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result(s) for
"Asteroids"
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Target Earth : meteorites, asteroids, comets, and other cosmic intruders that may threaten our planet
by
Schilling, Govert, author
,
Hedges, Marilyn, translator
in
Asteroids Collisions with Earth.
,
Impact craters.
,
Near-earth asteroids.
2025
\"An asteroid impact led to the extinction of the dinosaurs. Will another cosmic missile soon be heading our way? Govert Schilling offers a guide to the projectiles that have targeted our planet\"-- Provided by publisher.
Impact! : asteroids and the science of saving the world
by
Rusch, Elizabeth, author
,
Anderson, Karin, illustrator
in
Asteroids Collisions with Earth Juvenile literature.
,
Asteroids Juvenile literature.
,
Meteorites Juvenile literature.
2017
\"Asteroids come in all shapes and sizes--and hit our planet in them, too. But what happens if a catastrophically large one approaches earth? By looking on the ground at historical asteroid craters and present-day falls, and up into space for the big ones yet to come, a wide variety of scientists are trying to figure out how to track asteroids--and how to avoid devastating impacts in the future.\"-- Provided by publisher.
The unexpected surface of asteroid (101955) Bennu
2019
NASA’S Origins, Spectral Interpretation, Resource Identification and Security-Regolith Explorer (OSIRIS-REx) spacecraft recently arrived at the near-Earth asteroid (101955) Bennu, a primitive body that represents the objects that may have brought prebiotic molecules and volatiles such as water to Earth1. Bennu is a low-albedo B-type asteroid2 that has been linked to organic-rich hydrated carbonaceous chondrites3. Such meteorites are altered by ejection from their parent body and contaminated by atmospheric entry and terrestrial microbes. Therefore, the primary mission objective is to return a sample of Bennu to Earth that is pristine—that is, not affected by these processes4. The OSIRIS-REx spacecraft carries a sophisticated suite of instruments to characterize Bennu’s global properties, support the selection of a sampling site and document that site at a sub-centimetre scale5,6,7,8,9,10,11. Here we consider early OSIRIS-REx observations of Bennu to understand how the asteroid’s properties compare to pre-encounter expectations and to assess the prospects for sample return. The bulk composition of Bennu appears to be hydrated and volatile-rich, as expected. However, in contrast to pre-encounter modelling of Bennu’s thermal inertia12 and radar polarization ratios13—which indicated a generally smooth surface covered by centimetre-scale particles—resolved imaging reveals an unexpected surficial diversity. The albedo, texture, particle size and roughness are beyond the spacecraft design specifications. On the basis of our pre-encounter knowledge, we developed a sampling strategy to target 50-metre-diameter patches of loose regolith with grain sizes smaller than two centimetres4. We observe only a small number of apparently hazard-free regions, of the order of 5 to 20 metres in extent, the sampling of which poses a substantial challenge to mission success.
Journal Article