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Chemical solver to compute molecule and grain abundances and non-ideal MHD resistivities in prestellar core-collapse calculations ?
P. Marchand, J. Masson, G. Chabrier, P. Hennebelle, B. Commercon, N. Vaytet
Astrophysics and Planetary Science
31
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Dive into the research topics of 'Chemical solver to compute molecule and grain abundances and non-ideal MHD resistivities in prestellar core-collapse calculations ?'. Together they form a unique fingerprint.
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Physics & Astronomy
electrical resistivity
74%
hydrodynamics
67%
molecules
63%
ionization
62%
ambipolar diffusion
39%
free fall
38%
thermionic emission
34%
chemical equilibrium
31%
potassium
29%
Hall effect
27%
cosmic rays
26%
sodium
26%
dust
24%
differential equations
23%
evaporation
22%
hydrogen
18%
simulation
11%
temperature
8%
Earth & Environmental Sciences
electrical resistivity
100%
ionization
86%
hydrodynamics
68%
calculation
63%
chemical
58%
cosmic ray
33%
potassium
25%
evaporation
23%
hydrogen
22%
sodium
22%
dust
21%
timescale
21%
rate
19%
simulation
12%
temperature
11%
effect
6%