Iberia, Land of Glaciers: How The Mountains Were Shaped By Glaciers

Author:   Marc Oliva (Universitat de Barcelona, Spain) ,  David Palacios (Professor, Complutense University of Madrid, Spain) ,  José M. Fernández-Fernández (Centro de Estudos Geográficos (CEG) / Instituto de Geografia e Ordenamento do Território (IGOT), Universidade de Lisboa, Portugal)
Publisher:   Elsevier Science Publishing Co Inc
ISBN:  

9780128219416


Pages:   618
Publication Date:   22 September 2021
Format:   Paperback
Availability:   Manufactured on demand   Availability explained
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Iberia, Land of Glaciers: How The Mountains Were Shaped By Glaciers


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Iberia, Land of Glaciers: How The Mountains Were Shaped By Glaciers discusses the impact of past glaciers in the current landscape of Iberia. Currently, there are only small glaciers in the highest peaks of the Pyrenees that are the legacy of the last cold period that ended at the end of the 19th century: The Little Ice Age. However, an accurate observation of the landscape of the highest peaks and adjacent valleys of the Iberian Peninsula reveals a past shaped by the successive passage of glaciers with hundreds of meters of ice, similar to what happens today in the Alps or Patagonia. Iberian glaciation has resulted in ice expansion through valleys that are now used by the road network and where important populations settle; in addition, large accumulations of sediments deposited by those glaciers are still unstable today and can trigger risks for mountain populations. Iberia, Land of Glaciers presents the impact of the glaciers in the landscape of mountains following a more educational perspective with examples of 21 Iberian massifs written by specialists from each of the areas.

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Author:   Marc Oliva (Universitat de Barcelona, Spain) ,  David Palacios (Professor, Complutense University of Madrid, Spain) ,  José M. Fernández-Fernández (Centro de Estudos Geográficos (CEG) / Instituto de Geografia e Ordenamento do Território (IGOT), Universidade de Lisboa, Portugal)
Publisher:   Elsevier Science Publishing Co Inc
Imprint:   Elsevier Science Publishing Co Inc
Weight:   1.220kg
ISBN:  

9780128219416


ISBN 10:   0128219416
Pages:   618
Publication Date:   22 September 2021
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Paperback
Publisher's Status:   Active
Availability:   Manufactured on demand   Availability explained
We will order this item for you from a manufactured on demand supplier.

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Marc Oliva holds a PhD in Geography from the Universitat de Barcelona, where he works now as research scientist and leads a research group on Antarctic, Arctic and Alpine Environments. He has carried out research and teaching activities in universities of Portugal, Canada, Switzerland, Spain and Russia. He has participated in tens of expeditions to Antarctica and the High Arctic. Apart from the Polar Regions, he has also conducted research in other mountain regions (Rocky Mountains, Alps, N Iceland, Pamir, Tien Shan, Pyrenees, and Cantabrian Mountains), which has provided him a wide comprehension of Earth surface processes in cold-climate environments. His research interests include the study of geomorphological processes and past environments and climate in the Polar Regions and high mountains using a wide range of natural records (glacial, periglacial, and lacustrine). David Palacios is Full Professor of Physical Geography at the Complutense University of Madrid, Spain. He has been the coordinator for Spanish National Projects since 1998 to the present, and Spanish coordinator of two European Projects. He has served as founder and director of the High Mountain Physical Geography excellence research group for 12 years, and has authored over 200 international research papers, 100 chapters, and has edited five books. José M. Fernández-Fernández holds a PhD in Geography from the Universidad Complutense de Madrid (Spain), where he is Assistant Professor. His research has focused on the relationships between glaciers and climate at different timescales since the last glacial cycle and the use of nunataks as key proxies of palaeoenvironmental evolution. He has conducted research in several mountains of Iceland (Tröllaskagi Peninsula), the Iberian Peninsula, and Antarctica (South Shetland Islands).

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