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Technique reveals age of planetary materials

Date:
January 20, 2015
Source:
Wiley
Summary:
The key to understanding the geologic history of the Solar System is knowing the ages of planetary rocks. Researchers have developed an instrument that is not only capable of dating rocks, but also is composed entirely of technology that can be miniaturized for spaceflight.
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The key to understanding the geologic history of the Solar System is knowing the ages of planetary rocks. Researchers have developed an instrument that is not only capable of dating rocks, but also is composed entirely of technology that can be miniaturized for spaceflight.

As detailed in Rapid Communications in Mass Spectrometry, they validated the instrument--a laser ablation resonance ionization mass spectrometer--by dating a rock from Mars: the meteorite Zagami, which formed about 180 million years ago, and fell to Earth in 1962.

"The beauty of the technique is that it requires little sample preparation, and the instrument is small and fast, making it appropriate for use by NASA and in field environments here on Earth," said lead author Dr. F. Scott Anderson. "Furthermore, in addition to obtaining dates, the instrument can simultaneously provide geochemistry measurements and provide high-sensitivity detection of organics."


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Journal Reference:

  1. F. Scott Anderson, Jonathan Levine, Tom J. Whitaker. Dating the Martian meteorite Zagami by the87Rb-87Sr isochron method with a prototypein situresonance ionization mass spectrometer. Rapid Communications in Mass Spectrometry, 2015; 29 (2): 191 DOI: 10.1002/rcm.7095

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Wiley. "Technique reveals age of planetary materials." ScienceDaily. ScienceDaily, 20 January 2015. <www.sciencedaily.com/releases/2015/01/150120142809.htm>.
Wiley. (2015, January 20). Technique reveals age of planetary materials. ScienceDaily. Retrieved November 16, 2024 from www.sciencedaily.com/releases/2015/01/150120142809.htm
Wiley. "Technique reveals age of planetary materials." ScienceDaily. www.sciencedaily.com/releases/2015/01/150120142809.htm (accessed November 16, 2024).

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