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Simple Target
List Of Targets
Fast Xmatch with large catalogs or Simbad
Target
Name (resolved by
Sesame
) or
Position
:
J2000
B1975
B1950
B1900
B1875
B1855
Galactic
Supergal.
Ecl.J2000
Target dimension:
deg
arcmin
arcsec
NB: The epoch used for the query is the original epoch of the table(s)
Radius
Box size
J/ApJ/715/1050
1712
Predicted abundances for extrasolar planets. I. (Bond+, 2010)
ReadMe+ftp
2010ApJ...715.1050B
Similar Catalogs
Post annotation
1.
J/ApJ/715/1050/stars
(c)
Host target stars properties (tables 7 and 8 of the paper)
(10 rows)
meta
J/ApJ/715/1050/stars
2.
J/ApJ/715/1050/table10
Predicted bulk elemental abundances for all simulated extrasolar terrestrial planets
(497 rows)
meta
J/ApJ/715/1050/table10
Simple Constraint
List Of Constraints
Query by
Constraints
applied on Columns
(
Output Order:
+
-
)
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join
Column
Constraint
Explain
(
UCD
)
(ALL)
recno
Record number assigned by the VizieR team. Should Not be used for identification.
(
meta.record
)
(
RECORD
)
(ALL)
Star
(char)
(i)
Star name
(
meta.id;meta.main
)
(
ID_MAIN
)
(1)
Mass
Msun
Stellar mass from CDS database
(
phys.mass
)
(
PHYS_MASS_MISC
)
(1)
dM/dT
Msun/yr
Stellar mass accretion (see section 3.2)
(
phys.mass.loss
)
(
PHYS_MASS_LOSS
)
(1)
Teff
K
Effective temperature from Santos et al. 2004, Cat.
J/A+A/415/1153
(
phys.temperature.effective
)
(
PHYS_TEMP_EFFEC
)
(1)
Mcz
Msun
Convective zone mass from Pinsonneault et al.
2001ApJ...556L..59P
; see section 3.5
(
phys.mass
)
(
PHYS_MASS_MISC
)
(1)
SimbadName
(char)
Designation understandable by the
Simbad
data-base
(
meta.id
)
(
ID_ALTERNATIVE
)
(1)
_RA
deg
(i)
Positions from SIMBAD database (right ascension part)
(
pos.eq.ra;meta.main
)
(
POS_EQ_RA_MAIN
)
(1)
_DE
deg
(i)
Positions from SIMBAD database (declination part)
(
pos.eq.dec;meta.main
)
(
POS_EQ_DEC_MAIN
)
(2)
Time
Myr
Evolutionary time (see section 3.2)
(
time.age
)
(
TIME_EVOLUTION
)
(2)
Pl
(char)
Simulated planet
(Note 2)
(
phys.abund
)
(
PHYS_ABUND_MISC
)
ALL
cols
(i)
indexed column
(2)
H
%
Predicted bulk hydrogen abundance
(Note 3)
(
phys.abund
)
(
PHYS_ABUND_MISC
)
(2)
Mg
%
Predicted bulk magnesium abundance
(Note 3)
(
phys.abund
)
(
PHYS_ABUND_MISC
)
(2)
O
%
Predicted bulk oxygen abundance
(Note 3)
(
phys.abund
)
(
PHYS_ABUND_MISC
)
(2)
S
%
Predicted bulk sulfur abundance
(Note 3)
(
phys.abund
)
(
PHYS_ABUND_MISC
)
(2)
Fe
%
Predicted bulk iron abundance
(Note 3)
(
phys.abund
)
(
PHYS_ABUND_MISC
)
(2)
Al
%
Predicted bulk aluminium abundance
(Note 3)
(
phys.abund
)
(
PHYS_ABUND_MISC
)
(2)
Ca
%
Predicted bulk calcium abundance
(Note 3)
(
phys.abund
)
(
PHYS_ABUND_MISC
)
(2)
Na
%
Predicted bulk sodium abundance
(Note 3)
(
phys.abund
)
(
PHYS_ABUND_MISC
)
(2)
Ni
%
Predicted bulk nickel abundance
(Note 3)
(
phys.abund
)
(
PHYS_ABUND_MISC
)
(2)
Cr
%
Predicted bulk chromium abundance
(Note 3)
(
phys.abund
)
(
PHYS_ABUND_MISC
)
(2)
P
%
Predicted bulk phosphorus abundance
(Note 3)
(
phys.abund
)
(
PHYS_ABUND_MISC
)
(2)
Ti
%
Predicted bulk titanium abundance
(Note 3)
(
phys.abund
)
(
PHYS_ABUND_MISC
)
(2)
Si
%
Predicted bulk silicon abundance
(Note 3)
(
phys.abund
)
(
PHYS_ABUND_MISC
)
(2)
N
%
Predicted bulk nitrogen abundance
(Note 3)
(
phys.abund
)
(
PHYS_ABUND_MISC
)
(2)
C
%
Predicted bulk carbon abundance
(Note 3)
(
phys.abund
)
(
PHYS_ABUND_MISC
)
ALL
cols
(i)
indexed column
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https://cdsannotations.u-strasbg.fr/annotations/vizierTable//
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