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OP Computations of radiative accelerations
Mass-Fractions
Metal Fractional Composition (default = solar)
Hydrogen Mass-Fraction (X)
Metal Mass-Fraction (Z)
Note: metal abundances are re-normalised to the value of Z which has been set --- it is necessary to specify only the relative abundance for each metal.
C (Z=6)
N (Z=7)
O (Z=8)
Ne (Z=10)
Na (Z=11)
Mg (Z=12)
Al (Z=13)
Si (Z=14)
S (Z=16)
Ar (Z=18)
Ca (Z=20)
Cr (Z=24)
Mn (Z=25)
Fe (Z=26)
Ni (Z=28)
Output options
Please choose ONE of the following output options:
An intermediate file containing radiative acceleration data for a selected element and a range of its abundance multiplier (χ) to be used locally for interpolation with the code
accfit.tar.gz
log
10
(χ) range
Selected element
Initial
Interval
No. points
C (Z=6)
N (Z=7)
O (Z=8)
Ne (Z=10)
Na (Z=11)
Mg (Z=12)
Al (Z=13)
Si (Z=14)
S (Z=16)
Ar (Z=18)
Ca (Z=20)
Cr (Z=24)
Mn (Z=25)
Fe (Z=26)
Ni (Z=28)
1
2
3
4
5
6
7
8
9
10
Radiative accelerations, RMOs, and diffusion coefficients for a selected element, a range of its abundance multiplier (χ) and a stellar model (
T
eff
and depth profile {log
10
(
T
) , log
10
(ρ), r/R*}).
log
10
(χ) range
Selected element
Initial
Interval
No. points
T
eff
C (Z=6)
N (Z=7)
O (Z=8)
Ne (Z=10)
Na (Z=11)
Mg (Z=12)
Al (Z=13)
Si (Z=14)
S (Z=16)
Ar (Z=18)
Ca (Z=20)
Cr (Z=24)
Mn (Z=25)
Fe (Z=26)
Ni (Z=28)
1
2
3
4
5
6
7
8
9
10
Please introduce local file with depth profile
(see
example
)
Home
The Opacity Project
The Iron Project
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