Oceanography: Exploring Earth's Final Wilderness
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Oceanography: Exploring Earth's Final Wilderness

1. évad
Discover the wonder, delight, and awe-inspiring majesty of Earth's ocean with Oceanography: Exploring Earth's Final Wilderness. Professor Harold J. Tobin, an ocean scientist who has visited landscapes on the seabed that no human eyes have seen before, takes you on a scientific expedition to fathom the ocean's many mysteries—from its shallowest tidal zone to its deepest depths.
202436 epizódTV-PG
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Bizonyos feltételekkel.

Epizódok

  1. 1. ÉVAD, 1. EPIZÓDDiving In—The Ocean Adventure

    2024. december 18.
    31 min
    TV-PG
    Begin your study of the ocean from every angle, examining Earth's watery realm in light of geology, biology, chemistry, meteorology, and other fields. In this lecture, survey the extent of the ocean and the approaches that oceanographers take to understanding it.
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  2. 1. ÉVAD, 2. EPIZÓDExplorers, Navigators, Pioneering Scientists

    2024. december 18.
    33 min
    TV-PG
    The early explorers of the ocean were interested in charting its islands, dimensions, and resources—and in using it as a highway for trade. Relive the exploits of these mariners, who included Europeans, Chinese, and Polynesians. Only later did scientific exploration of the ocean begin.
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  3. 1. ÉVAD, 3. EPIZÓDOcean Basics and Ocean Basins

    2024. december 18.
    32 min
    TV-PG
    As recently as the 1950s, geologists envisioned the ocean basins as a submerged version of the continents. Explore the topography of the seabed, discovering that it is shaped by geological forces fundamentally different from those on land.
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  4. 1. ÉVAD, 4. EPIZÓDMapping the Sea—Soundings to Satellites

    2024. december 18.
    34 min
    TV-PG
    The ocean floor was once as mysterious as the surface of another planet. Investigate the technologies involved in measuring bathymetry, the undersea counterpart of topography. Weighted ropes and cables for gauging the depth of the sea have given way to sophisticated sonar from ships and radar from satellites.
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  5. 1. ÉVAD, 5. EPIZÓDHabitats—Sunlit Shelves to the Dark Abyss

    2024. december 18.
    32 min
    TV-PG
    Take a tour of organisms that live from the shallows to the ocean floor. Learn how to classify ocean zones, and discover the importance of temperature, chemistry, nutrients, light, and other factors for different life forms—from active swimmers to passive floaters and bottom dwellers.
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  6. 1. ÉVAD, 6. EPIZÓDThe Spreading Sea Floor and Mid-Ocean Ridges

    2024. december 18.
    33 min
    TV-PG
    What made the ocean floor the way it is? Trace the evidence that ocean basins are geologically young and that new oceanic crust is being continually formed at mid-ocean ridges, pushing and rifting continental plates in a process called plate tectonics.
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  7. 1. ÉVAD, 7. EPIZÓDThe Plunging Sea Floor and Deep-Sea Trenches

    2024. december 18.
    32 min
    TV-PG
    Investigate subduction zones, where oceanic crust plunges beneath an overriding tectonic plate. These margins are associated with deep-sea trenches, earthquakes, tsunamis, and volcanoes. Examine other features, such as hotspots, which are a mid-plate phenomenon that includes the Hawaiian Islands chain.
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  8. 1. ÉVAD, 8. EPIZÓDThe Formation of the Earth and Its Ocean

    2024. december 18.
    30 min
    TV-PG
    Cover 9 billion years of cosmic history—from the big bang, to the accretion of the sun and planets, to the formation of Earth's oceans 4 billion years ago. The water in the oceans came from water vapor in volcanic eruptions and possibly from comet impacts.
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  9. 1. ÉVAD, 9. EPIZÓDThe Early Ocean and the Origins of Life

    2024. december 18.
    34 min
    TV-PG
    Explore scenarios for the origin of life, which may have begun around deep-sea hot springs. The oceans have maintained roughly the same conditions over the entire history of life on Earth, even though the sea floor has renewed itself many times over through plate tectonics.
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  10. 1. ÉVAD, 10. EPIZÓDMarine Sediments—Archives of the Ocean

    2024. december 18.
    31 min
    TV-PG
    Ocean sediments are like tree rings that can be "read" as a history of the ocean and climate through time. Investigate the different sources of sediments, which range from products of erosion on land, to the remains of sea creatures, to ejecta from asteroid impacts.
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  11. 1. ÉVAD, 11. EPIZÓDOffshore Oil and Gas—Resources and Risks

    2024. december 18.
    34 min
    TV-PG
    Learn the origin of petroleum and natural gas deposits, which formed under very specific conditions in marine sediments. As an example of the challenges of oil recovery, survey the technology of deep-water drilling, focusing on the disastrous blow-out in the Gulf of Mexico in 2010.
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  12. 1. ÉVAD, 12. EPIZÓDThe Enduring Chemistry of Seawater

    2024. december 18.
    30 min
    TV-PG
    Why is the sea salty? Why isn't it getting saltier? Probe these and other mysteries of ocean chemistry, looking at the remarkable stability and uniformity of seawater over time. Also study the role of water and the conjectured role of life in driving plate tectonics.
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  13. 1. ÉVAD, 13. EPIZÓDHow the Physics of Water Controls the Ocean

    2024. december 18.
    32 min
    TV-PG
    Analyze the surprising properties that keep the ocean liquid and make water the defining physical substance for life. Among them is its ability to retain heat, which has kept Earth in a narrow temperature range hospitable to life for billions of years. Also investigate the propagation of light in water and why the ocean is blue.
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  14. 1. ÉVAD, 14. EPIZÓDWaves—Motion in the Ocean

    2024. december 18.
    30 min
    TV-PG
    Chart the dynamics of wind-generated waves, which include almost all ocean waves. See how they form, grow in size, travel for thousands of miles, and then break on shore. The big waves preferred by surfers come from remote regions that have the ocean's stormiest weather.
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  15. 1. ÉVAD, 15. EPIZÓDRogue Waves and Tsunami

    2024. december 18.
    32 min
    TV-PG
    Long considered a mariners' tall tale, abnormally high "rogue" waves are now well documented. Understand the physics of why they form and the yearly toll they take on shipping. Then study tsunami, or seismic sea waves, which are generated when undersea earthquakes displace huge volumes of water, often with catastrophic results.
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  16. 1. ÉVAD, 16. EPIZÓDTides in Theory and Practice

    2024. december 18.
    30 min
    TV-PG
    Tides are caused by the gravitational attraction of the moon and, to a lesser extent, the sun. Learn that the timing and height of tides are far more complex than the daily motions of the moon and sun suggest—due to the influences of coastal features, the Coriolis effect, and other factors.
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  17. 1. ÉVAD, 17. EPIZÓDMarine Life, Energy, and Food Webs

    2024. december 18.
    34 min
    TV-PG
    Trace the path of energy and food through oceanic ecosystems, which have a far higher turnover of biomass than the terrestrial equivalents. As a result, most of what grows in the oceans is very quickly consumed. Learn why warm, temperate seas are often nutrient-poor compared with polar waters.
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  18. 1. ÉVAD, 18. EPIZÓDTiny Plankton—The Most Abundant Life on Earth

    2024. december 18.
    31 min
    TV-PG
    Survey some of the many species of plankton, which are passive, floating, and drifting organisms. Microscopic plankton are ubiquitous throughout the oceans and represent all three of the basic biological domains: Archaea, Bacteria, and Eukarya.
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  19. 1. ÉVAD, 19. EPIZÓDSoft-Bodied Life in the Dark, Open Depths

    2024. december 18.
    33 min
    TV-PG
    Investigate the soft-bodied organisms that live at great depths and have no skeletons or shells. Little known until recently, this group includes a variety of creatures whose amorphous bodies are often destroyed by nets and who only came to light through studies from submersibles.
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  20. 1. ÉVAD, 20. EPIZÓDSwimming—The Many Fish in the Sea

    2024. december 18.
    34 min
    TV-PG
    Contrasting with free-floating plankton, nekton are the ocean's swimmers. In this lecture, study the most numerous nekton—fish—focusing on their streamlining, gills, schooling, and other adaptations. Also, examine mollusks, including the octopus, squid, and nautilus.
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  21. 1. ÉVAD, 21. EPIZÓDMarine Birds, Reptiles, and Mammals

    2024. december 18.
    34 min
    TV-PG
    Turn to the nekton among birds, reptiles, and mammals. These feature some of the most magnificent creatures on the planet, including albatrosses, Sooty Shearwaters, sea turtles, manatees, seals, sea lions, whales, and dolphins. Focus on the adaptations that allow them to thrive in marine environments.
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  22. 1. ÉVAD, 22. EPIZÓDWhaling, Fisheries, and Farming the Ocean

    2024. december 18.
    34 min
    TV-PG
    Examine the economic exploitation of marine life, beginning with the history of whaling and continuing to the present, when fishing is the only significant source of hunted food. Weigh the alternatives of commercial fishing and mariculture in an era of rapidly declining fish populations.
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  23. 1. ÉVAD, 23. EPIZÓDWhere Sea Meets the Land and Why Coasts Vary

    2024. december 18.
    32 min
    TV-PG
    Have you ever walked along a beach or stood on a high cliff overlooking the sea and wondered how the land got to be that way? Learn how erosion, deposition, sea-level change, plate tectonics, and other factors have produced the characteristic coastlines of the world.
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  24. 1. ÉVAD, 24. EPIZÓDWhere Rivers Meet the Sea—Estuaries and Deltas

    2024. december 18.
    30 min
    TV-PG
    River mouths, deltas, tidal inlets, fjords, and enclosed bays are places where freshwater and seawater mix. Explore these complex zones, which are among the most biologically productive ecosystems on Earth. Many marine organisms carry out key parts of their lifecycles in such environments.
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  25. 1. ÉVAD, 25. EPIZÓDCoastal Erosion—Beaches and Sea Cliffs

    2024. december 18.
    31 min
    TV-PG
    Coastlines are constantly changing features. Examine what happens when structures are built to halt or reverse the change, especially at a time when sea level is rising. Most human-engineered solutions turn out to be short-term at best, and many have unintended consequences.
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