Mars Exploration News  
Catalina Sky Survey Rocks Mars With New Asteroid Discovery

Frame from Catalina Sky Survey that found the asteroid designated as 2007 WD5.
by Staff Writers
Tucson AZ (SPX) Dec 24, 2007
An asteroid discovered by The University of Arizona's Catalina Sky Survey has a one-in-75 chance of hitting Mars Jan. 30, scientists tracking it say. Catalina Sky Survey team member Andrea Boattini discovered the asteroid, designated 2007 WD5, with UA's Mount Lemmon 60-inch telescope in the Santa Catalina Mountains north of Tucson on Nov. 20.

At the time, the asteroid was at 20th magnitude brightness, which is about 400,000 times fainter than the faintest object most people can see with their naked eye on a dark night, survey team member Ed Beshore said. The asteroid is now 16 times dimmer than it was when it was discovered, he added.

Astronomers monitoring the trajectory of the asteroid estimate it to be 164-feet wide. Observations provided by the astronomers and analyzed by NASA's Near-Earth Object Office at the Jet Propulsion Laboratory in Pasadena, Calif., indicate the object may pass within 30,000 miles of Mars at about 6 a.m. EST on Jan. 30, 2008.

The Mars-approaching asteroid is about the size of the object that blasted out Meteor Crater, Ariz., 50,000 years ago. The object that created Meteor Crater is believed to be a metallic asteroid - more like a ball bearing that a rock, Beshore said. The newly found Mars-approaching asteroid is probably a stony asteroid, as are most asteroids, Beshore said.

Scientists calculate it is traveling at eight miles a second, or 15 times faster than a rifle bullet, he added.

Asteroid 2007 WD5 is also being compared to the object that exploded over Tunguska, Siberia, with the energy of a three megaton bomb in 1908. The Tunguska object is believed to be the midair explosion of a cometary fragment, Beshore said.

In the unlikely event that 2007 WD5 does hit Mars, it would hit somewhere within a broad swath across the planet north of where the Opportunity rover is, according to NASA.

"We estimate such impacts occur on Mars every thousand years or so," Steve Chesley, an astronomer with the Near Earth Object Program at NASA's Jet Propulsion Laboratory, said in a NASA news release. "If 2007 WD5 were to thump Mars on Jan. 30, we calculate it would hit at about 30,000 miles per hour and might create a crater more than a half-a-mile wide."

The Mars Reconnaissance Orbiter, which is mapping the planet, would have a front-row seat, Chesley added.

The orbiter's science payload includes the High Resolution Imaging Experiment, or HiRISE, which operates the most powerful camera ever to orbit another planet.

"If the asteroid hits Mars we'll get a great look at the crater within a few days of impact," HiRISE principal investigator Alfred S. McEwen of UA's Lunar and Planetary Laboratory said.

HiRISE images of recent Martian impact craters can be found on the HiRISE Website, http://hirise.lpl.arizona.edu

The Catalina Sky Survey broke all records for discoveries of near-Earth objects, or NEOs, for any NEO survey this year. The survey found 450 NEOs in 2007, although that number will rise slightly when the final count is in, Beshore said. That tops its ealier record 400 NEO discoveries in 2006 and record 310 NEO discoveries in 2005.

The team's growing success in making NEO discoveries reflects that the survey continues to improve its technique and technologies, said the Lunar and Planetary Laboratory's Steve Larson, Catalina Sky Survey director.

The Catalina Sky Survey, known as the CSS, is conducted in the northern hemisphere by the Mount Lemmon Survey north of Tucson, Ariz., and in the southern hemisphere by the Siding Spring Survey near Coonabarabran, New South Wales, Australia.

CSS is one of four surveys funded by NASA to carry out a U.S. congressional mandate to find and catalog at least 90 percent of all near-Earth objects, larger than one kilometer across (six-tenths mile) by the end of 2008.

The impact of a kilometer-diameter asteroid would have global consequences to civilization as we know it, Larson said. If an object even a third as large hit Earth, it would explode with 24 times the energy of the world's largest thermonuclear bomb explosion, a 58 megaton Soviet bomb exploded in 1961.

The technology to detect and track these objects has been available for only a decade, and although impacts of these large NEOs are rare, we can for the first time quantify any potential danger as the first step in possibly mitigating a disaster, he said.

Community
Email This Article
Comment On This Article

Related Links
Catalina Sky Survey
NEO at JPL
HiRISE at LPL
Mars News and Information at MarsDaily.com
Lunar Dreams and more



Memory Foam Mattress Review
Newsletters :: SpaceDaily :: SpaceWar :: TerraDaily :: Energy Daily
XML Feeds :: Space News :: Earth News :: War News :: Solar Energy News


Global Map Reveals Mineral Distribution On Mars
Laurel, MD (SPX) Dec 24, 2007
Scientists are getting a clearer image of mineral distribution on the surface of Mars, thanks to the Compact Reconnaissance Imaging Spectrometer for Mars (CRISM), one of six science instruments on NASA's Mars Reconnaissance Orbiter, currently circling the planet. More than 200 just-released "spectral maps" reveal the distribution of various minerals on the surface of Mars -- the first installment of the Global Mars Map, which will eventually cover the entire planet.









  • Nuclear Power In Space - Part 2
  • Nuclear Power In Space
  • Outside View: Nuclear future in space
  • Could NASA Get To Pluto Faster? Space Expert Says Yes - By Thinking Nuclear

  • India And Russia Begin Talks On Chandrayaan-II
  • Soyuz-FG Carrier Rocket Puts Canadian Satellite Into Orbit
  • KAGUYA (SELENE) Observations Using The Spectral Profiler
  • India installs antennas for planned moon mission: official

  • SPACEHAB Announces Successful ARCTUS Mid-Air Recovery Test
  • Russia To Launch Space Base For Missions To Moon And Mars After 2020
  • Final Preparations For First Human-Rated Spacecraft To Be Launched From Europe's Spaceport
  • Russia Soon To View Two Space Transport Projects

  • The PI's Perspective: Autumn 2007: Onward to the Kuiper Belt
  • Data For The Next Generations
  • Goddard Instrument Makes Cover Of Science
  • Checking Out New Horizons

  • Return To Europa: A Closer Look Is Possible
  • Rethinking Jupiter
  • Jovian Magnetosphere Circulates Magnetic Field Very Differently From Earth
  • New Horizons' SWAP instrument Reveals Complex Structure, Diverse Plasma Populations In Jupiter's Magnetotail

  • The Unexpected Temperature Profile Of Venus's Atmosphere
  • The Restless Atmosphere Of Venus
  • The Venusian Climate And Its Evolution
  • Earth-like Venus

  • Hot Spot On Enceladus Causes Plumes
  • Planetary Scientists Close In On Saturn' Elusive Rotation
  • Cassini Captures Best View Yet Of Saturn's Ring Currents
  • Saturn Rings May Be Old Timers

  • Efficiency Of Satellite Telecommunications For Civil Protection Agencies
  • Russia And France Developing New Satellite Platform
  • Light Is Shed On New Fibre's Potential To Change Technology
  • MIT Creates New Oil-Repelling Material

  • The content herein, unless otherwise known to be public domain, are Copyright 1995-2007 - SpaceDaily.AFP and UPI Wire Stories are copyright Agence France-Presse and United Press International. ESA Portal Reports are copyright European Space Agency. All NASA sourced material is public domain. Additional copyrights may apply in whole or part to other bona fide parties. Advertising does not imply endorsement,agreement or approval of any opinions, statements or information provided by SpaceDaily on any Web page published or hosted by SpaceDaily. Privacy Statement