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Showing posts with label NASA; Stratolaunch; PayPal. Show all posts
Showing posts with label NASA; Stratolaunch; PayPal. Show all posts

Tuesday, August 07, 2012

Mars rover landing "miracle of engineering," scientists say

Mon, Aug 06 21:55 PM EDT 1 of 14 By Irene Klotz and Steve Gorman PASADENA, California (Reuters) - NASA scientists hailed the Mars rover Curiosity's flawless descent and landing as a "miracle of engineering" on Monday as they scanned early images of an ancient crater that may hold clues about whether life took hold on Earth's planetary cousin. The one-ton, six-wheeled laboratory nailed an intricate and risky touchdown late on Sunday, much to the relief and joy of scientists and engineers eager to conduct NASA's first astrobiology mission since the 1970s Viking probes. "We trained ourselves for eight years to think the worst all the time," Curiosity lead engineer Miguel San Martin said. "You can never turn that off." Mission control engineers at the Jet Propulsion Laboratory near Los Angeles erupted in cheers and applause when confirmation was received that Curiosity, touted as the first full-fledged mobile science lab sent to a distant world, had landed on the Martian surface. NASA engineers said the feat stands as the most challenging and elaborate achievement in the history of robotic spaceflight, and opens the door to a new era in planetary exploration. President Barack Obama hailed the accomplishment as a historic "point of national pride." The landing also marked a much-welcome success and a major milestone for a U.S. space agency beset by budget cuts and the recent cancellation of its space shuttle program, NASA's centerpiece for 30 years. The landing was a major initial hurdle for a two-year, $2.5 billion project whose primary focus is chemistry and geology. The daredevil nature of getting the rover to Mars captured the public's imagination. DAREDEVIL DESCENT Encased in a capsule-like protective shell, the nuclear-powered rover capped an eight-month voyage as it streaked into the thin Martian atmosphere at 13,200 miles per hour (21,243 kilometers per hour), 17 times the speed of sound. Plunging through the top of the atmosphere at an angle producing aerodynamic lift, the capsule's "guided entry" system used jet thrusters to steer the craft as it fell, making small course corrections and burning off most of its downward speed. Closer to the ground, the vessel was slowed further by a giant, supersonic parachute before a jet backpack and flying "sky crane" took over to deliver Curiosity the last mile to the surface. The rover, about the size of a small sports car, came to rest as planned at the bottom of a vast impact bowl called Gale Crater, and near a towering mound of layered rock called Mount Sharp, which rises from the floor of the basin. A trio of orbiting satellites monitored what NASA had billed as the "seven minutes of terror," but the anxiety proved to be unfounded. From an orbital perch 211 miles away, NASA's sharp-eyed Mars Reconnaissance Orbiter snapped a stunning and serene picture of Curiosity gracefully riding beneath its massive parachute en route to Gale Crater, located near the planet's equator in its southern hemisphere. At 10:32 p.m. PDT on Sunday (1:32 a.m. EDT on Monday/0532 GMT on Monday) flight controllers at JPL received the equivalent of a text message from Curiosity that its journey of 352 million miles (566 million km) had ended safely. Seven minutes later, the rover transmitted a picture, relayed by another Mars orbiter called Odyssey, showing one of Curiosity's wheels on the planet's gravel-strewn surface. "When you see a picture of the surface of the planet with the spacecraft on it, that is the miracle of engineering," lead scientist John Grotzinger told reporters on Monday. With the late-afternoon sun slipping behind the crater's rim, Curiosity relayed six more sample pictures and the results of initial health checks of some of its 10 scientific instruments before shutting down for the Martian night. Additional photos taken by Curiosity were relayed hours later, including a batch of 200-plus images snapped at nearly four fames per second by the craft's bottom-mounted camera as it was lowered to the ground by parachute, rocket pack and sky crane. They were assembled by NASA into a rough-cut clip of moving footage showing the rover's descent from its own perspective, starting from the ejection of its heat shield. LANDING ZONE OF INTRIGUE Curiosity touched down about 6.2 miles from the foot of Mount Sharp, a monstrous formation of sedimentary rock that rises like a stack of cards three miles from the floor of Gale Crater. Higher from base to summit than California's Mount Whitney, the tallest mountain in the continental United States, Mount Sharp crests above the northern rim of the crater. An image of the mountain in the distance was captured by one of the rover's front-mounted hazard cameras, a flat, gravel-strewn plain in the foreground and the vehicle casting a silhouetted image on the ground. The picture reveals that Curiosity landed virtually face-to-face with the mountain, with no obstacles between the two. A separate photo shot in the opposite direction shows the northwestern rim of the crater. Scientists believe Mount Sharp may have formed from the remains of sediment that once completely filled the basin, offering a potentially valuable geologic record of the history of Mars, the planet most similar to Earth. For that reason, it is a key focus of interest for Curiosity scientists looking for evidence of Martian habitats that may have supported microbial life. It may be months, however, before Curiosity heads over to Mount Sharp. As project manager Pete Theisinger put it, "We have a priceless asset and we're not going to screw it up." After a flawless landing, the mission's surface phase was starting out as apparently trouble-free. Asked at an afternoon briefing if anything had yet gone wrong, mission manager Jennifer Trosper replied simply, "No." "There are an awful lot of things that have to continue to go right," she added. "There's a lot ahead of us, but so far we're just ecstatic about the performance of the vehicle." The rover comes equipped with an array of sophisticated instruments capable of analyzing samples of soil, rocks and atmosphere on the spot and beaming results back to Earth. One is a laser gun that can zap a rock from 23 feet away to create a spark whose spectral image is analyzed by a special telescope to discern the mineral's chemical composition. Among Curiosity's first tasks will be to chemically analyze the soil near its landing site. "We're on gravel plain of Mars, a somewhat familiar scene," Grotzinger said, noting that the gravel seemed to be quite uniform in size. "We're a complex spacecraft, and simple geology is a good thing to start off with." Scientists are also eager to explore rocks and pebbles that appear to have been transported by flowing water to a fan-shaped region near the landing site. On Monday, the rover was expected to unfurl its dish-shaped antenna so it could better communicate directly with Earth. (Editing by Eric Walsh and Stacey Joyce) ============ Curiosity Parachute Landing Spotted by NASA Orbiter [detail] NASA image captured Aug. 5, 2012 View the full high res file here: www.flickr.com/photos/gsfc/7727084278 NASA's Curiosity rover and its parachute were spotted by NASA's Mars Reconnaissance Orbiter as Curiosity descended to the surface on Aug. 5 PDT (Aug. 6 EDT). The High-Resolution Imaging Science Experiment (HiRISE) camera captured this image of Curiosity while the orbiter was listening to transmissions from the rover. Curiosity and its parachute are in the center of the white box; the inset image is a cutout of the rover stretched to avoid saturation. The rover is descending toward the etched plains just north of the sand dunes that fringe "Mt. Sharp." From the perspective of the orbiter, the parachute and Curiosity are flying at an angle relative to the surface, so the landing site does not appear directly below the rover. The parachute appears fully inflated and performing perfectly. Details in the parachute, such as the band gap at the edges and the central hole, are clearly seen. The cords connecting the parachute to the back shell cannot be seen, although they were seen in the image of NASA's Phoenix lander descending, perhaps due to the difference in lighting angles. The bright spot on the back shell containing Curiosity might be a specular reflection off of a shiny area. Curiosity was released from the back shell sometime after this image was acquired. This view is one product from an observation made by HiRISE targeted to the expected location of Curiosity about one minute prior to landing. It was captured in HiRISE CCD RED1, near the eastern edge of the swath width (there is a RED0 at the very edge). This means that the rover was a bit further east or downrange than predicted. The image scale is 13.2 inches (33.6 centimeters) per pixel . HiRISE is one of six instruments on NASA's Mars Reconnaissance Orbiter. The University of Arizona, Tucson, operates the orbiter's HiRISE camera, which was built by Ball Aerospace & Technologies Corp., Boulder, Colo. NASA's Jet Propulsion Laboratory, a division of the California Institute of Technology in Pasadena, manages the Mars Reconnaissance Orbiter Project for NASA's Science Mission Directorate, Washington. Lockheed Martin Space Systems, Denver, built the spacecraft. Credit: NASA/JPL-Caltech/Univ. of Arizona NASA image use policy. NASA Goddard Space Flight Center enables NASA’s mission through four scientific endeavors: Earth Science, Heliophysics, Solar System Exploration, and Astrophysics. Goddard plays a leading role in NASA’s accomplishments by contributing compelling scientific knowledge to advance the Agency’s mission. Follow us on Twitter Like us on Facebook Find us on Instagram === The mountains of Mars: NASA Rover makes incredible discovery as spacecraft beams back images 352million miles from the Red Planet - and it looks just like Earth!The clearest image ever taken of the surface of Mars reveals an Earth-like desert-scape that has been compared to the Mojave in California By Daily Mail Reporter PUBLISHED: 01:50 GMT, 9 August 2012 | UPDATED: 02:27 GMT, 9 August 2012 Comments (0) Share The ancient Martian crater where the Curiosity rover landed looks strikingly similar to the Mojave Desert in California with its looming mountains and hanging haze, scientists said on Wednesday. 'The first impression that you get is how Earth-like this seems looking at that landscape,' said chief scientist John Grotzinger of the California Institute of Technology. Overnight, the car-size rover poked its head out for the first time since settling in Gale Crater, peered around and returned a black-and-white self-portrait and panorama. This image released by NASA and taken by cameras aboard the Curiosity rover shows the Martian horizon It provided the best view so far of its destination since touching down Sunday night after nailing an intricate landing onto the surface of the Red Planet. During the last few seconds, a rocket-powered spacecraft hovered as cables lowered Curiosity to the ground. More...Curiosity sees an added dimension: First 3D images from the Martian surface beamed back to earth Life on Mars: Internet pranksters show how things could have been when Curiosity touched down (with a little help from Photoshop) Good morning, Mars: Curiosity sends back first colour picture from the red planet In the latest photos, Curiosity looked out toward the northern horizon. Nearby were scour marks in the surface blasted by thrusters, which kicked up a swirl of dust. There were concerns that Curiosity got dusty, but scientists said that was not the case. This NASA image shows a portion of the first 360-degree panoramic view from NASA's Curiosity rover, taken with the Navigation cameras 'We do see a thin coating of dust, but nothing too bad,' said Justin Maki, imaging scientist at NASA's Jet Propulsion Laboratory, which manages the $2.5 billion mission. Scientists were giddy about the scour marks because they exposed bedrock below - information that should help them better understand the landing site. Since landing, Curiosity has zipped home a stream of low-resolution pictures taken by tiny cameras under the chassis and a camera at the end of its robotic arm, which remained stowed. It also sent back a low-quality video showing the last 2 1/2 minutes of its descent. The rover successfully raised its mast packed with high-resolution and navigation cameras. The Mojave Desert which occupies a significant portion of southeastern California and smaller parts of central California, southern Nevada, southwestern Utah and northwestern Arizona, in the United States This NASA image shows a Picasso-like self portrait of NASA's Curiosity rover taken by its Navigation cameras, located on the now-upright mast With the mast up, it can begin its photographic days in force, including taking a 360-degree color view of its surroundings as early as Thursday. Grotzinger said he was struck by the Martian landscape, which appeared diverse. There seemed to be harder material underneath the gravelly surface, he said. 'It kind of makes you feel at home,' he said. 'We're looking at a place that feels really comfortable.' Mars, of course, is very different from Earth. It's a frigid desert constantly bombarded by radiation. There are geological signs that it was a warmer and wetter place once upon a time. One of the mission's goals is to figure out how Mars transformed. Curiosity photographed by the Mars Descent Imager instrument known as MARDI, showing the 15-foot (4.5-meter) diameter heat shield when it was about 50 feet (16 meters) from the spacecraft A view through a Hazard-Avoidance camera on NASA's Curiosity rover before and after the clear dust cover was removed. Both images were taken by a camera at the front of the rover. After sailing 352 million miles and eight months, Curiosity parked its six wheels near the Martian equator, where it will spend the next two years poking into rocks and soil in search of the chemical ingredients of life. Nasa has also revealed amazing new images from the High Resolution Imaging Science Experiment (HiRISE) camera aboard NASA's Mars Reconnaissance Orbiter, which captured the Curiosity rover and the components that helped it survive its seven-minute ordeal from space to its present location in Mars' Gale Crater. 'This latest image is another demonstration of the invaluable assistance the Mars Reconnaissance Orbiter team, and its sister team with the Mars Odyssey orbiter, have provided the Curiosity rover during our early days on the Red Planet,' said Mike Watkins, mission manager for the Mars Science Laboratory mission at NASA's Jet Propulsion Laboratory in Pasadena. 'The image not only satisfies our curiosity, it can provide important information on how these vital components performed during entry, descent and landing, and exactly locate the rover's touchdown site within Gale Crater.' In the image (below) the Curiosity rover is in the center of the image. This amazing image from the HiRise camera shows the Curiosity lander on Mars along with the components of its landing system To the right, approximately 4,900 feet (1,500 meters) away, lies the heat shield, which protected the rover from 3,800-degree-Fahrenheit (about 2,100 degrees Celsius) temperatures encountered during its fiery descent. On the lower left, about 2,020 feet (615 meters) away, are the parachute and back shell. The parachute has a constructed diameter of 71 feet (almost 21.5 meters) and an inflated diameter of 51 feet (nearly 16 meters). The back shell remains connected to the chute via 80 suspension lines that are 165 feet (50 meters) long. To the upper-left, approximately 2,100 feet (650 meters) away from the rover, is a discoloration of the Mars surface consistent with what would have resulted when the rocket-powered Sky Crane impacted the surface. The parachute and back shell of NASA's Curiosity rover strewn across the surface of Mars. 'This is the first of what I imagine will be many portraits HiRISE will be taking of Curiosity on the surface of Mars," said Sarah Milkovich, HiRISE investigation scientist at JPL. 'The image was taken Monday at about 10:30 p.m. Pacific when MRO was at an altitude of about 186 miles (300 kilometers), and we are getting resolution on the surface down to 1.3 feet (39 centimeters) per pixel.' It is the most expensive and ambitious mission yet to Mars. Its ultimate destination is a mountain towering from the center of the crater floor. Preliminary estimates indicate Curiosity landed four miles away from the base of Mount Sharp, thought to contain intriguing signs of past water - a starting point to learning whether microbial life could exist. Before the one-ton, nuclear-powered Curiosity can start roving, it has to undergo several weeks of tedious but essential health checks. Since it was too heavy to land using traditional air bags, it used a heat shield, parachute, rockets and cables. An orbiting spacecraft spotted the discarded spacecraft hardware, including the ballast weights that were shed soon after entry into the atmosphere. Read more: http://www.dailymail.co.uk/news/article-2185724/The-mountains-Mars-NASA-Rover-makes-incredible-discovery-spacecraft-beams-images-352million-miles-Red-Planet--looks-just-like-Earth.html#ixzz231m8gJ64 ==========

Tuesday, December 13, 2011

'Any orbit, any time': Microsoft tycoon Paul Allen plans world's biggest plane to launch rockets into space

Capsule with rocket booster blasts into orbit after the plane climbs high in the atmosphere
First passenger flights expected in 2021
By ASSOCIATED PRESS
Last updated at 1:00 AM on 14th December 2011
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The co-founder of Microsoft is forging ahead in the future of space travel with plans for the world's largest plane to launch passengers and cargo into orbit.
Technology tycoon Paul Allen and aerospace pioneer Burt Rutan unveiled plans in Seattle today for a twin-fuselage aircraft, with wings longer than a football field, to carry a rocket high into the atmosphere and drop it - avoiding the need for a launch pad and the expense of additional rocket fuel.
Allen, who teamed up with Rutan in 2004 to send the first privately financed, manned spacecraft into space, said his new project would 'keep America at the forefront of space exploration and give a new generation of children something to dream about'.
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Winging it: Stratolaunch Systems, founded by Microsoft tycoon Paul Allen, unveiled the model for its space plane in Seattle today. It has a wingspan longer than a football field

Lift off: The plane is the next step in space travel for Allen who teamed up with pioneer Burt Rutan in 2004 for their first project
He told a news conference: 'We have plenty and many challenges ahead of us.'
Allen and Rutan join a field crowded with Silicon Valley veterans who want to fill a void created by the retirement of NASA's space shuttle.

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Several companies are competing to develop spacecraft to deliver cargo and astronauts to the International Space Station. The Microsoft billionaire criticised the fact that government-sponsored space programmes are waning.
He said: 'When I was growing up, America's space program was the symbol of aspiration. For me, the fascination with space never ended. I never stopped dreaming what might be possible.'

The drop: Stratolaunch allows the shuttle to disconnect from the main aircraft and then use a rocket launcher to blast into space

On to the next leg: The giant plane drops the shuttle once it has climbed high enough into the sky so that it can continue its journey into space

Blast off: The new plane saves money because it avoids the need for a launch pad and the expense for additional rocket fuel

Rocket man: Technology tycoon is hoping that his project fills the void created by the retirement of NASA's space shuttle
Allen and Rutan last collaborated on the experimental SpaceShipOne, which was launched in the air from a special aircraft.
It became the first privately financed, manned spacecraft to go into space in 2004 and later won the $10 million Ansari X Prize for accomplishing the feat twice in two weeks.
Sir Richard Branson's Virgin Galactic licensed the technology and is developing SpaceShipTwo to carry tourists into space.
The new plane will have a wingspan of 380 feet - the world's largest. A space capsule with its own booster rocket blasts into orbit after the plane climbs high into the atmosphere.

The next frontier: Test flights are scheduled for 2016 with trips carrying passengers to follow within the next five
This method saves money by not using rocket fuel to get off the ground. Another older rocket company, Orbital Sciences Corp, uses this method for unmanned rockets to launch satellites.
The rockets will eventually carry people, but the first tests, scheduled for 2016, will be unmanned. It should be another five years before people can fly on the system that Allen and Rutan are calling Stratolaunch.
The company, to be based in Huntsville, Alabama, bills its method of getting to space as 'any orbit, any time'. Rutan will build the carrier aircraft, using six 747 engines.

Big dreams: Microsoft co-founder Paul Allen looks at the model of a giant aircraft he plans to build during a news conference today in Seattle
The spaceship and booster will be provided by another Internet tycoon, Elon Musk of PayPal, who has built a successful commercial rocket.
Allen left Microsoft in 1983. Since his time at the software giant, he has pursued many varied interests. He's the owner of the Seattle Seahawks football team as well as the Portland Trailblazers of the NBA.


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Read more: http://www.dailymail.co.uk/news/article-2073819/Any-orbit-time-Microsoft-tycoon-Paul-Allen-plans-worlds-biggest-plane-launch-rockets-space.html#ixzz1gTZrRLWj