Mostrando entradas con la etiqueta the Gulf of Mexico. Mostrar todas las entradas
Mostrando entradas con la etiqueta the Gulf of Mexico. Mostrar todas las entradas

viernes, 6 de noviembre de 2015

NSF : Risk assessment, for the birds .- La evaluación del riesgo, para las aves

Hola amigos: A VUELO DE UN QUINDE EL BLOG., Cada año, las aves canoras del patio trasero de los Estados Unidos hacen un arduo viaje a climas de invierno más cálidos. Migran cientos de millas, en ocasiones desafiando terreno duro y mal tiempo. A veces, no tienen lugar para parar y repostar en el camino.

Aves en realidad pesan estos riesgos utilizando una combinación de factores - la grasa, el clima y la fecha - para hacer una evaluación de los riesgos de migración, según un nuevo estudio financiado por la National Science Foundation (NSF). Los hallazgos pueden servir como base para la construcción de mejores estrategias de conservación, dicen los investigadores.

El trabajo se centró en tres especies de aves canoras, vireos de ojos rojos, zorzales de Swainson y tordos, mientras cruzaban el Golfo de México, desde Alabama costera de la Península de Yucatán. Los investigadores publicaron sus hallazgos hoy en las Actas de la Academia Nacional de Ciencias (PNAS).
More information.......

Complex factors determine when migrating songbirds make their journeys

Red-eyed vireo with transmitter
Red-eyed vireo with radio transmitter attached to its back.
Credit and Larger Versión
November 2, 2015
Every year, backyard songbirds across the United States make an arduous journey to warmer winter climes. They migrate hundreds of miles, occasionally braving tough terrain and nasty weather. Sometimes, they have no place to stop and refuel along the way.
Birds actually weigh these risks using a combination of factors--fat, weather and date--to make a migration risk assessment, according to new research funded by the National Science Foundation (NSF). The findings can serve as the basis for building better conservation strategies, researchers say.
The work focused on three species of songbirds, red-eyed vireos, Swainson's thrushes and wood thrushes, as they crossed the Gulf of Mexico, from coastal Alabama to the Yucatan Peninsula. The researchers published their findings today in the Proceedings of the National Academy of Sciences (PNAS).
"There are a lot of studies looking at bird's departure behavior or arrival behavior," said Jill Deppe, a biologist at Eastern Illinois University and principal investigator on the NSF award. "This is the first time we've been able to take a subset of birds and gather data on both."
The team used radio telemetry to track the birds as they migrated from one side of the gulf to the other, a distance of some 600 miles. Radio telemetry relies on miniature transmitters, smaller than the average watch battery, to record birds' locations. The researchers attached transmitters to birds' backs without harming them or interfering with their ability to fly. Each transmitter emits a radio signal at a specific frequency, picked up by antennas on the team's radio towers, which line part of the coast in Alabama and Mexico.
The researchers found birds generally used two cues--weather and their body fat levels--to make migration risk assessments. If humidity was too high, birds wouldn't depart. Birds that didn't carry large amounts of fat changed their routes, going farther inland and sometimes entirely around the gulf to avoid an open-water crossing. Researchers measured the fat content by looking at the birds' subcutaneous fat deposits, visible just underneath the skin.
Departure time also influenced the birds' success. Those that left at the end of September through mid-October, when gulf weather is more favorable, were more successful.
Surprisingly, however, age didn't seem to matter; young birds were just as successful in migration as older birds, an "interesting and unexpected" outcome that merits further study, Deppe said.
There are still many unanswered questions about bird migration, especially for small birds. "It's not that they're unanswerable," Deppe said. "They've simply been challenging to study given current technological limitations. But that's changing."
Her team for this research involved not only biologists, but also engineers and atmospheric scientists. One of the co-authors on the PNAS paper, Gil Bohrer of Ohio State University, received funding from NASA to develop new tools for understanding relationships between climate and animal migration. His work helped the team's biologists understand how weather played into the songbird's migration decisions.
 
Research can help protect migrating birds
 
Migration carries costs--among them, the tribulations of navigating unfamiliar territory and crossing ecological features like the Gulf of Mexico. But for birds, the benefits outweigh those costs.
"These birds have evolved to make this flight," Deppe said. "It probably gives them some time and energy savings on a direct route. They're not exposed to predators as much over the open water, they're less exposed to parasites, too."
Songbirds spend a significant chunk of their lives--about 30 percent--migrating. Red-eyed Vireos, for example, can spend the spring and summer breeding season in deciduous forests of the eastern United States, and winter in the South American tropics. The five-inch songbird can travel upwards of 3,000 miles, twice a year.
"They are quite successful at negotiating the barriers, at assessing the risk that's involved," said Frank Moore, another author on the PNAS paper and a biologist at the University of Southern Mississippi. "And if you think about it, some of the factors that are important in this risk, they can control. Other factors are outside their control."
Now that we know what criteria birds use to migrate, that information can be used to build more effective conservation strategies, Deppe said. Those include protecting high-quality habitats along the birds' migration routes. In those areas, the birds can eat and gain the fat necessary for them to survive migration.
Songbirds play an important role in the ecosystem, both as food for larger predators and as consumers of fruits and seeds that shape plant distributions.
"Survival of migrating songbirds, like migrating butterflies, has been declining for some time," said Michelle Elekonich, a program director in NSF's Directorate for Biological Sciences, which funded the research. "This work will help us understand migration better and may allow us to better protect migrants."
-NSF-
Media Contacts Jessica Arriens, NSF, (703) 292-2243, jarriens@nsf.gov
Program Contacts Michelle Elekonich, NSF, (703) 292-7202, melekoni@nsf.gov
The National Science Foundation (NSF) is an independent federal agency that supports fundamental research and education across all fields of science and engineering. In fiscal year (FY) 2015, its budget is $7.3 billion. NSF funds reach all 50 states through grants to nearly 2,000 colleges, universities and other institutions. Each year, NSF receives about 48,000 competitive proposals for funding, and makes about 11,000 new funding awards. NSF also awards about $626 million in professional and service contracts yearly.
 Get News Updates by Email 
Useful NSF Web Sites:
NSF Home Page:
 http://www.nsf.gov
NSF News:
 http://www.nsf.gov/news/
For the News Media:
 http://www.nsf.gov/news/newsroom.jsp
Science and Engineering Statistics:
http://www.nsf.gov/statistics/
Awards Searches:
http://www.nsf.gov/awardsearch/
Close-up of hands radiotagging a Swainson's thrush
A Swainson's Thrush being fitted with a radio transmitter.
Credit and Larger Version
Man in radio tower
Radio telemetry towers, like this one in Alabama, pick up signals from transmitters on the birds.
Credit and Larger Version
The National Science Foundation (NSF)
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
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lunes, 22 de junio de 2015

NASA : Tropical Storm Bill From the International Space Station .- Tormenta tropical Bill, vista desde la Estación Espacial Internacional

Hola amigos: A VUELO DE UN QUINDE EL BLOG., hemos recibido información de la Agencia Espacial NASA; de  una espectacular vista captada desde la Estación Espacial Internacional de una tormenta tropical llamada Bill; la fotografía fue captada por el astronauta : astronaut Scott Kelly (@StationCDRKelly), y corresponde  su ubicación en el Golfo de México

More information....
http://www.nasa.gov/image-feature/tropical-storm-bill-from-the-international-space-station

Earth from space with tropical storm visible above and space station's robotic arm below
NASA astronaut Scott Kelly (@StationCDRKelly), currently on a one-year mission to the International Space Station, took this photograph of Tropical Storm Bill in the Gulf of Mexico as it approached the coast of Texas, on June 15, 2015. Kelly wrote, "Concerned for all in its path including family, friends & colleagues."
Image Credit: NASA
Last Updated: June 22, 2015
Editor: Sarah Loff
Tags:  Earth, Expedition 44, Hazards, Hurricanes, Image of the Day, International Space Station
 NASA
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
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domingo, 2 de noviembre de 2014

nsf.gov - National Science Foundation .- Where did the Deepwater Horizon oil go? To Davy Jones' Locker at the bottom of the sea :- ¿Dónde está el petróleo de Deepwater Horizon? Para Davy Jones en el fondo del mar

Hola amigos: A VUELO DE UN QUINDE EL BLOG., hemos recibido información de la Fundación Nacional de Ciencia de Los Estados Unidos, quienes se hacen la pregunta: ¿Dónde está el petróleo de la Plataforma Deepwater Horizon? Para Davy Jones en el
fondo del mar...."La ubicación de los 2 millones de barriles de petróleo que se cree están atrapados en las profundidades del océano sigue siendo un misterio. Hasta ahora.......El científico David Valentine, de la Universidad de California en Santa Bárbara (UCSB) y sus colegas de la Institución Oceanográfica Woods Hole (WHOI) y la Universidad de California, Irvine, han descubierto el camino que el petróleo siguió a su lugar de descanso en el Golfo de México el mar piso.....Los hallazgos aparecen hoy en las Actas de revistas de la Academia Nacional de Ciencias......"Este análisis nos proporciona, por primera vez, un cierre en la pregunta, '¿Dónde está el petróleo y cómo llegó hasta allí?'", Dijo: Don Rice, Director  la División de Océano   del programa en la Fundación Nacional de Ciencia (NSF) Ciencias, que financió la investigación junto con la División de Ciencias de la Tierra de la NSF.............."Mediante el análisis de datos de más de 3.000 muestras recogidas en 534 localidades de más de 12 expediciones, los investigadores identificaron un parche 1.250 kilómetros cuadrados del fondo del mar en que se depositó cuatro a 31 por ciento del petróleo atrapado en las profundidades del océano. Eso es el equivalente de 2 a 16 por ciento del petróleo total descargada durante el accidente....... El petróleo sigue siendo en el Golfo de México más de cuatro años después del derrame de la plataforma Deepwater Horizon........."
New analysis traces oil to its resting place on the Gulf of Mexico sea floor
 
 
ships putting out fire after the Deepwater Horizon spill.
Oil remains in the Gulf of Mexico more than four years after the Deepwater Horizon spill.
Credit and Larger Version
October 27, 2014
Where's the remaining oil from the 2010 Deepwater Horizon disaster in the Gulf of Mexico?
The location of 2 million barrels of oil thought to be trapped in the deep ocean has remained a mystery. Until now.
Scientist David Valentine of the University of California, Santa Barbara (UCSB) and colleagues from the Woods Hole Oceanographic Institution (WHOI) and the University of California, Irvine, have discovered the path the oil followed to its resting place on the Gulf of Mexico sea floor.
The findings appear today in the journal Proceedings of the National Academy of Sciences.
"This analysis provides us with, for the first time, some closure on the question, 'Where did the oil go and how did it get there?'" said Don Rice, program director in the National Science Foundation's (NSF) Division of Ocean Sciences, which funded the research along with NSF's Division of Earth Sciences.
"It also alerts us that this knowledge remains largely provisional until we can fully account for the remaining 70 percent."
For the study, the scientists used data from the Natural Resource Damage Assessment conducted by the National Oceanic and Atmospheric Administration.
The U.S. government estimates the Macondo Well's total discharge--from April until the well was capped in July--at 5 million barrels.
By analyzing data from more than 3,000 samples collected at 534 locations over 12 expeditions, the researchers identified a 1,250-square-mile patch of the sea floor on which four to 31 percent of the oil trapped in the deep ocean was deposited. That's the equivalent of 2 to 16 percent of the total oil discharged during the accident.
The fallout of oil created thin deposits that are most extensive to the southwest of the Macondo Well. The oil is concentrated in the top half-inch of the sea floor and is patchily distributed.
The investigation focused primarily on hopane, a nonreactive hydrocarbon that served as a proxy for the discharged oil.
The researchers analyzed the distribution of hopane in the northern Gulf of Mexico and found that it was concentrated in a thin layer at the sea floor within 25 miles of the ruptured well, clearly implicating Deepwater Horizon as the source.
"Based on the evidence, our findings suggest that these deposits are from Macondo oil that was first suspended in the deep ocean, then settled to the sea floor without ever reaching the ocean surface," said Valentine, a biogeochemist at UCSB.
"The pattern is like a shadow of the tiny oil droplets that were initially trapped at ocean depths around 3,500 feet and pushed around by the deep currents.
"Some combination of chemistry, biology and physics ultimately caused those droplets to rain down another 1,000 feet to rest on the sea floor."
Valentine and colleagues were able to identify hotspots of oil fallout in close proximity to damaged deep-sea corals.
According to the researchers, the data support the previously disputed finding that these corals were damaged by the Deepwater Horizon spill.
"The evidence is becoming clear that oily particles were raining down around these deep sea corals, which provides a compelling explanation for the injury they suffered," said Valentine.
"The pattern of contamination we observe is fully consistent with the Deepwater Horizon event but not with natural seeps--the suggested alternative."
While the study examined a specified area, the scientists argue that that the observed oil represents a minimum value. They believe that oil deposition likely occurred outside the study area but so far has largely evaded detection because of its patchiness.
"These findings," said Valentine, "should be useful for assessing the damage caused by the Deepwater Horizon spill, as well as planning future studies to further define the extent and nature of the contamination.
"Our work can also help assess the fate of reactive hydrocarbons, test models of oil's behavior in the ocean, and plan for future spills."
Co-authors of the paper are G. Burch Fisher and Sarah C. Bagby of UCSB; Robert K. Nelson, Christopher M. Reddy and Sean P. Sylva of WHOI and Mary A. Woo of University of California, Irvine.
-NSF-
Media Contacts Cheryl Dybas, NSF, (703) 292-7734, cdybas@nsf.gov
Julie Cohen, UCSB, (805) 893-7220, julie.cohen@ucsb.edu

Related WebsitesNSF News: Study Identifies Source of Oil Sheens Near Deepwater Horizon Site: http://www.nsf.gov/news/news_summ.jsp?cntn_id=128494
NSF News: Gulf Oil Spill: NSF Awards Rapid Response Grant to Study Microbes' Natural Degradation of Oil: http://www.nsf.gov/news/news_summ.jsp?cntn_id=116993
NSF News: Gulf of Mexico Topography Played Key Role in Bacterial Consumption of Deepwater Horizon Spill: http://www.nsf.gov/news/news_summ.jsp?cntn_id=122736
NSF News: Chemical Make-up of Gulf of Mexico Plume Determined: http://www.nsf.gov/news/news_summ.jsp?cntn_id=120962
NSF News: Research Mission Studies Oil Spill Using Autonomous Underwater Vehicle and Mass Spectrometry: http://www.nsf.gov/news/news_summ.jsp?cntn_id=117200
NSF Grant: Collaborative Research: Oxygenation of Hydrocarbons in the Ocean: http://www.nsf.gov/awardsearch/showAward?AWD_ID=1333162&HistoricalAwards=false


 is an independent federal agency that supports fundamental research and education across all fields of science and engineering. In fiscal year (FY) 2014, its budget is $7.2 billion. NSF funds reach all 50 states through grants to nearly 2,000 colleges, universities and other institutions. Each year, NSF receives about 50,000 competitive requests for funding, and makes about 11,500 new funding awards. NSF also awards about $593 million in professional and service contracts yearly.
 Get News Updates by Email 
Useful NSF Web Sites:
NSF Home Page:
 http://www.nsf.gov
NSF News:
 http://www.nsf.gov/news/
For the News Media:
 http://www.nsf.gov/news/newsroom.jsp
Science and Engineering Statistics:
 http://www.nsf.gov/statistics/
Awards Searches:
http://www.nsf.gov/awardsearch/
Map of the Northern Gulf of Mexico, with sampling sites in the study
Map of the Northern Gulf of Mexico with sampling sites in the study. Hotter colors equal more oil.
Credit and Larger Version
photo of oil on water from the Deepwater Horizon oil spill
The Deepwater Horizon oil is likely at the bottom of the Gulf of Mexico.
Credit and Larger Version
image of sea floor bathymetry of the study area of the Deepwater Horizon spill
Hydrocarbons from the Deepwater Horizon spill overlaid on sea floor bathymetry of the study area.
Credit and Larger Version
Boats on water with oil on the ground in the Gulf of Mexico
Two million barrels of oil are submerged on the sea-floor of the Gulf.
Credit and Larger Version
Dark clouds of smoke emerge as a controlled burn of spilled oil takes place on the ocean surface.
Dark clouds of smoke emerge as a controlled burn of spilled oil takes place on the surface.
Credit and Larger Versión
NASA
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
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miércoles, 17 de julio de 2013

nsf.gov - News - Study Identifies Source of Oil Sheens Near Deepwater Horizon Site


Chemical analysis shows that source is oil pockets trapped in wreckage of sunken rig.-
 
Surface oil sheen seen in October, 2012, near the site of the Deepwater Horizon oil spill.
Surface oil sheen seen in October 2012, near the site of the Deepwater Horizon oil spill.
Credit: Chris Reddy, WHOI

Download the high-resolution JPG version of the image. (4.2 MB)
Scientists Chris Reddy (foreground) and Dave Valentine in a plane
Scientists Chris Reddy (foreground) and Dave Valentine on an overflight in January 2013.
Credit: Chris Reddy, WHOI
Download the high-resolution JPG version of the image. (121 KB)
Oil sheens overlying the wreckage of the Deepwater Horizon seen from the air
Oil sheens overlying the wreckage of the Deepwater Horizon, seen during the overflight.
Credit: Dave Valentine, UCSB
Download the high-resolution JPG version of the image. (7.9 MB)
Chemical compounds present in an oil sheen sample, highlighting the olefin fingerprint.
Chemical compounds present in an oil sheen sample, highlighting the olefin fingerprint.
Credit: Robert Nelson
Download the high-resolution JPG version of the image. (47 KB)
Photo of scientists on a boat: Valentine; Nelson; Kellermann, Reddy.
Sampling team in October 2012, left to right: Valentine; Nelson; Kellermann, Reddy.
Credit: Chris Reddy, WHOI
Download the high-resolution JPG version of the image. (4.2 MB)
Researcher Robert Nelson samples the sheens using a telescoping rod with a screen.
Researcher Robert Nelson sampled the sheens using a telescoping rod with a screen.
Credit: Chris Reddy, WHOI
Download the high-resolution JPG version of the image. (97 KB)
A chemical analysis indicates that the source of oil sheens recently found floating at the ocean's surface near the site of the Gulf of Mexico Deepwater Horizon oil spill is pockets of oil trapped within the wreckage of the sunken rig.
First reported to the U.S. Coast Guard by multinational oil and gas company BP in September 2012, the oil sheens raised public concern that the Macondo well, which was capped in July 2010, might be leaking.
However, both the Macondo well and the natural oil seeps common to the Gulf of Mexico were confidently ruled out, according to researchers from the University of California Santa Barbara (UCSB) and the Woods Hole Oceanographic Institution (WHOI).
The results are published this week in the journal Environmental Science & Technology.
"Silver linings in the dark cloud of the Deepwater Horizon spill are very hard to come by," says Don Rice, program director in the National Science Foundation's (NSF) Division of Ocean Sciences, which funded the research.
"Among the precious few are the lessons we've learned about the marine biogeochemistry of petroleum mixtures. This team has demonstrated convincingly that we can also use what we have learned for forensic purposes."
The researchers used a recently patented method to fingerprint the chemical makeup of the oil sheens, and to estimate the location of the source based on the extent to which gasoline-like compounds evaporated from the sheens.
"The results demonstrate a recently developed geochemical analytical method and may have real-world implications in environmental management strategies for future contamination incidents," says Deborah Aruguete, program director in NSF's Division of Earth Sciences, which co-funded the research.
Because every oil sample contains chemical clues pointing to the reservoir it came from, scientists can compare it to other samples to determine if they share a common source.
"This appears to be a slow leak from the wreckage of the rig, not another catastrophic discharge from a deep oil reservoir," says geochemist David Valentine of UCSB.
"Continued oil discharge to the Gulf of Mexico from the wreckage of the Deepwater Horizon rig is not a good thing, but there is some comfort that the amount of leakage is limited to the pockets of oil trapped within the wreckage of the rig."
Valentine and WHOI's Chris Reddy have worked on Deepwater Horizon for much of the last three years, investigating a wide range of problems, including the composition of the oil, detection of subsurface plumes, the biodegradation of the oil, the fate of the dispersants and the chemical transition from floating oil slicks to sunken tar balls.
"Because of our ongoing funding from NSF, we were prepared to interrogate the source of mysterious oil sheens in the Gulf of Mexico," said Valentine.
"We've been exploring new ways to do this for several years in the context of natural seeps, and this event provided us an opportunity to apply our fundamental advances to a real-world problem."
The scientists analyzed 14 sheen samples skimmed from the sea surface during two trips to the Gulf of Mexico.
Using comprehensive two-dimensional gas chromatography, a technique developed in Reddy's lab, the researchers first confirmed that the sheens contained oil from the Macondo well.
But the sheen samples also contained trace amounts of olefins, industrial chemicals used in drilling operations. The presence of olefins provided a fingerprint for the sheens the scientists could compare to the samples they had analyzed during the last three years.
Olefins are not found in crude oil and their uniform distribution in the sheens indicated that the Macondo well was unlikely to be the source.
The team surmised that the sheens must be coming from equipment exposed to olefins during drilling operations.
"The occurrence of these man-made olefins in all our sheen samples points to a single main source, which contains both Macondo oil and lesser amounts of the drilling fluids that harbor the olefins," said Valentine.
"This pointed us to the wreckage of the rig, which was known to have both, as the most likely source for the sheens."
The researchers compared the sheen samples to other field samples, some of which they expected would contain olefins and some they thought would not.
The reference samples included two pieces of debris from the Deepwater Horizon found floating in May 2010, as well as oil collected by BP in October 2012, during an inspection of the 80-ton cofferdam that had been abandoned at the seafloor after its use in a failed attempt to cover the Macondo well in 2010.
The team's gas chromatography analysis of BP's cofferdam samples definitively showed that it was not the sole source of the leak as there were no olefins present.
Prior to the analysis the cofferdam had become the prime suspect as the source when BP found small amounts of oil leaking from its top.
BP scientists acquired oil samples from this leak point before sealing the leak, thinking they had resolved the problem. However, the sheens on the sea surface persisted, and the lack of olefins pointed to another source entirely.
When Valentine and Reddy compared the chemical makeup of the sheens with debris found floating in 2010, they found a match. That debris, which came from the rig itself, was coated with oil and was contaminated by drilling mud olefins.
"The ability to fingerprint synthetic hydrocarbons allowed us to crack this case," Valentine said. "We were able to exclude a number of suspects and match the olefin fingerprint in the new oil slicks to that of the wreckage from the sunken rig."
The chemical analysis also told researchers which sheens had surfaced more recently than others, allowing them to reconstruct a trajectory for local ocean currents that pointed back to the oil's source.
By looking for sheens that showed the least amount of evaporation, they determined that oil surfaced closer to Deepwater Horizon wreckage than to the cofferdam site.
To explain how the oil might be trapped and released from the wreckage, the scientists point out that when the Deepwater Horizon rig sank, it was holding tanks containing hundreds of barrels of a mixture of drilling mud and oil.
Over time, corrosive seawater can create small holes through which oil can slowly escape to the surface. The researchers suspect that the containers on the rig holding trapped oil may be the source of the recent oil sheen.
In addition to Valentine and Reddy, the research team consisted of Christoph Aeppli and Robert Nelson of WHOI, and Matthias Kellermann of UCSB.
The Gulf of Mexico Research Initiative, Woods Hole Oceanographic Institution and a Swiss National Science Foundation Postdoctoral Fellowship also funded the research.
-NSF-
Media Contacts Cheryl Dybas, NSF (703) 292-7734
cdybas@nsf.gov
Julie Cohen, UCSB (805) 893-7220
 julie.cohen@ia.ucsb.edu
Stephanie Murphy, WHOI (508) 289-2271
 samurphy@whoi.edu
Related WebsitesNSF News: Chemical Make-up of Gulf of Mexico Plume Determined:
 http://www.nsf.gov/news/news_summ.jsp?cntn_id=120962
NSF News: Gulf Oil Spill: NSF Awards Rapid Response Grant to Study Microbes' Natural Degradation of Oil:
http://www.nsf.gov/news/news_summ.jsp?cntn_id=116993
NSF News: Scientists Document Fate of Oil Slicks from Natural Seeps:
 http://www.nsf.gov/news/news_summ.jsp?cntn_id=114651&org=NSF
NSF News: Research Mission Studies Oil Spill Using Autonomous Underwater Vehicle and Mass Spectrometry:
http://www.nsf.gov/news/news_summ.jsp?cntn_id=117200

The National Science Foundation (NSF) is an independent federal agency that supports fundamental research and education across all fields of science and engineering. In fiscal year (FY) 2012, its budget was $7.0 billion. NSF funds reach all 50 states through grants to nearly 2,000 colleges, universities and other institutions. Each year, NSF receives about 50,000 competitive requests for funding, and makes about 11,500 new funding awards. NSF also awards about $593 million in professional and service contracts yearly.
Get News Updates by Email
Useful NSF Web Sites:
NSF Home Page:
http://www.nsf.gov
NSF News:
 http://www.nsf.gov/news/
For the News Media:
 http://www.nsf.gov/news/newsroom.jsp
Science and Engineering Statistics:
http://www.nsf.gov/statistics/
Awards Searches:
 http://www.nsf.gov/awardsearch/

Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com

domingo, 10 de febrero de 2013

NASA - Powerful Nor'easter Coming Together


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KENNEDY SPACE CENTER, FLA. – A Boeing Delta IV rocket roars off the launch pad to lift the GOES-N satellite on top into space. Liftoff from Launch Complex 37 at Cape Canaveral Air Force Station was on time at 6:11 p.m. EDT. GOES-N is the latest in the Earth-monitoring series of Geostationary Operational Environmental Satellites developed by NASA and the National Oceanic and Atmospheric Administration. By maintaining a stationary orbit, hovering over one position on the Earth's surface, GOES will be able to provide a constant vigil for the atmospheric "triggers" for severe weather conditions such as tornadoes, flash floods, hail storms and hurricanes. Wikipedia
 A massive winter storm is coming together as two low pressure systems are merging over the U.S. East Coast.

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Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
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