Mostrando entradas con la etiqueta South Africa. Mostrar todas las entradas
Mostrando entradas con la etiqueta South Africa. Mostrar todas las entradas

martes, 15 de marzo de 2016

NASA : South Africa From the Space Station's EarthKAM .- Sudáfrica Desde EarthKAM de la Estación Espacial Internacional..............

Hola amigos: A VUELO DE UN QUINDE EL BLOG., la Agencia Espacial NASA, nos envía una fotografía de Sud África captada desde la Estación Espacial Internacional, mediante el sistema The remotely controlled Sally Ride EarthKAM.
NASA, nos dice: " El control remoto Sally Ride EarthKAM a bordo de la Estación Espacial Internacional tomó esta fotografía llamativa durante un sobrevuelo de Sudáfrica el 9 de febrero de 2016. El programa permite a los estudiantes EarthKAM solicitar fotografías de las características específicas de la Tierra, que son tomadas por una cámara montada en especial la estación espacial cuando se pasa por encima de esas características. Las imágenes se publican en línea para el público y los estudiantes en las aulas de todo el mundo para ver participante.EarthKAM es el único programa que proporciona a los estudiantes con tal control directo de un instrumento en una nave espacial en órbita alrededor de la Tierra, la enseñanza acerca de la ciencia del medio ambiente, la geografía y el proyecto espacial communications.The fue iniciado por el Dr. Sally Ride, primera mujer estadounidense en el espacio, en 1995 y KIDS en llamadas; la cámara voló en cinco vuelos de transbordador espacial antes de trasladarse a la estación espacial en la Expedición 1 en 2001. En 2011, la NASA y Sally Ride Ciencia instalado un nuevo sistema de cámaras en una ventana que apunta hacia abajo en la estación. Este sistema de cámara es el responsable de la toma y la descarga de las solicitudes de imágenes estudiante.
More information....
 

Land formations in South Africa imaged from low Earth orbit
The remotely controlled Sally Ride EarthKAM aboard the International Space Station snapped this striking photograph during a flyover of South Africa on Feb. 9, 2016. The EarthKAM program allows students to request photographs of specific Earth features, which are taken by a special camera mounted on the space station when it passes over those features. The images are posted online for the public and students in participating classrooms around the world to view.
EarthKAM is the only program providing students with such direct control of an instrument on a spacecraft orbiting Earth, teaching them about environmental science, geography and space communications.The project was initiated by Dr. Sally Ride, America’s first woman in space, in 1995 and called KidSat; the camera flew on five space shuttle flights before moving to the space station on Expedition 1 in 2001. In 2011, NASA and Sally Ride Science installed a new camera system in a downward-pointing window on the station. This camera system is responsible for taking and downloading student image requests.
Image Credit: NASA/EarthKAM.org
Last Updated: March 15, 2016
Editor: Sarah Loff
Guillermo Gonzalo Sánchez Achutegui
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ayabaca@hotmail.com
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sábado, 28 de junio de 2014

The National Science Foundation: Ancient ocean currents may have changed pace and intensity of ice ages

Slowing of currents may have flipped switch

earth seen from outer space showing the North Atlantic currents
About 950,000 years ago, North Atlantic currents, Northern Hemisphere ice sheets underwent changes.
Credit and Larger Version
June 26, 2014
Climate scientists have long tried to explain why ice-age cycles became longer and more intense some 900,000 years ago, switching from 41,000-year cycles to 100,000-year cycles.
In a paper published this week in the journal Science, researchers report that the deep ocean currents that move heat around the globe stalled or may have stopped at that time, possibly due to expanding ice cover in the Northern Hemisphere.
"The research is a breakthrough in understanding a major change in the rhythm of Earth's climate, and shows that the ocean played a central role," says Candace Major, program director in the National Science Foundation (NSF)'s Division of Ocean Sciences, which funded the research.
The slowing currents increased carbon dioxide (CO2) storage in the oceans, leaving less CO2 in the atmosphere. That kept temperatures cold and kicked the climate system into a new phase of colder, but less frequent, ice ages, the scientists believe.
"The oceans started storing more carbon dioxide for a longer period of time," says Leopoldo Pena, the paper's lead author and a paleoceanographer at Columbia University's Lamont-Doherty Earth Observatory (LDEO). "Our evidence shows that the oceans played a major role in slowing the pace of the ice ages and making them more severe."
The researchers reconstructed the past strength of Earth's system of ocean currents by sampling deep-sea sediments off the coast of South Africa, where powerful currents originating in the North Atlantic Ocean pass on their way to Antarctica.
How vigorously those currents moved can be inferred by how much North Atlantic water made it that far, as measured by isotope ratios of the element neodymium bearing the signature of North Atlantic seawater.
Like tape recorders, the shells of ancient plankton incorporate these seawater signals through time, allowing scientists to approximate when currents grew stronger and when weaker.
Over the last 1.2 million years, the conveyor-like currents strengthened during warm periods and lessened during ice ages, as previously thought.
But at about 950,000 years ago, ocean circulation slowed significantly and stayed weak for 100,000 years.
During that period the planet skipped an interglacial--the warm interval between ice ages. When the system recovered, it entered a new phase of longer, 100,000-year ice age cycles.
After this turning point, deep ocean currents remained weak during ice ages, and ice ages themselves became colder.
"Our discovery of such a major breakdown in the ocean circulation system was a big surprise," said paper co-author Steven Goldstein, a geochemist at LDEO. "It allowed the ice sheets to grow when they should have melted, triggering the first 100,000-year cycle."
Ice ages come and go at predictable intervals based on the changing amount of sunlight that falls on the planet, due to variations in Earth's orbit around the sun.
Orbital changes alone, however, are not enough to explain the sudden switch to longer ice age intervals.
According to one earlier hypothesis for the transition, advancing glaciers in North America stripped away soils in Canada, causing thicker, longer-lasting ice to build up on the remaining bedrock.
Building on that idea, the researchers believe that the advancing ice might have triggered the slowdown in deep ocean currents, leading the oceans to vent less carbon dioxide, which suppressed the interglacial that should have followed.
"The ice sheets must have reached a critical state that switched the ocean circulation system into a weaker mode," said Goldstein.
Neodymium, a key component of cellphones, headphones, computers and wind turbines, also offers a good way of measuring the vigor of ancient ocean currents.
Goldstein and colleagues had used neodymium ratios in deep-sea sediment samples to show that ocean circulation slowed during past ice ages.
They used the same method to show that changes in climate preceded changes in ocean circulation.
A trace element in Earth's crust, neodymium washes into the oceans through erosion from the continents, where natural radioactive decay leaves a signature unique to the land mass from which it originated.
When Goldstein and Lamont colleague Sidney Hemming pioneered this method in the late 1990s, they rarely worried about surrounding neodymium contaminating their samples.
The rise of consumer electronics has changed that.
"I used to say you could do sample processing for neodymium analysis in a parking lot," said Goldstein. "Not anymore."
-NSF-
Media Contacts Cheryl Dybas, NSF, (703) 292-7734,
cdybas@nsf.gov
Kim Martineau, LDEO, (845) 365-8708,
Related WebsitesNSF Grant: Late Quaternary Variability of the Agulhas Thermohaline Valve from Nd Isotopes in Planktonic Foraminifera:
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) 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.
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 world showing the route of the great ocean conveyor currents
Ocean currents slowed 950,000 years ago, triggering colder but less frequent ice ages.
Credit and Larger Version
Scientist Leo Pena analyzes fossil plankton shells on a computer to reconstruct ocean circulation.
Scientists (pictured: Leo Pena) analyzed fossil plankton shells to reconstruct ocean circulation.
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isolated neodymium isotopes from  fossils
In an Ultra Clean Lab, neodymium isotopes in fossils were isolated and measured.
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The scientific drillship JOIDES Resolution at sea
The scientific drillship JOIDES Resolution was used as a platform to collect deep-ocean sediment.
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Science cover
The researchers' findings are described in the June 27 issue of Science.
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The National Science Foundation (NSF)
Guillermo Gonzalo Sánchez Achutegui

domingo, 12 de mayo de 2013

ESA - the Namib Desert


10 May 2013 Korea’s Kompsat-2 satellite captured this image over the sand seas of the Namib Desert on 7 January 2012.
The Namib is the oldest desert in the world, stretching over 2000 km along Africa’s southwestern coast from Angola, through Namibia to South Africa. Sand dunes dominate the desert – some reaching over 300 m in height.
The blue and white area is the dry river bed of the Tsauchab – which only sees water following rare rainfall in the Naukluft Mountains to the east. Black dots of vegetation are concentrated close to the river’s main route, while salt deposits appear bright white.
This flattened area ends about 15 km to the east at the Sossusvlei salt and clay pan (not shown).
Running through the river valley, a road connects Sossusvlei to the Sesriem settlement. At the road’s 45th kilometre, seen at the lower-central part of the image, a white path shoots off and ends at a circular parking area at the base of a dune. This is Dune 45, a popular tourist stop on the way to and from Sossusvlei.
The 170 m-high dune is often photographed early in the morning or late in the day when one side is completely in shadow. In this image, there appears to be some shadow on the western side. From this we can deduce that the image was acquired during the late morning.
ESA supports Kompsat as a Third Party Mission, meaning it uses its ground infrastructure and expertise to acquire, process and distribute data to users. 
This image is featured on the Earth from Space video programme.
ESA
Guillermo Gonzalo Sánchez Achutegui
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