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J/ApJS/205/9
367
Rotational transition frequencies of HCOOCH
3
(Kobayashi+, 2013)
ReadMe+ftp
2013ApJS..205....9K
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1.
J/ApJS/205/9/table3
Pure rotational A-sublevel transition frequencies of cis-methyl formate in v
t
=2 analyzed by using Watson's A-reduced Hamiltonian (Equation (5))
(1012 rows)
meta
J/ApJS/205/9/table3
Simple Constraint
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Constraint
Explain
(
UCD
)
recno
Record number assigned by the VizieR team. Should Not be used for identification.
(
meta.record
)
(
RECORD
)
J'
[2/35] The upper J quantum number
(
instr.det.qe;stat.max
)
(
AT_Q-N_ANG-MOM
)
Ka'
[0/13] The upper Ka quantum number
(
phys.atmol.qn;stat.max
)
(
AT_Q-N_ROTATIONAL
)
Kc'
[0/35] The upper Kc quantum number
(
phys.atmol.qn;stat.max
)
(
AT_Q-N_ROTATIONAL
)
J"
[1/34] The lower J quantum number
(
instr.det.qe;stat.min
)
(
AT_Q-N_ANG-MOM
)
Ka"
[0/13] The lower Ka quantum number
(
phys.atmol.qn;stat.min
)
(
AT_Q-N_ROTATIONAL
)
Kc"
[0/34] The lower Kc quantum number
(
phys.atmol.qn;stat.min
)
(
AT_Q-N_ROTATIONAL
)
Freq
MHz
[-108498.4/378357.1] The experimental frequency of the transition
(
em.freq;phys.atmol.transition
)
(
OBS_FREQUENCY
)
O-C
MHz
[-0.28/0.244] The observed minus calculated value
(
stat.fit.residual
)
(
FIT_RESIDUAL
)
El
cm-1
[0.4105/217.274] The lower state energy
(Note G1)
(
phys.energy;phys.atmol.level
)
(
AT_ENERGY_LEVEL
)
Smu2
D+2
[0.09/90.1] The line strength (see equation (6))
(
spect.line.intensity
)
(
AT_LINE_STRENGTH
)
Ref
(char)
The source of measurement
(Note G2)
(
meta.bib
)
(
REFER_CODE
)
all
Frequencies for this transition from the different methods
(
meta.ref.url
)
(
DATA_LINK
)
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