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Chondrule Formation in Radiative Shock
T. V. Ruzmaikina,
W. H. Ip
Graduate Institute of Astronomy
Research output
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Contribution to journal
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Article
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peer-review
39
Scopus citations
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Physics & Astronomy
chondrule
100%
shock
47%
solar nebula
43%
melting
23%
gases
23%
gas cooling
21%
cooling
20%
drag
14%
radii
14%
interfacial tension
13%
dust
12%
kinetic energy
12%
compressed gas
10%
collisions
9%
augmentation
9%
shock fronts
9%
gas density
8%
coolers
8%
thermal radiation
8%
dipoles
5%
Earth & Environmental Sciences
chondrule
80%
gas
31%
cooling
26%
melting
18%
surface tension
12%
kinetic energy
11%
drag
11%
accretion
11%
collision
10%
dust
9%
melt
8%
timescale
8%
rate
6%