Ocean
in sentence
1555 examples of Ocean in a sentence
At some point, as this transience, as this CO2 uptake in the
ocean
continues, that material's actually going to start to dissolve.
There's many physiological processes that are influenced by the acidity of the
ocean.
So many reactions involving enzymes and proteins are sensitive to the acid content of the
ocean.
And we take samples of the sediment, and it tells us the CO2 level of the ocean, and therefore the CO2 level of the atmosphere.
Now, what that means is that all of the organisms that live in the sea have evolved in this chemostatted ocean, with CO2 levels lower than they are today.
So, Charlie Veron came up with this statement last year: "The prospect of
ocean
acidification may well be the most serious of all of the predicted outcomes of anthropogenic CO2 release."
So we're thinking we could throw up a bunch of satellites and use it to track our submarines and figure out their location in the middle of the
ocean.
You can see in its shape and its streamlined design it's powered for
ocean
swimming.
It flies through the
ocean
on its pectoral fins, gets lift, powers its movements with a lunate tail.
And we've got to use these technologies immediately to get a better understanding of how our
ocean
realm works.
We're putting them together in unusual ways, and this is taking us into the
ocean
realm like never before.
And for the first time, we're able to watch the journey of a tuna beneath the
ocean
using light and photons to measure sunrise and sunset.
We've actually taken a sliver of the ocean, put it behind glass, and we together have put bluefin tuna and yellowfin tuna on display.
When the veil of bubbles lifts every morning, we can actually see a community from the Pelagic ocean, one of the only places on Earth you can see giant bluefin swim by.
They're flying through their space,
ocean
space.
Now, the activities from the lab have taught us now how to go out in the open
ocean.
A team of fishers, captains, scientists and technicians work together to keep this animal out of the
ocean
for about four to five minutes.
They are some of our finest instruments, our new technology in the
ocean
today.
And from that mucus, we can get gene profiles, we can get information on gender, checking the pop-up tag one more time, and then it's out in the
ocean.
This tuna is actually moving on a numerical
ocean.
And now, together, what we can see on this
ocean
of color that's temperature, we can see ten-day worms of makos and salmon sharks.
They get returned, and when they get returned, here on a NASA numerical
ocean
you can see bluefin in blue go across their corridor, returning to the Western Pacific.
Same thing with Laysan albatross who travel an entire
ocean
on a trip sometimes, up to the same zone the tunas use.
So what we can see on this moving
ocean
is we can finally see where the predators are.
We can actually see how they're using ecospaces as large as an
ocean.
And now with Google's Oceans, we can actually put a white shark in that
ocean.
But maybe Mission Blue can fill in that
ocean
that we can't see.
We've got the capacity, NASA has the
ocean.
Restorative seafood allows for an evolving and dynamic system and acknowledges our relationship with the
ocean
as a resource, suggesting that we engage to replenish the
ocean
and to encourage its resiliency.
It pretty much works with any big fish in the ocean, so here we go.
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