Friday, 23 October 2009

NASA's Mars Exploration Rover Spirit

Spirit's Robotic Stretch

Photo Credit : NASA

NASA's Mars Exploration Rover Spirit recorded this forward view of its arm and surroundings during the rover's 2,052nd Martian day, or sol, on Oct. 11, 2009. Bright soil in the left half of the image is loose, fluffy material churned by the rover's left-front wheel as Spirit, driving backwards, approached its current position in April 2009 and the wheel broke through a darker, crusty surface.Spirit used its front hazard-avoidance camera to take this image. The turret of tools at the end of the rover's robotic arm is positioned with the Moessbauer spectrometer up and the rock abrasion tool extending toward the right. Spirit's right-front wheel, visible in this image, has not worked since 2006. It is the least-embedded of the rover's six wheels at the current location, called "Troy."Spirit and its twin, Opportunity, have been working on Mars for more than 58 months in what were originally planned as 3-month missions on Mars.

Hypergolics Loading Scheduled

Hypergolics Loading Scheduled

Launch Pad 39A has been cleared of personnel today so oxidizers can be loaded into the orbital maneuvering system and reaction control system tanks on space shuttle Atlantis. The OMS and RCS are thruster systems used predominantly to steer the shuttle in space. The OMS engines are used to slow the shuttle down before it enters the atmosphere for landing. Both of the units use hypergolic propellants, which are chemicals that burn on their own when they come in contact with each other. That is different from the oxygen and hydrogen mixture that fuels the shuttle's three main engines at launch. Atlantis is being prepared for a launch targeted for Nov. 16 from NASA's Kennedy Space Center in Florida.

The astronauts continue practicing their launch routine, as well. They are rehearsing ascent procedures during part of the day in the motion base simulator at NASA's Johnson Space Center in Houston.

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Wednesday, 21 October 2009

STS-129 Crew Returns to JSC

STS-129 Crew Returns to JSC
Wed, 21 Oct 2009 08:29:31 -0500

After two days of prelaunch mission practice at NASA's Kennedy Space Center in Florida, the six STS-129 mission astronauts returned to NASA's Johnson Space Center in Houston. There, they will continue their training and perform customary housekeeping projects for Atlantis' upcoming flight to the International Space Station.

The crew members are scheduled to return to Kennedy to complete the Terminal Countdown Demonstration Test, or TCDT, on Nov. 2 and 3. At that time, they will participate in a full launch countdown exercise, safety briefings and payload bay walkdown.

Meanwhile at Kennedy's Launch Pad 39A, technicians continue to check systems to verify there was no damage to the space shuttle from a lightning strike at the pad last week. So far no damage has been found.

Also at the pad today, workers are testing the solid rocket booster hydraulic system and completing the shuttle interface test -- which means confirming the various components and connections are "talking" to each other.

The agency's Flight Readiness Review, or FRR, for the STS-129 mission is set for Oct. 29 at Kennedy. Afterward, NASA will announce an official launch date and broadcast a post-meeting briefing on NASA TV.

Tuesday, 20 October 2009

STS-129

NASA Updates Shuttle Atlantis Target Launch Date, Crew Rehearsal

WASHINGTON -- NASA is targeting Nov. 16 for the launch of space shuttle Atlantis' STS-129 mission from the agency's Kennedy Space Center in Florida. Managers for NASA's Space Operations Mission Directorate and Exploration Systems Mission Directorate met Monday and decided to adjust Atlantis' target launch date to optimize the agency's ability to launch both Ares I-X and Atlantis before the end of the year.

The same launch team at Kennedy is supporting both the shuttle and the flight test of the Ares I-X rocket, which is targeted to lift off on Oct. 27. Ares I-X is scheduled to roll out to its launch pad at 12:01 a.m. EDT Tuesday. Atlantis' new target launch date will give Ares I-X launch opportunities Oct. 27, 28 and 29.

NASA has yet to schedule Atlantis' new target liftoff date on the Eastern Range. The change to Atlantis' targeted launch will affect the launch countdown dress rehearsal for the shuttle's six astronauts. The astronauts arrived at Kennedy on Monday for the Terminal Countdown Demonstration Test and related training. The simulated countdown has been rescheduled to Nov. 3. The astronauts will practice emergency escape and other related training while they are at Kennedy this week and return there Nov. 2 to conclude their rehearsal work.

The agency's Flight Readiness Review meeting for STS-129 is set for Oct. 29. NASA will schedule an official launch date for Atlantis following that meeting.

For more information about the STS-129 mission and its crew, visit:
http://www.nasa.gov/shuttle

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NASA - Ares 1 Launch Vehicle News

NASA Sets Briefing about Ares I-X Readiness to Launch

CAPE CANAVERAL, Fla. -- NASA will hold a news conference on Friday, Oct. 23, at the agency's Kennedy Space Center in Florida to discuss the status of the Ares I-X rocket launch. The briefing will begin at approximately 5 p.m. EDT, after the conclusion of the Flight Test Readiness Review, a meeting to assess preparations for the flight test. The review is expected to include the selection of an official launch date. Ares I-X currently is targeted to launch at 8 a.m. on Tuesday, Oct. 27. The briefing participants are: - Bob Ess, Ares I-X mission manager - Ed Mango, Ares I-X launch director NASA Television and the agency's Web site will broadcast the news briefing live. Journalists may ask questions from participating NASA locations. Reporters should contact their preferred NASA center to confirm its participation.

For NASA TV streaming video, downlink and scheduling information, visit:
http://www.nasa.gov/ntv

Ares 1-X Souvenirs

Kennedy Camera Spots ISS

Kennedy Camera Spots Space Station

10.20.09

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On Oct. 9, 2009 at NASA's Kennedy Space Center in Florida, one of three shuttle tracking cameras trained on the LCROSS lunar impacts captured the International Space Station as it passed over the center.Video only. No audio.

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Ares 1-X Arrives

NASA's Ares I-X Rocket Arrives at Launch Pad in Florida

CAPE CANAVERAL, Fla. -- For the first time in more than a quarter century, a new vehicle is sitting at Launch Pad 39B at NASA's Kennedy Space Center in Florida. The Ares I-X flight test vehicle arrived at the pad atop of a giant crawler-transporter at approximately 7:45 a.m. EDT Tuesday. The crawler-transporter left Kennedy's Vehicle Assembly Building at 1:39 a.m., traveling less than 1 mph during the 4.2-mile journey. The rocket was secured on the launch pad at 9:17 a.m. The vehicle is scheduled to launch at 8 a.m. on Oct. 27.

This test flight of the Ares I-X rocket will provide NASA an early opportunity to test and prove hardware, models, facilities and ground operations associated with the Ares I launch vehicle. The Ares I rocket is being designed to carry astronauts to space in the Orion crew exploration vehicle. The Ares I-X test flight also will allow NASA to gather critical data during ascent of the vehicle's integrated stack, which includes the Ares I with a simulated upper stage, Orion and launch abort system. Data collected from more than 700 sensors throughout the rocket will begin to confirm the vehicle as a whole is safe and stable in flight before astronauts begin traveling into orbit. "With the arrival of Ares I-X at the pad, this milestone demonstrates NASA's world-class ability to conceptually design, build and process a new launch vehicle in just under four years," said Bob Ess, mission manager for Ares I-X at Kennedy. "Nearly 2,000 NASA and contractor employees located throughout the United States worked together in an unprecedented fashion, resulting in the new vehicle ready for flight."

During the week before launch, technicians at the pad will perform a variety of electrical and mechanical checks to ready the vehicle for flight, including hydraulic power unit hot fire, steering tests and internal power verifications using flight batteries. United Space Alliance of Houston is NASA's prime contractor for the ground processing of the Ares I-X rocket. "Processing for the Ares I-X test flight in parallel with space shuttle operations has been a true challenge involving people and hardware from across the country, and we're very proud of what the team has accomplished," said Mark Nappi, vice president of Launch and Recovery Systems for United Space Alliance. ATK Space Systems of Magna, Utah, is NASA's prime contractor for the first stage of the rocket. "The NASA and contractor teamwork displayed over the last four years has been the catalyst that brought us to this important milestone today," said Bob Herman, ATK's vice president of Exploration Systems for Kennedy Space Center Operations. "As the Ares I first stage provider, we are looking forward to receiving invaluable data during the flight test."

At the Flight Test Readiness Review on Oct. 23, mission managers will finalize the launch date and provide the team with a final "go" or "no go" for launch. Ares I-X is an un-crewed, sub-orbital development test in a modified Ares I configuration. Ares I-X is the first developmental flight test of the Constellation Program, which includes the Ares I and V rockets, Orion and the Altair lunar lander.

For information about Ares I-X, visit:
http://www.nasa.gov/aresIX

For Ares Souvenirs visit the Spaceboosters Online Store

Thursday, 15 October 2009

Kepler and the Search for Life in Our Galaxy

There are so many stars in our galaxy that even if planets with complex life (animals and plants) are rare – say one for every billion stars – there could still be dozens here in the Milky Way. But we are just beginning to learn about worlds beyond our solar system, called exoplanets, so we really don't have a good idea of what the chances are for advanced life. That's where NASA's Kepler mission comes in.

Currently, we have only one example of complex life –- our own. So we have to use conditions that give rise to this kind of life when we go looking for it elsewhere in the Universe. Essential ingredients in the recipe for life as we know it include liquid water; an energy source, such as sunlight or chemicals from volcanic activity; and a supply of raw materials in the form of critical elements like carbon, oxygen, hydrogen, and nitrogen, to name just a few. The most likely places where all the ingredients will be present are rocky planets, like Earth, that are within the habitable zone of their parent stars.



This is an artist's impression of a Jupiter-sized planet passing in front of its parent star. Such events are called transits. When the planet transits the star, the star's apparent brightness drops slightly for a short period. Through this technique, astronomers can use Kepler to search for planets across the galaxy by measuring periodic changes in a star's luminosity. Credit: NASA/ESA/G. Bacon (STScI)

The habitable zone is where the temperature is just right for liquid water to exist on the surface of an exoplanet. If the planet is too close to its star, it will be too hot, and you'll end up with a world like Venus, where the oceans have boiled away. Too far away, however, and you get something like Mars, where most, if not all, of the water on the surface is frozen.

The Kepler mission seeks to detect Earth-like, i.e., rocky planets in our galaxy within the habitable zone of their parent stars, by looking for planetary transit events. These are situations where the planet passes in front of its star as seen from our point of view, slightly dimming the star's brightness. Since planetary transit events are fleeting, and it is unknown how common they may be, Kepler will continuously observe some 100,000 sun-like stars (in about 100 square degrees of the sky in the Cygnus region) for four years.

Observing planetary transits is challenging, because the brightness changes are exceedingly small. For example, Earth is about one-hundredth the diameter of the sun, so from an alien point of view, when Earth passes in front of the sun, it obscures only a tiny area on the solar disk -- just one ten-thousandth. An alien watching Earth transit the sun would see our star's brightness drop by just one part in ten thousand. We expect similar faint eclipses when searching for Earth-like planets around sun-like stars. To detect such tiny changes in brightness, Kepler will be able to observe a brightness change as small as one part in one hundred thousand.

Other challenges for Kepler are brightness changes that arise from a natural variation within the star itself, rather than from a transiting planet. If a brightness change repeats at regular intervals, it's more likely to be from an exoplanet, since its orbit will make it transit at the same periods. Scientists with the mission will need to see the same change at least twice before it's considered a possible exoplanet. Since the mission has a limited time to make its observations, if a transit takes more than a year to repeat, it will be difficult to confirm as an exoplanet.

NASA's TRACE satellite captured this image of Venus (black disk) crossing the face of the Sun in 2004 as seen from Earth orbit. Before that, the last event occurred in 1882. The next Venus transit will be visible in 2012. Credit: NASA
We can analyze a planetary transit event to discover basic characteristics of the planet. A large planet will block more starlight than a small one, so the size of the planet can be estimated by how much the star dims during the transit. A planet close to its star zips around it faster than one farther away, so the time between transits will give us an approximate distance of the planet from its star.
The planet will also tug at the star with its gravity. Much as the siren of a speeding ambulance changes pitch as it passes by – higher when it's moving closer, and lower when it's moving away -- this gravitational pull will cause the colors (spectrum) of the star's light to shift slightly – more blue if the star is moving toward us, more red if the star is moving away. Astronomers can observe this color shift with instruments that separate the star's light into its component colors, called its spectrum. By observing the amount of color shift in the star's spectrum, astronomers can get the mass of the planet relative to its parent star – more massive planets have a greater pull and will cause a larger color shift.
Most exoplanet detections so far have been made using this spectral shift. Such detections, however, tend to favor massive planets (about Jupiter’s size or larger). With current technology, it's extremely difficult to detect Earth-sized planets using this technique.
Kepler will also be used to make discoveries about the stars themselves. There are many stars that are binaries (double stars). These binaries may exhibit eclipses.
The Kepler mission data analysis program has a pipeline data processing that can discriminate the eclipsing binaries among the stars observed and will be analyzed accordingly. Binary stars, including cataclysmic variables (e.g., exploding stars such as novae) and intrinsic variable stars, including pulsating variables, that are observed with the Kepler satellite will present unprecedented opportunities to further astrophysical research.
The Kepler observatory was placed in an Earth-following orbit March 6, 2009. This mission has been conceived by William Borucki and Dave Koch of NASA Ames Research Center, Moffett Field, Calif., and developed at NASA Ames. Kepler is a NASA Discovery mission. NASA Ames is the home organization of the science principal investigator, and is responsible for the ground system development, mission operations and science data analysis. NASA's Jet Propulsion Laboratory, Pasadena, Calif. manages the Kepler mission development. Ball Aerospace & Technologies Corp. of Boulder, Colo., is responsible for developing the Kepler flight system and supporting mission operations.

Yoji Kondo, NASA Goddard Space Flight Center, Co-Investigator on the Kepler mission and Bill Steigerwald, NASA Goddard

Atlantis secured on Pad 39A

Atlantis is Secured at the Pad

At NASA’s Kennedy Space Center in Florida, space shuttle Atlantis is firmly secured to the fixed service structure pedestals at Launch Pad 39A. The 3.4-mile journey from the Vehicle Assembly Building to the launch pad began at 6:38 a.m. EDT and was completed at 1:31 p.m.

The pad's protective rotating service structure will be closed around the shuttle tonight, and launch pad teams will begin preparations to support Atlantis' targeted Nov. 12 launch at 4:04 p.m. EST.

The STS-129 astronauts are scheduled to fly to Kennedy on Oct. 19 to participate in the three-day Terminal Countdown Demonstration Test, or TCDT. This training gives the crew an opportunity to check the fit of their spacesuits, practice emergency evacuation procedures at the launch pad, review firefighting methods and participate in a simulated launch countdown.

For space souvenirs visit the SPACEBOOSTERS online store!

Wednesday, 14 October 2009

Cargo Ship Arrival at Space Station

NASA Television to Broadcast Cargo Ship Arrival at Space Station

HOUSTON -- The residents of the International Space Station will receive a new shipment of food, fuel and supplies at 8:41 p.m. CDT on Saturday, Oct. 17. NASA Television's coverage of the ship's arrival at the station will begin at 8:15 p.m. The Russian ISS Progress 35 cargo ship, filled with more than two tons of supplies for the station, is set to launch from the Baikonur Cosmodrome in Kazakhstan on Wednesday, Oct. 14 at 8:14 p.m. There will be no television coverage of the launch. Expedition 21 Commander Frank De Winne and Flight Engineers Jeff Williams, Nicole Stott, Roman Romanenko, Max Suraev and Bob Thirsk will observe the event from aboard the station as the unpiloted craft automatically docks to the station's Pirs Docking Compartment. For NASA Television streaming video, downlink and schedule information, visit:

http://www.nasa.gov/ntv

For more about the International Space Station, visit:

http://www.nasa.gov/station

For SpaceStation Souvenirs visit the SPACEBOOSTERS Online Store