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The ocean we know - the one we swim, fish and play in - is very different from the deep water far from land. The deep ocean has no light, and the water pressure is so great it can shatter human bones! But that hasn't stopped explorers and inventors developing and improving underwater machines and equipment that have eventually taken people to the deepest places on Earth. Why? To see what's there, of course. Reading Level 29/F&P Level U
This book focuses on how marine systems respond to natural and anthropogenic perturbations (ENSO, overfishing, pollution, tourism, invasive species, climate-change). Authors explain in their chapters how this information can guide management and conservation actions to help orient and better manage, restore and sustain the ecosystems services and goods that are derived from the ocean, while considering the complex issues that affect the delicate nature of the Islands. This book will contribute to a new understanding of the Galapagos Islands and marine ecosystems.​
The United States faces decisions requiring information about the oceans in vastly expanded scales of time and space and from oceanic sectors not accessible with the suite of tools now used by scientists and engineers. Advances in guidance and control, communications, sensors, and other technologies for undersea vehicles can provide an opportunity to understand the oceans' influence on the energy and chemical balance that sustains humankind and to manage and deliver resources from and beneath the sea. This book assesses the state of undersea vehicle technology and opportunities for vehicle applications in science and industry. It provides guidance about vehicle subsystem development priorities and describes how national research can be focused most effectively.
Exploring the Earth under the Sea brings to life the world’s largest and longest-lived geological research program, which has been drilling over many decades at many locations deep below the ocean floor to recover continuous cores of sediment and rock. Study of these materials has helped us understand how the Earth works now, how it has worked in the past and how it may work in the future. The cores are a wonderful source of information on the dynamic processes that form and reform the Earth, both beneath the ocean and on land. The results have revealed climate and oceanographic change on different time frames, the history of life in the sea and on land including global mass extinctions, the extraordinary story of the great masses of ‘extremophile’ microbes that live beneath the sea bed, the nature of the giant earthquakes and tsunami generated at the trenches where tectonic plates collide, and the nature of submarine volcanoes and metalliferous deposits. This book outlines the technology and enduring international partnerships that underlie the scientific ocean drilling accomplished by the first phase of IODP, currently involving 23 countries. It highlights the important role of Australian and New Zealand scientists in the program, and the great scientific benefits we have derived from our partnership since joining IODP in 2008. As well as the scientific summaries, there are personal accounts by shipboard scientists of how they found life at sea on two-month expeditions, working 12-hour shifts on a noisy drill ship.
Having undertaken more than thirty dives to the wreck of Titanic, acclaimed director James Cameron has probably gained more firsthand insight into the sinking of the ship than any person alive today. Now, more than one hundred years after the tragedy, Exploring the Deep provides a thrilling account of his remarkable expeditions and the incredible technological innovations that made them possible. Capturing all the excitement, danger, and wonder of these pioneering expeditions, Exploring the Deep also examines the legacy of Cameron's explorations and the considerable impact they have made on our understanding of the disaster. Showcasing a treasure trove of never-before-seen images captured inside previously unreachable areas of the wreck, is a dazzling visual chronicle of Cameron's expeditions that will enthrall experts and casual readers alike. Also featuring Cameron's exclusive dive journal and previously unpublished visual elements, including dive maps and personal photographs, this book is an emotional and evocative examination of the wreck from one of the most exciting figures in both filmmaking and exploration. Bolstered by contributors from three of the world's foremost Titanic experts, Don Lynch, Ken Marschall, and Parks Stephenson, Exploring the Deep is the definitive book on Cameron's expeditions and the last word on a historical event that continues to shock and beguile.
'Like Sir David Attenborough, he has the rare ability to be an excellent communicator and has written an engaging book sprinkled with mind-blowing facts about the deep oceans' - Daily Express 'A new informed perspective on the wide, watery world we inhabit' - Coast magazine 'Book of the month' 'The gripping story of how ocean science has advanced in recent years is captivatingly told by Jon Copley in this introduction to the deep ocean' - China Dialogue 'Deftly conjures the wonders of a bathynaut's world' - Nature It is often said that we know more about space than we do our own oceans, but is that really the case? Or do we in fact know a great deal more about the oceans than many people realise. The wellbeing of our oceans and the life contained within and around them has never been more important. But to truly understand the vital role they play, we need to first understand how the oceans work, how we explore them and learn about the mysteries they hold, and what our effect is on them. Between these pages is everything you need to know about our oceans, explained in 25 questions. Combining untold history of ocean exploration and personal account of what it's like to be a 'bathynaut' diving in a mini-submarine, Ask an Ocean Explorer brings to light weird and wonderful deep-sea creatures and how the oceans and their future is connected to our everyday lives.
Ocean science connects a global community of scientists in many disciplines - physics, chemistry, biology, geology and geophysics. New observational and computational technologies are transforming the ability of scientists to study the global ocean with a more integrated and dynamic approach. This enhanced understanding of the ocean is becoming ever more important in an economically and geopolitically connected world, and contributes vital information to policy and decision makers charged with addressing societal interests in the ocean. Science provides the knowledge necessary to realize the benefits and manage the risks of the ocean. Comprehensive understanding of the global ocean is fundamental to forecasting and managing risks from severe storms, adapting to the impacts of climate change, and managing ocean resources. In the United States, the National Science Foundation (NSF) is the primary funder of the basic research which underlies advances in our understanding of the ocean. Sea Change addresses the strategic investments necessary at NSF to ensure a robust ocean scientific enterprise over the next decade. This survey provides guidance from the ocean sciences community on research and facilities priorities for the coming decade and makes recommendations for funding priorities.