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Immerse yourself in deep-sea geology to learn more about naturally-occurring oil seeps.
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Break new ground when you try this earth science lesson idea.
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Coleman Mackie discusses the process of how he salvages pre-cut timbers from the bottom of river beds, the importance of ring density, buoyancy and the uses of the recovered logs.
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In this video, Eugene Domack explains how past Antarctic ice sheet movement rates allow us to understand sea level changes. Video funded by NSF grant #: OCE-1502753.
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Eugene Domack, a geological oceanographer, describes how sediment cores are collected and used to estimate rates of ice sheet movement in Antarctica. Video funded by NSF grant #: OCE-1502753.
In this video, Brad Rosenheim describes how Louisiana sediment cores are used to estimate sea level changes over the last 10,000 years. Video funded by NSF grant #: OCE-1502753.
Watch as Brad Rosenheim, a geological oceanographer, explains how modern technology and sampling methods are used for sea level research. Video funded by NSF grant #: OCE-1502753.
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Watch as Don Chambers explains the role of satellites in measuring the mass of ice sheets and the connections between ice sheet mass changes and sea level. Video funded by NSF grant #: OCE-1502753.
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In this video, Don Chambers explains how satellite technology is essential for assessment of sea level changes. Video funded by NSF grant #: OCE-1502753.
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Physical oceanographer Gary Mitchum explains how and why tide gauges and satellites are useful for understanding sea level changes. Video funded by NSF grant #: OCE-1502753.
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Dean Grubbs explains the ways in which humans can impact the ocean.
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Dean Grubbs discusses where fish populations are found and the ocean features that are present around Florida.
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Dean Grubbs explains how different types of trash, like plastics, ends up in the ocean and how they become a detriment to marine life.
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Geologist Harley Means discusses the characteristics of karst geology.
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Christopher Williams discusses the different types of coastlines that are found in Florida.
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Kent Koptiuch talks about watersheds and water quality.
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Christopher Williams, Coastal Geologist, talks about the characteristics of coastlines.
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Harley Means discusses the mathematical methods hydrologists use to calculate the velocity of rivers.
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Let this researcher explain how studying fossils and isotopes can help us understand ancient climate conditions!
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When your classroom is the open ocean, which is the longest period? The one from the tsunami.
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KROS Pacific Ocean Kayak Journey: GPS Data Set[.XLSX]
KROS Pacific Ocean Kayak Journey: Path Visualization for Google Earth[.KML]
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Hear how mathematics helped shape Dr. James O'Brien's groundbreaking research in ocean modeling of El Niño.
COAPS oceanographer Dmitry Dukhovskoy describes the process used to mathematically model eddy shedding in the Gulf of Mexico.
Listen to a discussion about how moist atmospheric rivers are influencing increased monsoonal events.
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This FSU professor discusses the limitations and need for improvement to models used to forecast hurricanes.
In the Earth's systems, everything is connected! This meteorologist explains the relationship between monsoonal heat columns and polar ice-melt.
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A discussion focusing on the predictions that underestimated the storm surge from Hurricane Dennis on the Florida panhandle.
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To understand atmospheric and oceanic currents, one needs a well-rounded understanding of geometry and the shape of the Earth.
Dissolved oxygen is important to all life in and out of the water! Learn more in this video!
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A climatologist rains down information about how physical factors form regional climates.
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Listen up as a meteorologist explains how weather balloons work and how they collect data for models they can use to make forecasts.
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A discussion describing ocean currents studied by a physical oceanographer and how math is involved.
What happens when math models go wrong in forecasting hurricanes?
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COAPS oceanographer Steve Morey describes how math is used to help research hurricanes and strong deep ocean currents that could effect deep water oil rigs.
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Description needed. Light Reflection, Refraction, & Absorption
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A climatologist raises the bar with this classroom-ready 3D fluid dynamics weather demonstration.
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Learn how the ocean pressures the climate into changing.
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In a fog about weather patterns? This climatologist will demystify the topic for you.
Major Paul Homan describes the needs and capabilities of the United States Air Force with regard to global weather prediction and modeling.
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Entrepreneur and meteorologist Mark Powell discusses the need for statistics in his mathematical modeling program to help better understand hurricanes.
Hurricanes can hit at any time! How do insurance companies use math and weather data to help to restore the community?
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Meteorologist, Michael Kozar, discusses the limitations to existing hurricane scales and how he is helping to develop an improved scale.
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Meteorologist from Risk Management discusses the use of probability in predicting hurricane tracks.
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Dean Grubbs discusses biogeochemical cycles in the oceans and their impact.
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Angela Dial discusses how she solves systems of equations to determine how the composition of ocean floor sediment has changed over 65 million years to help reveal more information regarding climate change.
Michael Kozar speaks about severe weather and hurricane impacts.
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Michael Kozar talks about the influence land and water have on severe weather.
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Mark Powell discusses the models used for hurricane predictions and the limitations that exist.
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Angela Dial talks about using ocean core proxy data to investigate Earth's climate from the past.
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Angela Dial discusses the geologic and scientific evidence related to climate change in the past.
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Mark Powell discusses the impacts that a hurricane can have.
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Jon Ahlquist discusses the various factors in weather predictions and why they are so important to our lives.
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Jon Ahlquist discusses ensemble forecasting and how technology has allowed us to collect important data for the understanding of weather.
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Kent Koptiuch talks about aquifers and the importance of water quality.
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Sandra Brooke, from FSU Marine Lab, talks about undersea canyon ecosystems.
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Agriculture takes teamwork! Watch now to learn more about how plants, bacteria, and viruses interact.
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Learn about wetlands and how they meet the needs of various inhabitants. Learn more about how to learn more at .
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Invasive lionfish are taking a bite out of the ecosystem of Biscayne Bay. Biologists are looking for new ways to remove them, including encouraging recreational divers to bite back!
Learn how the Woods Hole Oceanographic Institution experts track oil-soaked sand patties on the Gulf Coast to monitor possible negative environmental impacts from the Deepwater Horizon oil spill.
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Don't cry over spilled oil. Take action instead! Learn how students can help scientists who are studying what happens to spilled oil and over time how it affects the environment.
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You'll need to bring your computer skills and math knowledge to estimate oil volume and rate as it seeps from the ocean floor. Dive in!
Don't get stuck in a loop on ocean currents. Let this oceanography student explain.
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Too many ideas about ocean currents swirling around in your head? Get into the flow of things with this video.
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Dr. Jeff Holmes from the Harvard University Museum of Comparative Zoology discusses the Encyclopedia of Life as a teaching resource for concepts regarding food webs.
This video was created in collaboration with the Okaloosa County SCIENCE Partnership including the Smithsonian Institution and Harvard University.
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Watch as this scientist shines a light on a type of pollution that affects sea turtles.
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Dr. Bill McShea from the Smithsonian Institution discusses how he works to ameliorate negative human impacts on the enviroment to maintain healthy biodiversity.
This video was created in collaboration with the Okaloosa County SCIENCE Partnership, including the Smithsonian Institution and Harvard University.
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Dr. Bill McShea from the Smithsonian Institution discusses population characteristics related to large animal species.
This video was created in collaboration with the Okaloosa County SCIENCE Partnership, including the Smithsonian Institution and Harvard University.
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Do you think you know oil there is to know about human impact on the environment? Let this biologist explain.
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Lionfish and other species are roaring past our native populations. Learn more.
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Scientists can be superheroes when it comes to saving rivers! Watch this video to find out more.
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This biologist will brighten your day with a discussion on colorful (or not) ways that marine organisms have adapted to ocean lighting.
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Sink into science as a biologist floats a few thoughts about physiological adaptations marine animals use to stay at the right depth.
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This marine biologist discusses her use of graphical representations to help determine the most cost-effective management strategies for sea turtle conservation.
An oil scientist explains how crude oil is formed and how it behaves in the environment.
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Statistical analysis played an essential role in using microgravity sensors to determine location of caves in Wakulla County.
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The tide is high! How can we statistically prove there is a relationship between the tides on the Gulf Coast and in a fresh water spring 20 miles from each other?
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Dr. Tom Miller explains the major roles in food web communities and describes a model system for exploring energy transfer between organisms.
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Charles Carpenter gives an overview of what it is like to own an electric car.
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Jeff Dutrow discusses how the interactions of spheres impacts fish behaviors including tides, currents, and seasons.
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Technology and web design can help students communicate information about an endangered species.
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Take a hike! This teacher presents an idea for students to learn about nature by collecting and categorizing specimens.
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Roads are a great resource for humans, but what do they mean for fragile ecosystems? Find out in this video.
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Humans impact the environment in a number of ways. Learn more about how we interact with nature!
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Pick up the pace and learn how snails fit into the Florida food web!
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Learn all the information about coral and corral that knowledge!
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This teaching activity rocks! Learn about aquatic ecosystems and hands-on learning!
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What lurks beneath the water's surface? Lots of creatures, big and small! Learn how mangroves grow in an unusual environment and support many other organisms both in and out of the water.
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Listen in as this teacher explains how students can do their own research to can help them understand invasive species and the dangers they pose to an ecosystem.
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It's all connected. Check out this food web lesson idea.
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Wade into science with students by cleaning up model oil spills!
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Sometimes science means going outside. Get going!
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Alicia Brown describes the role of sea grass beds in the environment.
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Coleman Mackie discusses longleaf pine forests as renewable resources.
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Dr. Nico Wienders from the Department of Earth, Ocean and Atmospheric Science at Florida State University discusses factors related to currents and energy transfer in the ocean.
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Dr. Andrea Larsen describes interactions between bacteria and fish that allow both to thrive.
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Dr. Andrea Larsen explains how fish microbiota are connected to fish health for aquaculture applications.
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Dr. Mahmood Shivji explains how rapid genetic testing of shark tissue samples is used to address societal pressures on marine environments.
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Dr. Erinn Muller explains how coral health research at Mote Marine Laboratory is driving policy decisions regarding coral reef restoration in Florida.
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Will Ryan describes how linear regression models contribute towards his research on sea anemones.
Deep sea shark researcher, Chip Cotton, discusses the need for a Power Analysis to determine the critical sample size in order to make inferences on how oil spills affect shark populations.
Dr. Melodie Naja of The Everglades Foundation describes research and modeling programs designed to better understand origins and localized levels of phosphorous pollution in the Everglades.
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Dr. Melodie Naja describes the link between agricultural pollutants and the bioaccumulation of methylmercury in the fresh surface waters of the Everglades.
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Dr. Erinn Muller describes limiting factors affecting coral health.
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Watch as Dr. Stephen E. Davis, III explains how excess phosphorous pollution is impacting the Everglades.
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Periphyton plays several vital roles in the Everglades. Watch now to find out more!
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NOAA Scientist Doug Devries discusses the differences between fishery independent surveys and fishery independent surveys. Discussion includes trap sampling as well as camera sampling. Using graphs to show changes in population of red snapper.
NOAA Fishery management relies on histograms to show patterns and trends over time of fishery data.
Fish Ecologist, Dean Grubbs, discusses how using statistical sampling can help determine legal catch rates for fish that may be endangered.
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Dean Grubbs of Florida State Universisty, discusses the impact bycatch has on ocean life.
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Enric Cortes discuses shark population data collected and the use of data to influence policy decisions.
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Ecologist, Rebecca Means, describes the process of determining remote locations in the USA and developing quantitative questions that are appropriate.
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Patrick Milligan shares his research on invasive ant species in the Kenyan savannah.
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Patrick Milligan discusses the relationship of organisms in the Kenyan savannah.
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Patrick Milligan discusses the impetus for organisms to migrate in the Kenyan savannah.
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Patrick Milligan discusses biotic and abiotic factors that affect populations of ants in the Kenyan savannah.
In this video, Molly Jameson explains how worm composting can work for the classroom.
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In this video, Mark Tancig explains how decomposers are vital to the process of composting.
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In this video, fire ecologist Monica Rother describes tree ring research and applications for land management.
In this video, fire ecologist Kevin Robertson explains the role of fire in the carbon cycle in fire-dependent ecosystems.
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In this video, Jim Cox describes a sampling method for estimating the density of dead trees in a forest ecosystem.
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