Earth System Science: Bridging the Gaps between Disciplines: Perspectives from a Multi-Disciplinary Helmholtz Research School 2013th Edition

Earth System Science: Bridging the Gaps between Disciplines: Perspectives from a Multi-Disciplinary Helmholtz Research School 2013th Edition book cover

Earth System Science: Bridging the Gaps between Disciplines: Perspectives from a Multi-Disciplinary Helmholtz Research School 2013th Edition

Author(s): Gerrit Lohmann (Editor), Klaus Grosfeld (Editor), Dieter Wolf-Gladrow (Editor), Vikram Unnithan (Editor), Justus Notholt (Editor), Anna Wegner (Editor)

  • Publisher: Springer
  • Publication Date: 6 Nov. 2012
  • Edition: 2013th
  • Language: English
  • Print length: 145 pages
  • ISBN-10: 3642322344
  • ISBN-13: 9783642322341

Book Description

Earth system science is traditionally split into various disciplines (Geology, Physics, Meteorology, Oceanography, Biology etc.) and several sub-disciplines. Overall, the diversity of expertise provides a solid base for interdisciplinary research. However, gaining holistic insights into the Earth system requires the integration of observations, paleoclimate data, analysis tools and modeling. These different approaches of Earth system science are rooted in various disciplines that cut across a broad range of timescales. It is, therefore, necessary to link these disciplines at a relatively early stage in PhD programs. The linking of ‘data and modeling’, as it is the special emphasis in our graduate school, enables graduate students from a variety of disciplines to cooperate and exchange views on the common theme of Earth system science, which leads to a better understanding of processes within a global context.

Editorial Reviews

From the Back Cover

Earth system science is traditionally split into various disciplines (Geology, Physics, Meteorology, Oceanography, Biology etc.) and several sub-disciplines. Overall, the diversity of expertise provides a solid base for interdisciplinary research. However, gaining holistic insights into the Earth system requires the integration of observations, paleoclimate data, analysis tools and modeling. These different approaches of Earth system science are rooted in various disciplines that cut across a broad range of timescales. It is, therefore, necessary to link these disciplines at a relatively early stage in PhD programs. The linking of ‘data and modeling’, as it is the special emphasis in our graduate school, enables graduate students from a variety of disciplines to cooperate and exchange views on the common theme of Earth system science, which leads to a better understanding of processes within a global context.

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