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PASSPORT TO KNOWLEDGE - To MARS with MER
Spirit goes out for a "Sunday drive" and Opportunity is closing in!
Spirit goes out for a "Sunday drive" and Opportunity is closing in... The adventure continues!
Now Spirit is truly a rover, after putting the first meters on its odometer and cruising over to Adirondack, the first rock chosen for close-up study. Check out the animation from the Latest images link below, right, to see for yourself the rover's first short jaunt on Mars.
Meanwhile, last weekend, Opportunity's trajectory was fine tuned to take it to Meridiani Planum, on the other side of the planet. Engineers and managers are working hard to incorporate all the data learned from Spirit's landing to make final adjustments about how high to open the parachute, and just when to fire the rockets, in order to make this second Entry, Descent and Landing as safe as possible. They hope that Spirit's success means there's no design flaw in the basic spacecraft, but still some "sharp, pointy rock", as Steve Squyres says in P2K's BOUNCING TO MARS, or some change in the Martian weather, could make Opportunity's landing even more risky. Stay tuned for all the latest!
Last Saturday also saw P2K's live FIRST LOOK special. Unfortunately NASA-TV did not carry the program as scheduled (we always indicated NTV might pre-empt), but many PBS stations did air FIRST LOOK live, or tape for future replays. However, FIRST LOOK will appear in the Education File. You can also check out the archived web version in the near future. (See WATCH THE VIDEOS, View Now.) The Houston Museum of Natural Science was packed with 3,000 enthusiastic youngsters and their families, and a good time was had by "kids of all ages", in the words of host, Bill Nye the Science Guy. Though rain dampened egg-drop parachutes, and the sundial was cloudy, Houston area youngsters got questions answered by Mars Exploration Rover team members at JPL. More than 600 people also gathered in Brownsville, mentored by NASA JSC educators: thanks to all P2K's partners in Houston, Brownsville and NASA JPL, and especially to Cathy Weitz, Nagin Cox, Zoe Learner, Donna Shirley, Orlando Figueroa, Steve Squyres, Wayne Lee, Kobie Boykins and Stephenie Lievense, who took time away from rest and sleep to appear on camera. Along with breakthrough science and engineering, we're delighted to find NASA and JPL so supportive of education and outreach.
Check out the latest press releases, browse Steve Squyres' recent Journals, and think good thoughts for the ongoing adventures of Spirit and Opportunity.
NASA Mars Rover's First Soil Analysis Yields Surprises
January 20, 2004
The first use of the tools on the arm of NASA's Mars Exploration Rover Spirit reveals puzzles about the soil it examined and raises anticipation about what the tool will find during its studies of a martian rock.
Today and overnight tonight, Spirit is using its microscope and two up-close spectrometers on a football-sized rock called Adirondack, said Jennifer Trosper, mission manager at NASA's Jet Propulsion Laboratory, Pasadena, Calif.
Image Credit: NASA/JPL/Cornell University
"We're really happy with the way the spacecraft continues to work for us," Trosper said. The large amount of data -- nearly 100 megabits -- transmitted from Spirit in a single relay session through NASA's Mars Odyssey spacecraft today "is like getting an upgrade to our Internet connection."
Scientists today reported initial impressions from using Spirit's alpha particle X-ray spectrometer, Moessbauer spectrometer and microscopic imager on a patch of soil that was directly in front of the rover after Spirit drove off its lander Jan. 15.
"We're starting to put together a picture of what the soil at this particular place in Gusev Crater is like. There are some puzzles and there are surprises," said Dr. Steve Squyres of Cornell University, Ithaca, N.Y., principal investigator for the suite of instruments on Spirit and on Spirit's twin, Opportunity.
One unexpected finding was the Moessbauer spectrometer's detection of a mineral called olivine, which does not survive weathering well. This spectrometer identifies different types of iron-containing minerals; scientists believe many of the minerals on Mars contain iron. "This soil contains a mixture of minerals, and each mineral has its own distinctive Moessbauer pattern, like a fingerprint," said Dr. Goestar Klingelhoefer of Johannes Gutenberg University, Mainz, Germany, lead scientist for this instrument.
The lack of weathering suggested by the presence of olivine might be evidence that the soil particles are finely ground volcanic material, Squyres said. Another possible explanation is that the soil layer where the measurements were taken is extremely thin, and the olivine is actually in a rock under the soil.
Scientists were also surprised by how little the soil was disturbed when Spirit's robotic arm pressed the Moessbauer spectrometer's contact plate directly onto the patch being examined. Microscopic images from before and after that pressing showed almost no change. "I thought it would scrunch down the soil particles," Squyres said. "Nothing collapsed. What is holding these grains together?"
Information from another instrument on the arm, an alpha particle X- ray spectrometer, may point to an answer. This instrument "measures X-ray radiation emitted by Mars samples, and from this data we can derive the elemental composition of martian soils and rocks," said Dr. Johannes Brueckner, rover science team member from the Max Planck Institute for Chemistry, Mainz, Germany. The instrument found the most prevalent elements in the soil patch were silicon and iron. It also found significant levels of chlorine and sulfur, characteristic of soils at previous martian landing sites but unlike soil composition on Earth.
Squyres said, "There may be sulfates and chlorides binding the little particles together." Those types of salts could be left behind by evaporating water, or could come from volcanic eruptions, he said. The soil may not have even originated anywhere near Spirit's landing site, because Mars has dust storms that redistribute fine particles around the planet. The next target for use of the rover's full set of instruments is a rock, which is more likely to have originated nearby.
Spirit landed in the Connecticut-sized Gusev Crater on Jan. 3 (EST and PST; Jan. 4 Universal Time). In coming weeks and months, according to plans, it will examine rocks and soil for clues about whether the past environment there was ever watery and possibly suitable to sustaining life. Spirit's twin Mars Exploration Rover, Opportunity, will reach Mars on Jan. 25 (EST and Universal Time; 9:05 p.m., Jan. 24, PST) to begin a similar examination of a site on the opposite side of the planet.
JPL, a division of the California Institute of Technology in Pasadena, manages the Mars Exploration Rover project for NASA's Office of Space Science, Washington, D.C. Images and additional information about the project are available from JPL at http://marsrovers.jpl.nasa.gov and from Cornell University, Ithaca, N.Y., at http://athena.cornell.edu .