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http://www.psrd.hawaii.edu/Aug11/Itokawa- particles.html Itokawa Samples Itokawa Samples The JAXA Hayabusa spacecraft collected samples by touching down on the 500-meter long asteroid Itokawa. Itokawa particles (largest was 300 m) were collected using (A) an electrostatic needle, (B) a Teflon spatula, and (C) by thumping the container and collecting grains on a pure-silica glass slide.

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Page 1: Http:// Itokawa SamplesItokawa Samples The JAXA Hayabusa spacecraft collected samples by touching down

http://www.psrd.hawaii.edu/Aug11/Itokawa-particles.html

Itokawa SamplesItokawa Samples

The JAXA Hayabusa spacecraft collected samples by touching down on the 500-meter long asteroid Itokawa.

Itokawa particles (largest was 300 m) were collected using(A) an electrostatic needle, (B) a Teflon spatula, and (C) by thumping the container and collecting grains on a pure-silica glass slide.

Page 2: Http:// Itokawa SamplesItokawa Samples The JAXA Hayabusa spacecraft collected samples by touching down

http://www.psrd.hawaii.edu/Aug11/Itokawa-particles.html

Composition is Like an LL ChondriteComposition is Like an LL Chondrite

Compositions of olivine (Fa) and pyroxene (Fs) in dust grains from Itokawa plot in the middle of the field defined by LL ordinary chondrites. Most are highly equilibrated, and also plot in the LL field.Identification as LL chondrite shows that S-asteroids, such as Itokawa, are composed of ordinary chondritic material, not differentiated rock.

Page 3: Http:// Itokawa SamplesItokawa Samples The JAXA Hayabusa spacecraft collected samples by touching down

http://www.psrd.hawaii.edu/Aug11/Itokawa-particles.html

Space Weathering on ItokawaSpace Weathering on Itokawa

The surfaces of many grains from Itokawa show amorphous silica-rich deposits caused by space weathering. Regions identified in TEM imaging:I.Amorphous silicate with nanophase iron sulfide grainsII.Partially amorphous region enriched in nanophase metallic iron grainsIII.Unaltered parent mineral (in this case, pyroxene)