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 = '2001-08-13T19:31:04' / Date FITS file was generated IRAF-TLM= '14:31:04 (13/08/2001)' / Time of last modification PVNO = 0 APID = 15 TARGETID= 755 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= '14:31:04 (13/08/2001)' / Time of last modification OBJECT = 'SGRA+90 ' / Name of the object observed INHERIT = F DATE = '2001-08-13T19:31:04' DISPAXIS= '1 ' / Dispersion axis SEGINDEX= 575004 / 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 = 492.3289 / Frequency at CRPIX1 (GHz) CDELT1 = -0.001022465 / Change in Frequency, per pixel (GHz) CD1_1 = -0.001022465 / comment CTYPE2 = 'RA ' / Right Ascension (deg) CRPIX2 = 0. / Reference pixel for right ascension CRVAL2 = 266.4154 / Fiducial Right ascension, this target CDELT2 = -6.227462E-4 / RA offset to observed position from CRVAL2 CD2_2 = 1. / comment CTYPE3 = 'DEC ' / Declination (deg) CRPIX3 = 0. / Reference pixel for declination CRVAL3 = -29.00833 / Fiducial declination, this target CDELT3 = -3.655752E-4 / Dec offset to observed position from CRVAL3 LINE = 'CI ' / Line observed OBSTIME = 18146. / On-source observing time (s) FTHLINE = F / Fifth line observation? NGON = 9073 / Total number good ON scans END ?g|???s^??;5?R?-?r?>?#?S?x????3?o???$??#?S?x????3?o???$?B?H??7>_>ۙ>ԫ>-X>> ><>;>+>Ԯ>\>n>o>$> >>> >>>>k>^>o!>>>nt>[>s\O>Y>7`>Y>n >TЙ>d>U>R>&>>qW#>>>>;> >`><>zO>L>a}>b>͈>CzQ>r>>q>y>yI>W1>[X>|3C>L>P D>~>>:J>C>o>~\>e>kt>>>>>>>E>[>_>p>X>~>wSN>>F>;2>s >>,>y>N>>F>Ӣ>>#\>X>t>h><>>>l>*>>K> >ٷ>(>>V>?[;>b?ۢ?)??D??$??<?3?`T?? ???? wn>Z>҈>>.A>Q>>>A>Ao>P>>Jy>h>s>J>W>6>m>>>O">ZRX>:6=>>p)>(>h>Lp>9>w>m4>87>1m>z,>Q> >>G>:ʼn>X>*">7>j>N>0Ң>_}>S>/=>!>1%F>0Z>?ֈ>ISu>Y>W>ohx>53)>6>1]>An>M%>Tg >G>A>'>3V>z>Q>O>GCp=ΗV>>L>wT.>hW>Pn>vu>D>]e>9>_Q>q)>;>A=>>!>$>>ǥ>_G>c}>2l|>3>< >xO>g&>~>%>=>Js>F*D>;>?}#>b>[=>Ȁ> =C=_{=@>?1>@*>V>|>Ke>?>Nml>w@>6BZ>(F=nn=G>>J>2n>4_b>}@>M@*>.%>:A>J>:2>W>n|>Dt>K@>L0>R>F0 >>>+)>Iw>Yr#>^>Q>?_>4E=x>7>Mzv>?B>$>(>b>`H4>n?>l >\A'>11>r>%>F>9'e>pb>E>Qn>?>a&>l>7G>%=?>.h>H>V[_>q=E>+>x=Kx> >IP>>.=>An>6==;>>+9+=ZH>+B>U>f6>]>~u>p >.e>4 >5*>+<=>->>>pO==X>">M>pK;>s.>Q~>*>(%>$?>؀>)I>'>S|>7G>J>(>_ >P>[=T@>K{>%a>2*>,!=D>=>G>e>F> o=\>) k>d>3O>L>F>7 >C5>> >'jq>JO>>>J>.7>PQ>E0>@@>3j> =ɀ>TE>>}>C5>Y K>4?>V >H>>NA>j>4>(jj>+>9C!>>h`%>Y4>B\>YY>rX>~>o>n>M>5;>Kx>k>|:>}q>P +>aٸ>0ˑ>>">UY>f$>~9>\V>>t0>o>96>f>3Nv>4+>i.>|>>p>v=>gf>T2o>>r>IN{>X >Cl>l >zӴ>>lb>j^>!>C>#->:>\>w>}>;>$>Q">{>~I>n>]>K>wE>}W>yz2>qu>l >C>>>x*>Ta>>`>>>]>sP>t(>Rt>qb>D>H>(su>[/>kO>I>>P>=/>W>b?>PA>2BN>W>s>;P>]>E{>H>7s)>gx>x5>Rk>nM>K7>~]>]jO>E(>c>>r>$>"f=슆> =H>>V _>0>> 8>[Ŭ>f5>PA>2BN>W>s>;P>]>E{>H>7s)>gx>x5>Rk>nM>K7>~]>]jO>E(>c>>r>$>"f=슆> =H>>V _>0>>#KrXTENSION= '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= '14:31:04 (13/08/2001)' / Time of last modification OBJECT = 'SGRA+90 ' / Name of the object observed INHERIT = F DATE = '2001-08-13T19:31:04' DISPAXIS= '1 ' / Dispersion axis SEGINDEX= 575004 / 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 = 486.7387 / Frequency at CRPIX1 (GHz) CDELT1 = 0.00102236 / Change in Frequency, per pixel (GHz) CD1_1 = 0.00102236 / comment CTYPE2 = 'RA ' / Right Ascension (deg) CRPIX2 = 0. / Reference pixel for right ascension CRVAL2 = 266.4154 / Fiducial Right ascension, this target CDELT2 = -6.227462E-4 / RA offset to observed position from CRVAL2 CD2_2 = 1. / comment CTYPE3 = 'DEC ' / Declination (deg) CRPIX3 = 0. / Reference pixel for declination CRVAL3 = -29.00833 / Fiducial declination, this target CDELT3 = -3.655752E-4 / Dec offset to observed position from CRVAL3 LINE = 'O2 ' / Line observed OBSTIME = 18146. / On-source observing time (s) FTHLINE = F / Fifth line observation? NGON = 9073 / Total number good ON scans END ?o?1???S?f?}?bc?˖?Ѓ?Q?˝?Y?͗?Bj?d?&3??b?צ?I?n?Vt??&?Z?5>@@@@ v@?2E?1???S?f?}?bc?˖?Ѓ?Q?˝?Y?͗?Bj?d?&3??b?צ?I?n?Vt??&?Z?5>@@@@ ;@@@~@x@b@@\@" @@#z@%#@){E@-@,@/@3@6@e@6#@7w@:@>ʝ@Eh@J@J*@K{@K@J~@K @Qj@VC@U`@WOb@Y@]n@[i@`n@g"=@d'@a@er@`@`dV@^@Xu@Y@W@Zw@U@S6@Ts{@V@I@Fd@DI@D@Af@B O@9L@7@3Du@2 ~@1 @(]@%a@">@@1@h@ ?%@@@*@,|@}?~?r?_?.f??+??޺??,????m?:?"?P?s?nd?n"l?]?Yk?NY?D?7?G?:zT?-??d?%bZ? t??q>.>Y>U>>F>鎍>5>.>|G> >[ >>>>>>>v>H>>;U>=>(>M>>>>>ͤ>q>G> >W>>3>^>#>kǿ>O>T@;>hN>>Qo>cQ?>n~>WW><>P>i>>E>>r>j|>?W>S>`B>Gq>>P~>?>>oe>|>:>U>z>>x">hf>U>>N>.>>:>x-a>Q>8>l>m> >72>>}> >j1>{~>o>ڄ>̀>B>/`>h>p>>"!>[>J7>|>d_>N>A >>t>t>ݔ>>L^>C>Q>>U>h>>?7>&> >޵\??U?W>|>r>>a>h>ӗ>֠>>0>.>>__>Qz>VH>L>S7>X>>>>">>>u>#>d>>@$>5> >Ru>k>5r>sR>P>yM>s\>=)>BR>4w>5>F>pp>Y>:L>X<>'G>?>->0qp>>=X>9ύ>)=:> GA><>Zs>4(q>G>l6D>~/>bN>_V>w>bk>$>>v>5&>K >8>5>p2>Vm>;?>=`>X>/t[>'>RԢ>v<>c4f>d>փ>dv>R#t>TZ>f>7Q>:} >CpV>M*>1>7"*>/lB>>,>wAE>J>&}>>|kY>bX>V>I>Ea>>9>e>5M>6%>DBz>->RA>)>,H>5VB>I>+@>$|>=)=N>89j>W{=[>$>-L>4b$>:r>/>,>8>X>^{>fI>*>%>9==ھ=>;->>>#$>$>\>gBI>G(>Wk2>c>d(>x>0>>g>p>=>>$Y>Ig>j>5l>O>,J>/>^7 >h> #>+}>3y>[m=篵>9z>S_>>5x>F6>gn>LP> =<>/ޟ>c>Y>z >R>S>4g>6>TD>+>->Fc>V>w >=xp>6>T>A>>-V>#̎>gN>v>A>0>;b>B#>0=> m>>$>B>E>@>gy>g>U4>l=s>Em>?p>> M>)K>+Q>[\>;@>]>E >D>%>FM>R >>Ol>L<>EB>D>le>S(>(~>^>e>;>>L?>W>'>&c>r> >>3`n>N5>2>i5.>eWr>J]>Q">V>#k>-L>$h>">ED>b>AHW>;Z>=۶>{>>5>$>%S>k>=:>T>?ߪ>[( >5R>>]п>vU>M>Ba>lJ>h>J>1>tB}>*>V(>S>">6>b\>P>k3>\um>{>">1>w>_>>>k]>\K>>Q>ls>,>S'>I>Z>3D>O>@X>4@>_$>I>NC7>&S>+>J >qS<>2>"&>N>>>6!>B >QÒ>g^>^>FM>>w>)>nY>'>b>O>d1N>\>M%>R>Py>>@+>Z?>M >H>Vރ>B>4f>m]X>c-V>dV>>m/<>b>f`!>>p>^b>s>T>.,>54> >D)>?>Mu>>E4>5>#>Md>H>7)>)>AW>>'>9p>bm>? >!a>@$>_e=ٯ>|>;>,S>17T>BX.>K%>'P>r$>T>.,>54> >D)>?>Mu>>E4>5>#>Md>H>7)>)>AW>>'>9p>bm>? >!a>@$>_e=ٯ>|>;>,S>17T>BX.>`>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= '14:31:04 (13/08/2001)' / Time of last modification OBJECT = 'SGRA+90 ' / Name of the object observed INHERIT = F DATE = '2001-08-13T19:31:04' DISPAXIS= '1 ' / Dispersion axis SEGINDEX= 575004 / 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 = 557.1653 / Frequency at CRPIX1 (GHz) CDELT1 = -0.001030826 / Change in Frequency, per pixel (GHz) CD1_1 = -0.001030826 / comment CTYPE2 = 'RA ' / Right Ascension (deg) CRPIX2 = 0. / Reference pixel for right ascension CRVAL2 = 266.4154 / Fiducial Right ascension, this target CDELT2 = -6.227462E-4 / RA offset to observed position from CRVAL2 CD2_2 = 1. / comment CTYPE3 = 'DEC ' / Declination (deg) CRPIX3 = 0. / Reference pixel for declination CRVAL3 = -29.00833 / Fiducial declination, this target CDELT3 = -3.655752E-4 / Dec offset to observed position from CRVAL3 LINE = 'H2O ' / Line observed OBSTIME = 18146. / On-source observing time (s) FTHLINE = F / Fifth line observation? 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M?>>? >^>~?Ƀ>a?>5>|?q?S? ?>5?\?D>??_J??iZ>%?A?IW?vm>>>>>2>=9>ٲ>,>yG? _?}7>>y/>>>>>Q>N> >,>>>>6>,>Z>>I>>? v> >`6>>>>2>=9>ٲ>,>yG? _?}7>>y/>>>>>Q>N> >,>>>>6>,>Z>>I>>? v>`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_IMEXT004_B4' / Extension name IRAF-TLM= '14:31:04 (13/08/2001)' / Time of last modification OBJECT = 'SGRA+90 ' / Name of the object observed INHERIT = F DATE = '2001-08-13T19:31:04' DISPAXIS= '1 ' / Dispersion axis SEGINDEX= 575004 / 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 = 550.5 / Frequency at CRPIX1 (GHz) CDELT1 = 0.001030742 / Change in Frequency, per pixel (GHz) CD1_1 = 0.001030742 / comment CTYPE2 = 'RA ' / Right Ascension (deg) CRPIX2 = 0. / Reference pixel for right ascension CRVAL2 = 266.4154 / Fiducial Right ascension, this target CDELT2 = -6.227462E-4 / RA offset to observed position from CRVAL2 CD2_2 = 1. / comment CTYPE3 = 'DEC ' / Declination (deg) CRPIX3 = 0. / Reference pixel for declination CRVAL3 = -29.00833 / Fiducial declination, this target CDELT3 = -3.655752E-4 / Dec offset to observed position from CRVAL3 LINE = '13CO ' / Line observed OBSTIME = 18146. / On-source observing time (s) FTHLINE = F / Fifth line observation? 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