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The Atlantic Ocean is the second-largest of the world's oceanic divisions. It is bounded by the continents of America, Europe and Africa and at its pole wards margins by the Arctic and the Southern Oceans. Different climatic patterns can be observed along its large latitudinal domain, which extends from the equator to sub-polar regions. Thus, different tropical and extra-tropical meteorological systems may have some influence on the characterization of precipitation regimes observed surrounding the basin, such as the Intertropical Convergence Zone (ITCZ), tropical monsoon systems, westerly storm tracks and atmospheric rivers. The subtropical regions of the Azores and South Atlantic high pres...
The book presents a comprehensive and original analysis from a Brazilian perspective of both traditional and emerging topics related to the so-called “El Dorados of the 21st century”: Amazonia and Antarctica. By gathering distinguished scholars, the resulting set of high-level findings, stemming from multiple epistemological standpoints, provides important and innovative insights into the wide-ranging geopolitical impacts of issues concerning these unique strategic ecosystems to the contemporary international environment. The result is a sophisticated response to the following questions: what were, are, and will be the contributions of Brazilian geopolitical thinking on these two themes? Additionally , from this intellectual exercise, how do we interpret the role of Antarctica and Amazonia in shaping the current asymmetrical transnational architecture of power?
Modern Earth System Monitoring represents a fundamental change in the way scientists study the Earth System. In Oceanography, for the past two centuries, ships have provided the platforms for observing. Expeditions on the continents and Earth’s poles are land-based analogues. Fundamental understanding of current systems, climate, natural hazards, and ecosystems has been greatly advanced. While these approaches have been remarkably successful, the need to establish measurements over time can only be made using Earth observations and observatories with exacting standards and continuous data. The 19 peer-reviewed contributions in this volume provide early insights into this emerging view of Earth in both space and time in which change is a critical component of our growing understanding.
New technologies has given us many different ways to examine the Earth. For example, we can penetrate deep into the interior of our planet and effectively X-ray its internal structure. With this technology comes an increased awareness of how our planet is continually changing and a fresh awareness of how fragile it is. Designed for the introductory Physical Geology course found in Geology, Earth Science, Geography, or Physical Science departments, Dynamic Earth: An Introduction to Physical Geology clearly presents Earth's dynamic geologic systems with their many interdependent and interconnected components. It provides comprehensive coverage of the two major energy systems of Earth: the plate tectonic system and the hydrologic cycle. The text fulfills the needs of professors by offering current content and a striking illustration package, while exposing students to the global view of Earth and teaching them to view the world as geologists.
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Also includes other ancestors of the author with some of their descendants. Ancestors include: Johann Adam Eckert (fl. 1708-1717) of Wiesbaden, Germany, and New York -- John Sweet (1584-1637) of Modbury, Devonshire, England, Massachusetts and Providence, Rhode Island -- Robert Austin (1634-1754) of England and Kingstown, Rhode Island -- Henry Collins (1606-1687) of England and Lynn, Massachusetts -- William Gifford (d. 1687) of Ireland and Sandwich, Massachusetts.
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