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Lanternfish are one of many animals that light up the ocean with their glowing bodies. Ceres appears to be differentiated into a rocky core and icy mantle and may harbour a liquid-water ocean under its surface.[67][68] W skład oceanów (układów oceanicznych) wchodzą także mniejsze obszary wodne, jak: morza, zatoki, kanały, zalewy i cieśniny, które od pełnych wód oceanicznych mogą być oddzielone półwyspami, wyspami bądź archipelagami. Wszystkie te zasoby wodne Ziemi określa się łącznie mianem wszechoceanu. The gas giants, Jupiter and Saturn, are thought to lack surfaces and instead have a stratum of liquid hydrogen, however their planetary geology is not well understood. The possibility of the ice giants Uranus and Neptune having hot, highly compressed, supercritical water under their thick atmospheres has been hypothesised. Although their composition is still not fully understood, a 2006 study by Wiktorowicz and Ingersall ruled out the possibility of such a water “ocean” existing on Neptune,[60] though some studies have suggested that exotic oceans of liquid diamond are possible.[61] Oceanographers divide the ocean into different vertical zones defined by physical and biological conditions. The pelagic zone includes all open ocean regions, and can be divided into further regions categorized by depth and light abundance. The photic zone includes the oceans from the surface to a depth of 200 m; it is the region where photosynthesis can occur and is, therefore, the most biodiverse. Because plants require photosynthesis, life found deeper than the photic zone must either rely on material sinking from above (see marine snow) or find another energy source. Hydrothermal vents are the primary source of energy in what is known as the aphotic zone (depths exceeding 200 m). The pelagic part of the photic zone is known as the epipelagic. W skład oceanów (układów oceanicznych) wchodzą także mniejsze obszary wodne, jak: morza, zatoki, kanały, zalewy i cieśniny, które od pełnych wód oceanicznych mogą być oddzielone półwyspami, wyspami bądź archipelagami. Wszystkie te zasoby wodne Ziemi określa się łącznie mianem wszechoceanu. Join Ocean Futures Society today–Be part of Jean-Michel’s team as we explore the world and address important issues. With our updates, you can add your voice for the ocean! Five men were floating about in a boat in the Southern ocean. But today, Pardo’s vision is becoming reality as the UN’s International Seabed Authority has drawn up maps dividing the ocean into blocks. Approximately 70% of the earth’s surface is covered by the ocean, and the ocean itself consists of approximately 80% deep sea. The deep sea offers enormous potential for ensuring effective and appropriate cycles and processes in the earth’s biosphere. Unfortunately, we have yet to make the most of this potential. This large-scale concept seeks to take advantage of the limitless possibilities of the deep sea by linking together vertically the air, sea surface, deep sea, and sea floor. Now is the time for us to create a new interface with the deep sea, the earth’s final frontier. SOA has the largest ocean youth network in the world, with members in 50 countries. SOA builds a global coalition of ocean champions to tackle ambitious sustainability initiatives for the betterment of our troubled seas. When you purchase the 4Ocean Signature Blue and Limited Edition Coral Reef Bracelets, we will remove two pounds of trash from the ocean and coastlines and also help to restore and regrow coral reefs through our partnership with the Coral Restoration Foundation*. These bracelets represent your support. Just how deep does the ocean go? Way further than you think. This animation puts the actual distance into perspective, showing a vast distance between the waves we see and the mysterious point we call Challenger Deep. Read more: http://www.businessinsider.com/sai FACEBOOK: https://www.facebook.com/techinsider TWITTER: https://twitter.com/techinsider INSTAGRAM: https://www.instagram.com/businessins… TUMBLR: http://businessinsider.tumblr.com/ Graduates obtain advanced  general technical knowledge and skills necessary for creative use in the design, construction, repair and operation of ships, ocean engineering objects and systems present in the maritime sector. Graduate is prepared to execute designing and construction works in the area of ​​Ocean Engineering; conducting scientific researches in the area of ​​Ocean Engineering; production management, operation and  repairs of ships and ocean engineering objects and teamwork in an international environment. A graduate is also prepared to work in factories of widely recognized shipbuilding sector; designing and engineering offices of shipbuilding and maritime branch; R & D centres of shipbuilding and maritime economy; enterprise advisory and consulting services in the area of ​​Ocean Engineering; shipbuilding classification institutions; Maritime Administration and the international institutions of the naval sector. Graduates should have instilled habits of lifelong learning and professional development and be prepared to take up research challenges and to study the third degree. Our oceans are changing fast. Find out how Museum collections are helping scientists to understand the future of marine life. OMI serves to enrich and expand the public’s understanding of ocean science and conservation through the collaborative creation, exhibition, and open-distribution of innovative visual media as well as artistic approaches to ocean education. Adrian Glover, a marine biologist at the NHM, has an analogy. Imagine trying to survey a rainforest while hovering in a hot air balloon. Making the task harder is a thick fog. And all you can do is lower a bucket at a few random points to drag up the odd branch and lump of soil. “Think of all the things you’d miss,” he says. “That’s what it’s like investigating the deep ocean.” Most studies looking at how corals will respond to future increases in ocean acidity are based on laboratory studies. This week in the journal Nature, researchers reported on a large-scale experiment to simulate these conditions in a natural coral ecosystem. Based on real ocean exploration technology, enter a research habitat and use real technology such as submersibles, sonar, and remote operated vehicles to explore the wonders of the worlds under the sea. Tie the power and majesty of the oceans to the world around us. An ocean (from Ancient Greek Ὠκεανός, transc. Okeanós, the sea of classical antiquity[1]) is a body of saline water that composes much of a planet’s hydrosphere.[2] On Earth, an ocean is one of the major conventional divisions of the World Ocean. These are, in descending order by area, the Pacific, Atlantic, Indian, Southern (Antarctic), and Arctic Oceans.[3][4] The word sea is often used interchangeably with “ocean” in American English but, strictly speaking, a sea is a body of saline water (generally a division of the world ocean) partly or fully enclosed by land.[5] Reef ecosystems just below the mesophotic zone – the maximum depth at which tropical reef-building corals can survive – have been largely ignored by ocean explorers. This acceleration of the current takes place in the direction of waves and dominant wind. Accordingly, when the sea depth increases, the rotation of the earth changes the direction of currents, in proportion with the increase of depth while friction lowers their speed. At a certain sea depth, the current changes direction and is seen inverted in the opposite direction with speed current becoming nul: known as the Ekman spiral. The influence of these currents is mainly experienced at the mixed layer of the ocean surface, often from 400 to 800 meters of maximum depth. These currents can considerably alter, change and are dependent on the various yearly seasons. If the mixed layer is less thick (10 to 20 meters), the quasi permanent current at the surface adopts an extreme oblique direction in relation to the direction of the wind, becoming virtually homogeneous, until the Thermocline.[38] Thank you for considering a donation to Ocean Media Institute. As a creative media hub, OMI fosters the democratization of ocean science by working collaboratively with organizations, academic institutions, aquaria, and museums across the globe to produce and openly distribute innovative visual stories to address ocean issues. 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