Metals relative abundances |$\tilde{z}_i^{\rm p}$| used for the accreted mattera.
|$\tilde{z}_i^{\rm p}\equiv X_i^{\rm p}/Z^{\rm p}$| . | |||||
---|---|---|---|---|---|
Elem. . | AS09 . | JK10 . | Elem. . | AS09 . | JK10 . |
C | 0.176 99 | 0.0 | Cl | 0.000 61 | 0.0 |
N | 0.051 85 | 0.0 | Ar | 0.005 49 | 0.0 |
O | 0.429 02 | 0.310 96 | K | 0.000 22 | 0.0 |
Ne | 0.094 03 | 0.0 | Ca | 0.004 80 | 0.008 63 |
Na | 0.002 19 | 0.0 | Ti | 0.000 23 | 0.000 50 |
Mg | 0.052 97 | 0.130 40 | Cr | 0.001 24 | 0.003 61 |
Al | 0.004 16 | 0.008 63 | Mn | 0.000 81 | 0.0 |
Si | 0.049 76 | 0.189 58 | Fe | 0.096 69 | 0.329 02 |
P | 0.000 43 | 0.0 | Ni | 0.005 33 | 0.018 67 |
S | 0.023 14 | 0.0 |
|$\tilde{z}_i^{\rm p}\equiv X_i^{\rm p}/Z^{\rm p}$| . | |||||
---|---|---|---|---|---|
Elem. . | AS09 . | JK10 . | Elem. . | AS09 . | JK10 . |
C | 0.176 99 | 0.0 | Cl | 0.000 61 | 0.0 |
N | 0.051 85 | 0.0 | Ar | 0.005 49 | 0.0 |
O | 0.429 02 | 0.310 96 | K | 0.000 22 | 0.0 |
Ne | 0.094 03 | 0.0 | Ca | 0.004 80 | 0.008 63 |
Na | 0.002 19 | 0.0 | Ti | 0.000 23 | 0.000 50 |
Mg | 0.052 97 | 0.130 40 | Cr | 0.001 24 | 0.003 61 |
Al | 0.004 16 | 0.008 63 | Mn | 0.000 81 | 0.0 |
Si | 0.049 76 | 0.189 58 | Fe | 0.096 69 | 0.329 02 |
P | 0.000 43 | 0.0 | Ni | 0.005 33 | 0.018 67 |
S | 0.023 14 | 0.0 |
Note.aThe |$\tilde{z}_i^{\rm p}$| mass abundances have been re-normalized to sum to unity.
Metals relative abundances |$\tilde{z}_i^{\rm p}$| used for the accreted mattera.
|$\tilde{z}_i^{\rm p}\equiv X_i^{\rm p}/Z^{\rm p}$| . | |||||
---|---|---|---|---|---|
Elem. . | AS09 . | JK10 . | Elem. . | AS09 . | JK10 . |
C | 0.176 99 | 0.0 | Cl | 0.000 61 | 0.0 |
N | 0.051 85 | 0.0 | Ar | 0.005 49 | 0.0 |
O | 0.429 02 | 0.310 96 | K | 0.000 22 | 0.0 |
Ne | 0.094 03 | 0.0 | Ca | 0.004 80 | 0.008 63 |
Na | 0.002 19 | 0.0 | Ti | 0.000 23 | 0.000 50 |
Mg | 0.052 97 | 0.130 40 | Cr | 0.001 24 | 0.003 61 |
Al | 0.004 16 | 0.008 63 | Mn | 0.000 81 | 0.0 |
Si | 0.049 76 | 0.189 58 | Fe | 0.096 69 | 0.329 02 |
P | 0.000 43 | 0.0 | Ni | 0.005 33 | 0.018 67 |
S | 0.023 14 | 0.0 |
|$\tilde{z}_i^{\rm p}\equiv X_i^{\rm p}/Z^{\rm p}$| . | |||||
---|---|---|---|---|---|
Elem. . | AS09 . | JK10 . | Elem. . | AS09 . | JK10 . |
C | 0.176 99 | 0.0 | Cl | 0.000 61 | 0.0 |
N | 0.051 85 | 0.0 | Ar | 0.005 49 | 0.0 |
O | 0.429 02 | 0.310 96 | K | 0.000 22 | 0.0 |
Ne | 0.094 03 | 0.0 | Ca | 0.004 80 | 0.008 63 |
Na | 0.002 19 | 0.0 | Ti | 0.000 23 | 0.000 50 |
Mg | 0.052 97 | 0.130 40 | Cr | 0.001 24 | 0.003 61 |
Al | 0.004 16 | 0.008 63 | Mn | 0.000 81 | 0.0 |
Si | 0.049 76 | 0.189 58 | Fe | 0.096 69 | 0.329 02 |
P | 0.000 43 | 0.0 | Ni | 0.005 33 | 0.018 67 |
S | 0.023 14 | 0.0 |
Note.aThe |$\tilde{z}_i^{\rm p}$| mass abundances have been re-normalized to sum to unity.
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