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Volcano-ice Interaction on Earth and Mars

Volcano-ice Interaction on Earth and Mars
Author: J. L. Smellie
Publisher: Geological Society of London
Total Pages: 448
Release: 2002
Genre: Nature
ISBN: 9781862391215

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This volume focuses on magmas and cryospheres on Earth and Mars and is the first publication of its kind to combine a thematic set of contributions addressing the diverse range of volcano-ice interactions known or thought to occur on both planets. Understanding those interactions is a comparatively young scientific endeavour, yet it is vitally important for a fuller comprehension of how planets work as integrated systems. It is also topical since future volcanic eruptions on Earth may contribute to melting ice sheets and thus to global sea level rise.


Glaciovolcanism on Earth and Mars

Glaciovolcanism on Earth and Mars
Author: John L. Smellie
Publisher: Cambridge University Press
Total Pages: 497
Release: 2016-06-23
Genre: Nature
ISBN: 1107037395

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Presents the distinctive processes and characteristics of glaciovolcanic eruptions, with reference to terrestrial and Mars occurrences.


Fire and Ice

Fire and Ice
Author: Natalie Starkey
Publisher: Bloomsbury Publishing
Total Pages: 329
Release: 2021-09-30
Genre: Nature
ISBN: 1472960386

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A fascinating look at extraterrestrial volcanoes in our Solar System. The volcano – among the most familiar and perhaps the most terrifying of all geological phenomena. However, Earth isn't the only planet to harbour volcanoes. In fact, the Solar System, and probably the entire Universe, is littered with them. Our own Moon, which is now a dormant piece of rock, had lava flowing across its surface billions of years ago, while Mars can be credited with the largest volcano in the Solar System, Olympus Mons, which stands 25km high. While Mars's volcanoes are long dead, volcanic activity continues in almost every other corner of the Solar System, in the most unexpected of locations. We tend to think of Earth volcanoes as erupting hot, molten lava and emitting huge, billowing clouds of incandescent ash. However, it isn't necessarily the same across the rest of the Solar System. For a start, some volcanoes aren't even particularly hot. Those on Pluto, for example, erupt an icy slush of substances such as water, methane, nitrogen or ammonia, that freeze to form ice mountains as hard as rock. While others, like the volcanoes on one of Jupiter's moons, Io, erupt the hottest lavas in the Solar System onto a surface covered in a frosty coating of sulphur. Whether they are formed of fire or ice, volcanoes are of huge importance for scientists trying to picture the inner workings of a planet or moon. Volcanoes dredge up materials from the otherwise inaccessible depths and helpfully deliver them to the surface. The way in which they erupt, and the products they generate, can even help scientists ponder bigger questions on the possibility of life elsewhere in the Solar System. Fire and Ice is an exploration of the Solar System's volcanoes, from the highest peaks of Mars to the intensely inhospitable surface of Venus and the red-hot summits of Io, to the coldest, seemingly dormant icy carapaces of Enceladus and Europa, an unusual look at how these cosmic features are made, and whether such active planetary systems might host life.


Environmental Effects on Volcanic Eruptions

Environmental Effects on Volcanic Eruptions
Author: James R. Zimbelman
Publisher: Springer Science & Business Media
Total Pages: 288
Release: 2000-10-31
Genre: Science
ISBN: 9780306462337

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The book presents current research into the effect that environmental conditions have on volcanic eruptions and the subsequent emplacement of volcanic products. This is accomplished through a series of chapters that investigate specific environments - both terrestrial and extraterrestrial - and the expression of volcanic materials found within those settings. Current state-of-the-art numerical, analytical and computer models are used in most chapters to provide robust, quantitative insights into how volcanoes behave in different environmental settings. Readership: Upper level undergraduates and new graduates. The book is primarily a presentation of research results rather than a tutorial for the general public. Textbook or supplementary reading for courses in volcanology or comparative planetology at college/university level.


Magma-Cryosphere Interaction on Mars

Magma-Cryosphere Interaction on Mars
Author: Nicole Jacques
Publisher: LAP Lambert Academic Publishing
Total Pages: 236
Release: 2010-06
Genre:
ISBN: 9783838365152

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Magma cryosphere interaction on Mars has been a subject of significant martian research as there is diverse and widespread evidence for its occurrence, and it holds fundamental implications for life on Mars. This book investigates the nature of these interactions, the type of geomorphologic features that they produce, and evidence for the exhumation of such features to the martian surface. Analytical and computational modeling of the thermal exchange between an intrusion and the martian cryosphere show that heat from the intrusion will melt the ground ice and create a slurry of saturated regolith. Regions are identified on Mars where exhumation has revealed features that might correspond to products of cryomagmatic interaction. The morphology of these features is consistent with theoretical and terrestrial analogue studies; specifically, of hypabyssal intrusions and subglacial volcanic eruptions. Since magma cryosphere interaction environments on Mars are excellent candidates for long lived hydrothermal activity, they exhibit important exobiological potential in the ongoing search for extraterrestrial life.


The Volcanoes of Mars

The Volcanoes of Mars
Author: James R. Zimbelman
Publisher: Elsevier
Total Pages: 260
Release: 2020-12-05
Genre: Science
ISBN: 0128228776

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The Volcanoes of Mars offers a clear, cohesive summary of Mars volcanology. It begins with an introduction to the geology and geography of the red planet and an overview of its volcanic history, and continues to discuss each distinct volcanic province, identifying the common and unique aspects of each region. Incorporating basic volcanological information and constraints on the regional geologic history derived from geologic mapping, the book also examines current constraints on the composition of the volcanic rocks as investigated by both orbiting spacecraft and rovers. In addition, it compares the features of Martian volcanoes to those seen on other volcanic bodies. Concluding with prospects for new knowledge to be gained from future Mars missions, this book brings researchers in volcanology and the study of Mars up to date on the latest findings in the study of volcanoes on Mars, allowing the reader to compare and contrast Martian volcanoes to volcanoes studied on Earth and throughout the Solar System. Presents clearly organized text and figures that will quickly allow the reader to find specific aspects of Martian volcanism Includes definitions of geological and volcanological terms throughout to aid interdisciplinary understanding Summarizes key results for each volcanic region of Mars and provides copious citations to the research literature to facilitate further discovery Synthesizes the most current data from multiple spacecraft missions, including the Mars Reconnaissance Orbiter, as well as geochemical data from Martian meteorites Utilizes published geologic mapping results to highlight the detailed knowledge that exists for each region