. 169/1-4, 2012.

Microphysics of Cosmic Plasmas (Hardcover, 2014 ed.): Andre Balogh, Andrei Bykov, Peter Cargill, Richard Dendy, Thierry Dudok... Microphysics of Cosmic Plasmas (Hardcover, 2014 ed.)
Andre Balogh, Andrei Bykov, Peter Cargill, Richard Dendy, Thierry Dudok de Wit, …
R4,627 Discovery Miles 46 270 Ships in 10 - 15 working days

Presents a comprehensive review of physical processes in astrophysical plasmas.
This title presents a review of the detailed aspects of the physical processes that underlie the observed properties, structures and dynamics of cosmic plasmas. An assessment of the status of understanding of microscale processes in all astrophysical collisionless plasmas is provided. The topics discussed includeturbulence in astrophysical and solar system plasmas as a phenomenological description of their dynamic properties on all scales;observational, theoretical and modelling aspects of collisionless magnetic reconnection; the formation and dynamics of shock waves; and a review and assessment of microprocesses, such as the hierarchy of plasma instabilities, non-local and non-diffusive transport processes and ionisation and radiation processes.In addition, some of the lessons that have been learned from the extensive existing knowledge of laboratory plasmas as applied to astrophysical problems are also covered.This volume is aimed at graduate students and researchers active in the areas of cosmic plasmas and space science.Originally published in Space Science Reviews journal, Vol. 278/2-4, 2013."

Particle Acceleration in Cosmic Plasmas (Hardcover, 2013 ed.): Andre Balogh, Andrei Bykov, Robert P. Lin, John Raymond, Manfred... Particle Acceleration in Cosmic Plasmas (Hardcover, 2013 ed.)
Andre Balogh, Andrei Bykov, Robert P. Lin, John Raymond, Manfred Scholer
R4,649 Discovery Miles 46 490 Ships in 10 - 15 working days

The review articles collected in this volume present a critical assessment of particle acceleration mechanisms and observations from suprathermal particles in the magnetosphere and heliosphere to high-energy cosmic rays, thus covering a range of energies over seventeen orders of magnitude, from 103 eV to 1020 eV. The main themes are observations of accelerated populations from the magnetosphere to extragalactic scales and assessments of the physical processes underlying particle acceleration in different environments (magnetospheres, the solar atmosphere, the heliosphere, supernova remnants, pulsar wind nebulae and relativistic outflows). Several contributions review the status of shock acceleration in different environments and also the role of turbulence in particle acceleration. Observational results are compared with modelling in different parameter regimes. The book concludes with contributions on the status of particle acceleration research and its future perspectives. This volume is aimed at graduate students and researchers active in astrophysics and space science. Previously published in Space Science Reviews journal, Vol. 173 Nos. 1-4, 2012.

Physics of Collisionless Shocks - Space Plasma Shock Waves (Hardcover, 2013 ed.): Andre Balogh, Rudolf A. Treumann Physics of Collisionless Shocks - Space Plasma Shock Waves (Hardcover, 2013 ed.)
Andre Balogh, Rudolf A. Treumann
R7,543 Discovery Miles 75 430 Ships in 10 - 15 working days

The present book provides a contemporary systematic treatment of shock waves in high-temperature collisionless plasmas as are encountered in near Earth space and in Astrophysics. It consists of two parts. Part I develops the complete theory of shocks in dilute hot plasmas under the assumption of absence of collisions among the charged particles when the interaction is mediated solely by the self-consistent electromagnetic fields. Such shocks are naturally magnetised implying that the magnetic field plays an important role in their evolution and dynamics. This part treats subcritical shocks which dissipate flow energy by generating anomalous resistance or viscosity. The main emphasis is, however, on super-critical shocks where the anomalous dissipation is insufficient to retard the upstream flow. These shocks, depending on the direction of the upstream magnetic field, are distinguished as quasi-perpendicular and quasi-parallel shocks which exhibit different behaviours, reflecting particles back upstream and generating high electromagnetic wave intensities. Particle acceleration and turbulence at such shocks become possible and important. Part II treats planetary bow shocks and the famous Heliospheric Termination shock as examples of two applications of the theory developed in part I.

Large-scale Magnetic Fields in the Universe (Hardcover, 2013 ed.): Rainer Beck, Andre Balogh, D. V. Bykov, Rudolf A. Treumann,... Large-scale Magnetic Fields in the Universe (Hardcover, 2013 ed.)
Rainer Beck, Andre Balogh, D. V. Bykov, Rudolf A. Treumann, Lawrence Widrow
R6,115 Discovery Miles 61 150 Ships in 10 - 15 working days

A collection of sixteen coordinated reviews on the origins of large-scale magnetic fields in the Universe, this book discusses magnetic fields in all relevant astrophysical contexts, from the interstellar medium to the scales of galaxies and clusters of galaxies. Magnetic fields are described in their very diverse environments, from stellar winds to galactic haloes and astrophysical jets; together with the roles they play in forming the structures and shaping the dynamics of these objects. Both observational evidence and its theoretical interpretations are covered up to the largest scales in the Universe. The authors are all leading scientists in their fields, making this book an authoritative, up-to-date and enduring contribution to astrophysics. This volume is aimed at graduate students and researchers in astrophysics. Previously published in Space Science Reviews journal, Vol. 166/1-4 and Vol. 169/1-4, 2012.

The Heliosphere Near Solar Minimum - The Ulysses perspective (Hardcover, 2001 ed.): Andre Balogh, Richard G. Marsden, Edward J.... The Heliosphere Near Solar Minimum - The Ulysses perspective (Hardcover, 2001 ed.)
Andre Balogh, Richard G. Marsden, Edward J. Smith
R4,582 Discovery Miles 45 820 Ships in 10 - 15 working days

The Ulysses observations have charted the heliosphere around the minimum in the 11 year cycle of solar activity, revealing the large scale properties of the heliospheric medium and its micro-scale characteristics. This book presents for the first time, a comprehensive review of the results of the Ulysses mission.The first chapter provides an overview of the region, introducing the heliosphere prior to the Ulysses mission, and the objectives and characteristics of the mission itself. Subsequent chapters discuss in detail specific areas of the heliosphere, including the solar wind, large and small scale features, cosmic rays and energetic particles, and the observations of interstellar gas and cosmic dust. Each of these chapters is written by members of the Ulysses science team, concentrating on their own areas of expertise, and is written in a clear and accessible way.In this book, the authors aim to summarise our understanding of the heliosphere near solar minimum and to provide the basis for understanding the more complex state of the heliosphere around solar maximum, which will be observed during the next phase of the Ulysses mission.

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