Online-money exchangers

Worm 4 Space: News
Showing posts with label News. Show all posts
Showing posts with label News. Show all posts

Sunday, 23 July 2017

NASA to Show Technologies at Experimental Aircraft Association’s AirVenture 2017




Visitors to the Experimental Aircraft Association’s 2017 AirVenture in Oshkosh, Wisconsin will see NASA’s latest technologies from across the agency. The annual airshow will be held Monday through Sunday, July 24-30.
This year, the agency will fill the NASA Exhibit Pavilion in Aviation Gateway Park with displays and hands-on activities highlighting NASA’s progress of future aircraft, the International Space Station, Earth science, the solar system, and NASA’s plan for sending astronauts into deep space, including Mars. Visitors to the pavilion also will be able to touch an actual moon rock brought back during NASA’s Apollo missions. NASA also will have more than 20 subject matter experts presenting at the various AirVenture venues and on the flightline. Static displays of a NASA T-38 Talon aircraft, a NASA SR22 research aircraft and a former National Advisory Committee for Aeronautics (NACA) P-63 aircraft.
NASA’s main event will be a special presentation on “New Aviation Horizons: Ready for Flight” on July 27 from 8-9 p.m. CDT in AirVenture’s Theatre in the Woods. Moderated by NASA Acting Chief Technologist, Douglas Terrier, the panel features senior leaders from all four of NASA’s aeronautical research centers talking about their latest work on technologies involved with experimental, or “X”-planes (low boom supersonic and ultra-efficient subsonic) and testing traffic management systems for drones, followed by audience Q&As.
Here is a sampling of the more than 20 AirVenture forum talks involving NASA speakers (all times Central.) For a complete list, visit:

Saturday, 21 May 2016

NASA : Bigelow Expandable Activity Module


Concept image of the Bigelow Expandable Activity Module (BEAM)
This artist's concept depicts the Bigelow Expandable Activity Module (BEAM), constructed by Bigelow Aerospace, attached to the International Space Station (ISS). The BEAM will be launched to the space station later this year.
Credits: Bigelow Aerospace
The Bigelow Expandable Activity Module (BEAM) is an expandable habitat technology demonstration for the International Space Station. Expandable habitats greatly decrease the amount of transport volume for future space missions. These “expandables” are lightweight and require minimal payload volume on a rocket, but expand after being deployed in space to potentially provide a comfortable area for astronauts to live and work. They also provide a varying degree of protection from solar and cosmic radiation, space debris, atomic oxygen, ultraviolet radiation and other elements of the space environment. 
The journey to Mars is complex and filled with challenges that NASA and its partners are continuously working to solve. Before sending the first astronauts to the Red Planet, several rockets filled with cargo and supplies will be deployed to await the crews’ arrival. Expandable modules, which are lower-mass and lower-volume systems than metal habitats, can increase the efficiency of cargo shipments, possibly reducing the number of launches needed and overall mission costs.
Mission Highlights
  • BEAM is scheduled to launch on the eighth SpaceX Commercial Resupply Service mission. After being attached to the Tranquility Node using the station’s robotic Canadarm2, it will be filled with air to expand it for a two-year test period in which astronauts aboard the space station will conduct a series of tests to validate overall performance and capability of expandable habitats.
  • Crews will routinely enter to take measurements and monitor its performance to help inform designs for future habitat systems. Learning how an expandable habitat performs in the thermal environment of space and how it reacts to radiation, micrometeroids, and orbital debris will provide information to address key concerns about living in the harsh environment of space.
  • Following the two-year test and validation period, BEAM will be robotically jettisoned from the space station, leaving orbit to burn during its descent through Earth’s atmosphere—much like many cargo spacecraft do.
  • If BEAM performs favorably, it could lead to future development of expandable habitation structures for future crews traveling in deep space.
  • The BEAM is an example of NASA’s increased commitment to partnering with industry to enable the growth of the commercial use of space. The BEAM project is co-sponsored by NASA's Advanced Exploration Systems (AES) Division and Bigelow Aerospace, which pioneers innovative approaches to rapidly and affordably develop prototype systems for future human exploration missions. The BEAM demonstration supports an AES objective to develop a deep space habitat for human missions beyond Earth orbit. 

More about BEAM

Sunday, 8 May 2016

NASA : Satellites to See Mercury Enter Spotlight on May 9


By NASA 
It happens only a little more than once a decade – and the next chance to see it is Monday, May 9. Throughout the U.S., sky watchers can watch Mercury pass between Earth and the sun in a rare astronomical event known as a planetary transit. Mercury will appear as a tiny black dot as it glides in front of the sun’s blazing disk over a period of seven and a half hours. Three NASA satellites will be providing images of the transit and one of them will have a near-live feed.



Although Mercury zooms around the sun every 88 days, Earth, the sun and Mercury rarely align. And because Mercury orbits in a plane that is tilted from Earth’s orbit, it usually moves above or below our line of sight to the sun. As a result, Mercury transits occur only about 13 times a century.
Transits provide a great opportunity to study the way planets and stars move in space – information that has been used throughout the ages to better understand the solar system and which still helps scientists today calibrate their instruments. Three of NASA's solar telescopes will watch the transit for just that reason.
The May 9 Mercury transit will occur between about 7:12 a.m. and 2:42 p.m. EDT. Mercury is too small to see without magnification, but it can be seen with a telescope or binoculars. These must be outfitted with a solar filter as you can't safely look at the sun directly.
“Astronomers get excited when any two things come close to each other in the heavens,” said Louis Mayo, program manager at NASA’s Goddard Space Flight Center in Greenbelt, Maryland. “This is a big deal for us.”
Mercury transits have been key to helping astronomers throughout history: In 1631, astronomers first observed a Mercury transit. Those observations allowed astronomers to measure the apparent size of Mercury’s disk, as well as help them estimate the distance from Earth to the sun.
“Back in 1631, astronomers were only doing visual observations on very small telescopes by today’s standards,” said Mayo.
Since then, technological advancements have allowed us to study the sun and planetary transits in greater detail. In return, transits allow us to test our spacecraft and instruments.
Scientists for the Solar and Heliospheric Observatory, or SOHO (jointly operated by NASA and ESA, the European Space Agency), and NASA’sSolar Dynamics Observatory, or SDO, will work in tandem to study the May 9 transit. The Hinode solar mission will also observe the event. Hinode is a collaboration between the space agencies of Japan, the United States, the United Kingdom and Europe led by the Japan Aerospace Exploration Agency.

SOHO launched in December 1995 with 12 instruments to study the sun from the deep solar core all the way out to the sun's effects on the rest of the solar system. Two of these instruments — the Extreme ultraviolet Imaging Telescope and the Michelson Doppler Imager — will be brought back into full operation to take measurements during the transit after five years of quiescence.
For one thing, the SOHO will measure the sun’s rotation axis using images captured by the spacecraft.
“Instruments on board SDO and SOHO use different spectral lines, different wavelengths and they have slightly different optical properties to study solar oscillations,” said SOHO Project Scientist Joseph Gurman. “Transit measurements will help us better determine the solar rotation axis.”
Such data is another piece of a long line of observations, which together help us understand how the sun changes over hours, days, years and decades.
“It used to be hard to observe transits,” Gurman said. “If you were in a place that had bad weather, for example, you missed your chance and had to wait for the next one. These instruments help us make our observations, despite any earthly obstacles.”
SDO will be able to use the transit to help with instrument alignment. Because scientists know so precisely where Mercury should be in relationship to the sun, they can use it as a marker to fine tune exactly how their instruments should be pointed.
The transit can also be used to help calibrate space instruments. The utter darkness of the planet provides an opportunity to study effects on the observations of stray light within the instrument. The backside of Mercury should appear black as it moves across the face of the sun. But because instruments scatter some light, Mercury will look slightly illuminated.
“It’s like getting a cataract — you see stars or halos around bright lights as though you are looking through a misty windshield,” said SDO Project Scientist Dean Pesnell. “We have the same problem with our instruments.”
Scientists run software on the images to try and mitigate the effect and check whether it can remove all of the scattered light.
For those of us down on the ground, it is worth trying to find a local astronomy club with a solar telescope to see if you can witness this rare event.  Alternatively, a near-live feed of SDO images will be available at www.nasa.gov/transit.

Friday, 29 April 2016

NASA releases new images of the planet Mars.


  • It is the second smallest planets of the solar system after Mercury.

  • Diameter Mars is about 6800 Km

  • Just Mars around the sun 228 Million Km Any and a half times the distance between Earth And the sun.




  • Scientists believe that the climate on Mars is similar to Earth's climate.



  • Degree Heat on the surface of Mars up to 20 Degrees Celsius at noon time at the equator in the summer.























Wednesday, 27 April 2016

NASA : Filipino Satellite Deployed from Japanese Lab


  • A microsatellite designed in the Philippines was deployed outside Japan’s Kibo laboratory module this morning for climate research. Inside the International Space Station, the crew continued more human research to improve the health of astronauts in space and citizens on Earth.

DIWATA-1, Filipino for “fairy”, is orbiting Earth after being released today from a satellite deployer mechanism outside the Kibo module’s airlock. The 50-kilogram-class microsatellite will observe the Earth’s climate to improve weather forecasting and natural disaster response.
The Expedition 47 crew is continuing its research today into how the lack of gravity affects thefluid shifts and pressure inside a crew member’s head. Scientists are also looking at how astronauts work with detailed, interactive tasks for the Fine Motor Skills study using a touchscreen tablet.
The space station regularly experiences stresses on its structure when spaceships dock, during spacewalks and crew exercise sessions. Researchers will look at some of the vibration data sent down by the crew today for the long-running Identification study.

Tuesday, 26 April 2016