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Man's understanding of how this planet is put together and how it evolved has changed radically during the last 30 years. This great revolution in geology - now usually subsumed under the concept of Plate Tectonics - brought the realization that convection within the Earth is responsible for the origin of today's ocean basins and conti nents, and that the grand features of the Earth's surface are the product of ongoing large-scale horizontal motions. Some of these notions were put forward earlier in this century (by A. Wegener, in 1912, and by A. Holmes, in 1929), but most of the new ideas were an outgrowth of the study of the ocean floor after World War II. In its impact on the earth sciences, the plate tectonics revolution is comparable to the upheaval wrought by the ideas of Charles Darwin (1809-1882), which started the intense discussion on the evolution of the biosphere that has recently heated up again. Darwin drew his inspiration from observations on island life made during the voyage of the Beagle (1831-1836), and his work gave strong impetus to the first global oceanographic expedition, the voyage of HMS Challenger (1872- 1876). Ever since, oceanographic research has been intimately associ ated with fundamental advances in the knowledge of Earth. This should come as no surprise. After all, our planet's surface is mostly ocean.
An account of some aspects of marine geology and marine geophysics, comprehensible to those at an early stage in their study of geology and to scientists who are not specialists in these fields. There are many biologists, chemists, mathematicians or physicists who work in the laboratory or on board ship with geologists and geophysicists and this book will help them to understand the aims of their colleages' experiments. Wherever possible, without a loss of necessary precision, terminology is deliberately simplified.
Lorsqu'il n'est pas en notre pouvoir de discerner les plus vraies opinions, nous devons suivre les plus pro babies.-Rene Descartes When, in the early 1960's I undertook to covered, due to limitations imposed by a single study Arctic Ocean deep-sea cores, I did not volume. anticipate that 10 years later the climatic history Although not comprehensive, it is hoped that of the north polar basin would be still a matter of this book will provide an insight into the current debate. Although much new data have accumu status of Arctic research and will also serve as a lated in various fields of Arct.
This text presents a balanced geological, physical and biological coverage of the ocean using poetry, prose and outstanding photographs and illustrations to enhance the text. It includes new chapters on chemical and physical oceanography.
The deep oceans and global seafloor are truly Earth's last frontier. They remain largely unexplored, yet are critical to our survival on this planet. This magnificent, full-color volume transports you to bizarre landscapes hosting exotic life forms that rival the most imaginative science fiction. Starting with a historical summary of seafloor exploration and the developing technologies used to study this extreme environment, it then describes the distinctive geologic components of the Earth's ocean floor and the unusual biological communities found along the mid-ocean ridges. This is an indispensable reference for researchers, teachers, and students of marine science, and a visually stunning resource that will enlighten and intrigue oceanographers and enthusiasts alike. A suite of online resources, including photographs and video clips, combine with the book to provide fascinating insights into the hidden world of seafloor geology and biology using the latest deep-sea imaging and geological concepts.
Oceanography - Relationships of the Oceans with the Continents, Their Biodiversity, and the Atmosphere provides a comprehensive exploration of the intricate interplay between Earth’s oceans, continents, biodiversity, and atmosphere. This enlightening volume delves into the multidisciplinary field of oceanography, offering insights into the physical, chemical, biological, and geological characteristics of the ocean and their profound impact on global systems. Through a series of engaging chapters, readers will journey from the depths of deep-sea biodiversity to the dynamics of coastal areas and the influence of organic matter on marine ecosystems. Discover the economic potential of seaweed aquaculture in a changing climate and explore the complex interactions between rivers and seas. The book culminates with an in-depth analysis of large-scale ocean-atmosphere interactions in the northern hemisphere, unraveling the seasonal fluxes of heat and moisture that shape our planet’s climate patterns. Each chapter is meticulously crafted to illuminate key concepts and provoke thought on the urgent challenges facing our oceans and environment today. This book is an indispensable resource for students, researchers, and anyone intrigued by the mysteries of our planet’s marine realms. Whether seeking to understand climate dynamics, biodiversity conservation, or sustainable resource management, this book offers a comprehensive perspective on the vital role of oceanography in shaping our understanding of Earth’s interconnected systems.
Junior, Senior, Graduate level text for Marine Geology, Marine Stratigraphy and Sedimentology or plate tectonics. Course found in both Geology and Oceanography departments. The first comprehensive and entirely new volume on marine geology since the emergence of the plate tectonic revolution in earth sciences and deep-sea drilling. Written by a foremost authority in the field.
Chemical Oceanography, Third Edition, is a survey of essential concepts that contains a wealth of new data and maps, resulting in a more in-depth examination of oceanic biogeochemical processes. The most up-to-date compilation of essential concepts and data available on the subject, this book responds to the need for a thorough, yet straightforward approach to the subject for students, researchers, and other professionals in marine science, geochemistry, and environmental chemistry. The third edition of Chemical Oceanography incorporates significant findings on the properties of oceans from recent, large-scale oceanographic programs and valuable new data derived from additional experiments. It also discusses the interactions of metals with inorganic and natural organic ligands and the effect of speciation of metals on bioavailability and toxicity. The section on carbonate systems now examines the input of fossil fuel CO2 into the ocean and its effect on the pH of the world oceans. Frank J. Millero, a world-renowned marine researcher and professor of undergraduate and graduate courses at the University of Miami for nearly 40 years, presents a time-tested and user-friendly resource specifically designed for both classroom use and self-study.