Mostrando entradas con la etiqueta the SpaceX Dragon cargo spacecraft. Mostrar todas las entradas
Mostrando entradas con la etiqueta the SpaceX Dragon cargo spacecraft. Mostrar todas las entradas

domingo, 10 de abril de 2016

NASA : NASA Cargo Headed to Space Station Includes Habitat Prototype, Medical Research.- Carga de la NASA, que dirigieron a la Estación Espacial Incluye prototipo de Hábitat,e Investigación Médica

http://www.nasa.gov/press-release/nasa-cargo-headed-to-space-station-includes-habitat-prototype-medical-research

SpaceX CRS-8 Launch
Credits: NASA TV
SpaceX CRS-8 Launch
Credits: NASA TV
Tucked in the trunk of the latest commercial cargo spacecraft to head for the International Space Station is an expandable structure that has the potential to revolutionize work and life on the space station.


SpaceX's Dragon spacecraft is delivering almost 7,000 pounds of cargo, including the Bigelow Expandable Activity Module (BEAM), to the orbital laboratory following its launch on a Falcon 9 rocket at 4:43 p.m. EDT from Space Launch Complex 40 at Cape Canaveral Air Force Station in Florida.

The mission is SpaceX’s eighth cargo delivery through NASA’s Commercial Resupply Services contract. Dragon's cargo will support dozens of the more than 250 science and research investigations taking place on the space station during Expeditions 47 and 48.

“The cargo will allow investigators to use microgravity conditions to test the viability of expandable space habitats, assess the impact of antibodies on muscle wasting, use protein crystal growth to aid the design of new disease-fighting drugs and investigate how microbes could affect the health of the crew and their equipment over a long duration mission,” said NASA Deputy Administrator Dava Newman.

Dragon will be grappled at 7 a.m. Sunday, April 10, by ESA (European Space Agency) astronaut Tim Peake, using the station's Candarm2 robotic arm, with help from NASA astronaut Jeff Williams.

BEAM will arrive in Dragon’s unpressurized trunk and, after about five days, will be removed and attached to the station. Expansion is targeted for the end of May. The module will expand to roughly 10 feet in diameter and 13 feet long. During its two-year test mission, astronauts will enter the module for a few hours several times a year to retrieve sensor data and assess conditions. Expandable habitats are designed to take up less room on a rocket, but provide greater volume for living and working in space once expanded. This first in situ test of the module will allow investigators to gauge how well the habitat protects against solar radiation, space debris and contamination.

Crew members experience significant decreases in bone density and muscle mass during long-duration spaceflight without appropriate nutrition and exercise. One life science investigation on its way to the orbiting laboratory will assess myostatin inhibition as a means of preventing skeletal muscle atrophy and weakness in mice exposed to long-duration spaceflight. Drugs tested on the space station could progress to human clinical trials back on Earth to validate their effectiveness for future space missions.

Dragon also will deliver Microchannel Diffusion, a study of fluids at the nanoscale, or atomic, level. Nanofluidic sensors could measure the air in the space station, or be used to deliver drugs to specific places in the body. The laws that govern flow through nanoscale channels are not well understood, and this investigation simulates those interactions by studying them at the larger microscopic level. This type of research is possible only on the space station, where Earth’s gravity is not strong enough to interact with the molecules in a sample, so they behave more like they would at the nanoscale. Knowledge gleaned from the investigation may have implications for drug delivery and particle filtration, as well as future technological applications for space exploration.

Another experiment onboard Dragon is a protein crystal growth investigation focused on drug design and development. Growing protein crystals in microgravity can help researchers avoid some of the obstacles inherent to protein crystallization on Earth, such as sedimentation. One investigation will study the effect of microgravity on the co-crystallization of a membrane protein to determine its three-dimensional structure. This will enable scientists to chemically target and inhibit, with “designer” compounds, an important human biological pathway thought to be responsible for several types of cancer.

The spacecraft is scheduled to depart the space station May 11 for a splashdown in the Pacific Ocean, west of Baja California, bringing almost 3,500 pounds of science, hardware and spacewalking tools back to Earth for further study, including biological samples from NASA’s one-year mission.

The International Space Station is a convergence of science, technology and human innovation that demonstrates new technologies and makes research breakthroughs not possible on Earth. The space station has been continuously occupied since November 2000. In that time, it has been visited by more than 200 people and a variety of international and commercial spacecraft. The space station remains the springboard to NASA's next great leap in exploration, including future missions to an asteroid and Mars.

For more information about SpaceX's mission, visit:


For more information about the International Space Station, visit:


-end-
Tabatha Thompson
Headquarters, Washington
202-358-1100
tabatha.t.thompson@nasa.gov

Dan Huot
Johnson Space Center, Houston
281-483-5111
daniel.g.huot@nasa.gov
Last Updated: April 8, 2016
Editor: Karen Northon
NASA
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
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NASA : Busy Traffic at the International Space Station .- Tráfico ocupado en la Estación Espacial Internacional

http://www.nasa.gov/image-feature/busy-traffic-at-the-international-space-station
Docked Soyuz spacecraft in center of frame with Cygnus cargo craft at left and Progress craft at right with Earth below
Expedition 47 Flight Engineer Tim Peake of the European Space Agency took this photograph on April 6, 2016, as the International Space Station flew over Madagascar, showing three of the five spacecraft currently docked to the station. The station crew awaits the scheduled launch today, April 8, of the third resupply vehicle in three weeks: a SpaceX Dragon cargo spacecraft, which will be the sixth spacecraft docked following its arrival and installation to the Harmony module on Sunday, April 10. Dragon is carrying 6,900 pounds (3,130 kilograms) of science, crew supplies and hardware; the largest payload is the Bigelow Expandable Activity Module (BEAM). The BEAM will be attached to the Tranquility module a week after its arrival for a series of habitability tests over two years.
 
Orbital ATK's Cygnus cargo craft, visible at the left of this image, was bolted into place on the Earth-facing port of the station's Unity module on March 26, 2016. Although the SpaceX and Orbital ATK spacecraft have made 12 launches between them, this will be the first time that the two vehicles, contracted by NASA and developed by private industry to resupply the station, are connected to the space station at the same time.
Image Credit: ESA/NASA
Last Updated: April 8, 2016
Editor: Sarah Loff
NASA
Guillermo Gonzalo Sánchez Achutegui
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ayabaca@hotmail.com
ayabaca@yahoo.com
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viernes, 22 de mayo de 2015

NASA : NASA TV to Air U.S. Cargo Ship Departure from International Space Station .- NASA TV a US Air Cargo Ship Salida desde la Estación Espacial Internacional

Hola amigos: A VUELO DE UN QUINDE EL BLOG., hemos recibido información de la Agencia Espacial NASA, aquí en la imagen se observa: SpaceX's Dragon cargo capsule  se ve aquí atracado en el puerto de la Tierra frente del módulo Harmony de la Estación Espacial Internacional. Sexto vuelo de reabastecimiento comercial de SpaceX llegó a la estación el 17 de abril.

 More information....
 http://www.nasa.gov/press-release/nasa-tv-to-air-us-cargo-ship-departure-from-international-space-station

SpaceX's Dragon cargo capsule is seen here docked to the ISS
SpaceX's Dragon cargo capsule is seen here docked to the Earth-facing port of the Harmony module of the International Space Station. SpaceX's sixth commercial resupply flight arrived at the station on April 17.
Credits: NASA
 
After delivering more than two tons of supplies and research to the International Space Station that will help prepare NASA astronauts and robotic explorers for future missions to Mars, the SpaceX Dragon cargo spacecraft is set to leave the orbital laboratory on Thursday, May 21. NASA Television will provide live coverage of Dragon's departure beginning at 6:45 a.m. EDT.
The Dragon capsule, which arrived at the station April 17, will be detached from the Earth-facing side of the station's Harmony module using the Canadarm 2 robotic arm, operated by ground controllers at NASA's Johnson Space Center in Houston. NASA’s Mission Control Center will maneuver Dragon into place and Expedition 43 robotic arm operator Scott Kelly of NASA will give the command for its 7:04 a.m. release.
The Dragon will fire its thrusters three times to move to a safe distance from the station for its deorbit burn at approximately 11:49 a.m. The capsule will splash down in the Pacific Ocean at about 12:42 p.m. with more than 3,100 pounds of cargo. This will include science samples from human research, biology and biotechnology studies, physical science investigations and education activities sponsored by NASA and the Center for the Advancement of Science in Space (CASIS), the nonprofit organization that manages research aboard the U.S. national laboratory portion of the space station.
The deorbit burn and splashdown will not be broadcast on NASA TV.
Dragon, the only space station resupply spacecraft able to return to Earth intact, launched April 14 on a SpaceX Falcon 9 rocket from the Cape Canaveral Air Force Station, Florida, for the company’s sixth NASA-contracted commercial resupply mission to the station.
For NASA TV schedule and video streaming information, visit:
For more information about the International Space Station, and its research and crews, visit:
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Stephanie Schierholz
Headquarters, Washington
202-358-1100
stephanie.schierholz@nasa.gov
Dan Huot
Johnson Space Center, Houston
281-483-5111
daniel.g.huot@nasa.gov
Last Updated: May 22, 2015
Editor: Karen Northon
Tags:  Commercial Resupply, Dragon
NASA
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
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