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LOCAL SIMULATIONS OF INSTABILITIES DRIVEN BY COMPOSITION GRADIENTS IN THE ICM
Thomas Berlok,
Martin E. Pessah
Astrophysics and Planetary Science
Niels Bohr International Academy
5
Citations (Scopus)
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Dive into the research topics of 'LOCAL SIMULATIONS OF INSTABILITIES DRIVEN BY COMPOSITION GRADIENTS IN THE ICM'. Together they form a unique fingerprint.
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Physics & Astronomy
gradients
83%
helium
50%
simulation
49%
permeating
32%
magnetic fields
32%
collisional plasmas
29%
turbulent mixing
26%
magnetohydrodynamic stability
26%
sediments
26%
high temperature plasmas
24%
profiles
23%
gravitational fields
21%
inclination
20%
insulation
20%
galaxies
15%
radii
13%
temperature
6%
Earth & Environmental Sciences
plasma
100%
helium
69%
magnetic field
56%
simulation
56%
turbulent mixing
25%
insulation
24%
code
16%
temperature
16%
distribution
15%
cooling
15%
effect
15%
measuring
14%
sediment
10%
test
8%
parameter
7%