SIMPLE = T / Fits standard BITPIX = -32 / Bits per pixel NAXIS = 0 / Number of axes EXTEND = T / File may contain extensions ORIGIN = 'NOAO-IRAF FITS Image Kernel July 1999' / FITS file originator DATE = '2001-08-14T05:29:32' / Date FITS file was generated IRAF-TLM= '00:29:32 (14/08/2001)' / Time of last modification PVNO = 0 APID = 15 TARGETID= 363 AOS1LDIO= 1 AOS2LDIO= 0 GUN1SEL = 0 GUN2SEL = 0 ATTN1CHA= 7 ATTN2CHA= 7 CTRP1BIA= 1 CTRP2BIA= 0 MIXBIAS1= 0 MIXBIAS2= 1 END XTENSION= 'IMAGE ' / Image extension BITPIX = -32 / Bits per pixel NAXIS = 2 / Number of axes NAXIS1 = 725 / Axis length NAXIS2 = 1 / Axis length PCOUNT = 0 / No 'random' parameters GCOUNT = 1 / Only one group ORIGIN = 'NOAO-IRAF FITS Image Kernel July 1999' / FITS file originator EXTNAME = 'SWAS_IMEXT001_B1' / Extension name IRAF-TLM= '00:29:32 (14/08/2001)' / Time of last modification OBJECT = 'S140 ' / Name of the object observed INHERIT = F DATE = '2001-08-14T05:29:32' DISPAXIS= '1 ' / Dispersion axis SEGINDEX= 301004 / Segment index of first segment OBSMODE = 2 / Observing mode WCSDIM = 4 / World coord sys dimension WAT0_001= / / comment WAT1_001= 'wtype=linear label=Frequency units=gigahertz' WAT2_001= 'wtype=linear' BUNIT = 'K ' / Spectral intensity units CTYPE1 = 'FREQ ' / Spectral dispersion in frequency EQUINOX = 2000. / Equinox of coordinates CRPIX1 = 1. / Reference pixel for frequency CRVAL1 = 492.3113 / Frequency at CRPIX1 (GHz) CDELT1 = -0.001022064 / Change in Frequency, per pixel (GHz) CD1_1 = -0.001022064 / comment CTYPE2 = 'RA ' / Right Ascension (deg) CRPIX2 = 0. / Reference pixel for right ascension CRVAL2 = 334.8213 / Fiducial Right ascension, this target CDELT2 = 0.05438559 / RA offset to observed position from CRVAL2 CD2_2 = 1. / comment CTYPE3 = 'DEC ' / Declination (deg) CRPIX3 = 0. / Reference pixel for declination CRVAL3 = 63.31276 / Fiducial declination, this target CDELT3 = 0.05280685 / Dec offset to observed position from CRVAL3 LINE = 'CI ' / Line observed OBSTIME = 38452. / On-source observing time (s) FTHLINE = F / Fifth line observation? NGON = 19264 / Total number good ON scans END u1%M:}\F=Cge7J)쒼K7p:7;Ѫ_,j:D^;-μB ټ4 ǻqȽZVMTu VqP BJ39'[D=Cge7J)쒼K7p:7;Ѫ_,j:D^;-μB ټ4 ǻqȽYV;n~mݽkv_\qh Y`UiJw?;|<{Y:v%;O\x%9sP|V??BA?@`=C0=g <ѱѥ## <@;zSĽPM<ө=L=i༴ :~Au]h<Ƃ6;͉ڼt&~]0 ZKdڼ9;k(9[i7 $`G?t;>4IY PyR6u>@ ]ci,4v@ʓV76󬽏ZYGὌ }PӽY29A{ 4>OWཆͽ21D򽛖'U`zs?\!RLIHf뽂:;k=a{}Ͻq͹X&j<=.c:Ga\xMJ JὭx{z`dT ēAֽԠ:$归۾Fy۽#0Լؽj<=.c:Ga\xMJ JὭx{z`dT ēAֽԠ:$彇 XTENSION= 'IMAGE ' / Image extension BITPIX = -32 / Bits per pixel NAXIS = 2 / Number of axes NAXIS1 = 725 / Axis length NAXIS2 = 1 / Axis length PCOUNT = 0 / No 'random' parameters GCOUNT = 1 / Only one group ORIGIN = 'NOAO-IRAF FITS Image Kernel July 1999' / FITS file originator EXTNAME = 'SWAS_IMEXT002_B2' / Extension name IRAF-TLM= '00:29:32 (14/08/2001)' / Time of last modification OBJECT = 'S140 ' / Name of the object observed INHERIT = F DATE = '2001-08-14T05:29:32' DISPAXIS= '1 ' / Dispersion axis SEGINDEX= 301004 / Segment index of first segment OBSMODE = 2 / Observing mode WCSDIM = 4 / World coord sys dimension WAT0_001= / / comment WAT1_001= 'wtype=linear label=Frequency units=gigahertz' WAT2_001= 'wtype=linear' BUNIT = 'K ' / Spectral intensity units CTYPE1 = 'FREQ ' / Spectral dispersion in frequency EQUINOX = 2000. / Equinox of coordinates CRPIX1 = 1. / Reference pixel for frequency CRVAL1 = 486.7213 / Frequency at CRPIX1 (GHz) CDELT1 = 0.00102198 / Change in Frequency, per pixel (GHz) CD1_1 = 0.00102198 / comment CTYPE2 = 'RA ' / Right Ascension (deg) CRPIX2 = 0. / Reference pixel for right ascension CRVAL2 = 334.8213 / Fiducial Right ascension, this target CDELT2 = 0.05438559 / RA offset to observed position from CRVAL2 CD2_2 = 1. / comment CTYPE3 = 'DEC ' / Declination (deg) CRPIX3 = 0. / Reference pixel for declination CRVAL3 = 63.31276 / Fiducial declination, this target CDELT3 = 0.05280685 / Dec offset to observed position from CRVAL3 LINE = 'O2 ' / Line observed OBSTIME = 38452. / On-source observing time (s) FTHLINE = F / Fifth line observation? NGON = 19264 / Total number good ON scans END O>WT.p S<*=% ^~<M;![}'7WT.p S<*=% ^~<M;![}'7k4}ǽ*}>;d` 5Ѽ Tmcqӽhr佉[ fGձ~b.>?׺ Uī̼-Ϋǽ`JG!=Y<~;<}}<߀vNV^; m=>=)>.>oS>y>^>>>T?? u ?x>iD>>%>B?T?@?l4?p?=?:G>?x?ח?_b>+#>c>>U@>>>>XA>2%><)%z6~ʽ||bW@ 뼜A4 $*:cEM3"@t MؽC ;ͽ Ͻv ;h#u^;5>{1 ʽS{{(9DAC C-cLLʃeT9o9OtYAwTxͽ gF/R{ؽ_1罀ļ?a(ȽVwJ꽈P(/dHCl*# h|PSؽaAXmIƽV_hh̋;N$'.w@ .Y. -23@덽4m@Rd! <ۼ#`ʄҽDs񓽅|:V!vQi! 8Zy}a!mBsνOuj213dɼb +y'Λ^ҽjIMڽM)%(ϽH齮;g}ǰtὯtG\R:˽ Ͻ{MѽԈkoĽ`J<%-\@S;xeìܽ}rs߽Bͼ\O}ýyGGk&Zh{B,'kGYԈkoĽ`J<%-\@S;xeìܽ}rs߽Bͼ\O}ý rý]15( =XTENSION= 'IMAGE ' / Image extension BITPIX = -32 / Bits per pixel NAXIS = 2 / Number of axes NAXIS1 = 725 / Axis length NAXIS2 = 1 / Axis length PCOUNT = 0 / No 'random' parameters GCOUNT = 1 / Only one group ORIGIN = 'NOAO-IRAF FITS Image Kernel July 1999' / FITS file originator EXTNAME = 'SWAS_IMEXT003_B3' / Extension name IRAF-TLM= '00:29:32 (14/08/2001)' / Time of last modification OBJECT = 'S140 ' / Name of the object observed INHERIT = F DATE = '2001-08-14T05:29:32' DISPAXIS= '1 ' / Dispersion axis SEGINDEX= 301004 / Segment index of first segment OBSMODE = 2 / Observing mode WCSDIM = 4 / World coord sys dimension WAT0_001= / / comment WAT1_001= 'wtype=linear label=Frequency units=gigahertz' WAT2_001= 'wtype=linear' BUNIT = 'K ' / Spectral intensity units CTYPE1 = 'FREQ ' / Spectral dispersion in frequency EQUINOX = 2000. / Equinox of coordinates CRPIX1 = 1. / Reference pixel for frequency CRVAL1 = 557.1267 / Frequency at CRPIX1 (GHz) CDELT1 = -0.001030672 / Change in Frequency, per pixel (GHz) CD1_1 = -0.001030672 / comment CTYPE2 = 'RA ' / Right Ascension (deg) CRPIX2 = 0. / Reference pixel for right ascension CRVAL2 = 334.8213 / Fiducial Right ascension, this target CDELT2 = 0.05438559 / RA offset to observed position from CRVAL2 CD2_2 = 1. / comment CTYPE3 = 'DEC ' / Declination (deg) CRPIX3 = 0. / Reference pixel for declination CRVAL3 = 63.31276 / Fiducial declination, this target CDELT3 = 0.05280685 / Dec offset to observed position from CRVAL3 LINE = 'H2O ' / Line observed OBSTIME = 38452. / On-source observing time (s) FTHLINE = F / Fifth line observation? 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