Aa|P$HH $ d    dFootnote TableFootnote**. . / -   \5\GTOCHeadingF   D    !  "  #  $ fe % ee &  '  (  )  * H + F ,  - H . F /  0 H 1 F 2  3 H 4 F 5  6 H 7 Fr 8 mat 9  :  ; =- <  =  > men ?  @  A rie B Ti C  D tic E  F ula G  H ula I Bo J  K ula L It M  N  O  P  Q  R  S  T  U  V  W  X  Y  Z  [  \  ]  ^  _  `  a  b  c  d  e  f  g  h  i  j rFi k 0F> l  m  n  o P p  q  r $ s H t  u  v  w  x  y  z  {  |  }  ~           Fo e Foo  *          \     TO He F          fe ee     H F  H F  H F  H F  H Fr mat   =-   men ! " #rie $Ti % &tic ' (ula ) *ula +Bo , -ula .It / 0 1 2 3 4 5 6 7 8 9 : ; < = > ? @ A B C D E F G H I J K LrFi M0F> N O P QP R S T$ UH V W X Y Z [ \ ] ^ _ ` a b  c  d  e  f  g  h  iFo  je kFoo l m* n o  p   q  r  s  t  u  v\  w  x  y  z  {TO  |He  }F  ~         !  "  #  $ fe % ee &  '  (  )  * H + F ,  - H . 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" #rie $Ti % &tic ' (ula ) *ula +Bo , -ula .It / 0 1 2 3 4 5 6 7 8 9 : ; < = > ? @ A B C D E F G H I J KrFi L  newlink WFP_SCIo p gotolink Defs.book:SIMPLE_def !u gotolink Defs.book:BITPIX_def "z gotolink Defs.book:DATATYPE_def #gotolink Defs.book:NAXIS_def $gotolink Defs.book:NAXIS1_def %Foogotolink Defs.book:NAXIS2_def & gotolink Defs.book:GROUPS_def ' gotolink Defs.book:GCOUNT_def (gotolink Defs.book:PCOUNT_def )gotolink Defs.book:CRVALi_def *gotolink Defs.book:CRVALi_def +gotolink Defs.book:CRPIXi_def ,gotolink Defs.book:CRPIXi_def -Fgotolink Defs.book:CDi_j_def .Hgotolink Defs.book:CDi_j_def /=-gotolink Defs.book:CDi_j_def 0gotolink Defs.book:CDi_j_defic 1gotolink Defs.book:DATAMIN_def 2gotolink Defs.book:DATAMAX_def 3gotolink Defs.book:MIR_REVR_def6 47gotolink Defs.book:ORIENTAT_def 5gotolink Defs.book:FILLCNT_def 6gotolink Defs.book:ERRCNT_def 7gotolink Defs.book:FPKTTIME_defK 8gotolink Defs.book:LPKTTIME_def_SC 9 gotolink Defs.book:CTYPEi_def_ : !gotolink Defs.book:CTYPEi_def_ ; "gotolink Defs.book:DETECTOR_def_de < #gotolink Defs.book:DEZERO_defd = $gotolink Defs.book:BIASEVEN_defef >Foogotolink Defs.book:BIASODD_def ? gotolink Defs.book:GOODMIN_def @ gotolink Defs.book:GOODMAX_def Agotolink Defs.book:DATAMEAN_def ) Bgogotolink Defs.book:GPIXELS_def Cgogotolink Defs.book:SOFTERRS_def Doligotolink Defs.book:CALIBDEF_defgo Ek Dgotolink Defs.book:STATICD_def Fk Dgotolink Defs.book:ATODSAT_def Gk Dgotolink Defs.book:DATALOST_defoli Hfs.gotolink Defs.book:BADPIXEL_defk D Iookgotolink Defs.book:PHOTMODE_deffs. JDATgotolink Defs.book:PHOTFLAM_defook KMAXgotolink Defs.book:PHOTZPT_def LREVgotolink Defs.book:PHOTPLAM_defook MNTAgotolink Defs.book:PHOTBW_def. NFILgotolink Defs.book:INSTRUME_defook ONT_gotolink Defs.book:ROOTNAME_defFPK P_degotolink Defs.book:FILETYPE_defLPK Q_degotolink Defs.book:CAMERA_defk REi_gotolink Defs.book:MODE_defook SEi_gotolink Defs.book:SERIALS_def TCTOgotolink Defs.book:IMAGETYP_defook URO_gotolink Defs.book:CDBSFILE_defBIA V_degotolink Defs.book:PKTFMT_defk WODDgotolink Defs.book:DATE_defook XMINgotolink Defs.book:FILTNAMi_defGOO Ydefgotolink Defs.book:FILTNAMi_defMEA Z )gotolink Defs.book:FILTER1_def [defgotolink Defs.book:FILTER2_def \_degotolink Defs.book:PFILTERi_defCAL ]_degotolink Defs.book:PFILTERi_defSTA ^defgotolink Defs.book:TECTEMP1_defSAT _ Ggotolink Defs.book:TECTEMP2_def_de ` Hgotolink Defs.book:TECTEMP3_def_de a Igotolink Defs.book:TECTEMP4_def_de b Jgotolink Defs.book:TECTEMP5_def_de c Kgotolink Defs.book:TECTEMP6_defdef dREVgotolink Defs.book:TECTEMP7_defook eNTAgotolink Defs.book:TECTEMP8_def N fgogotolink Defs.book:WBA3PCTM_def O ggogotolink Defs.book:KSPOTS_defK h_degotolink Defs.book:SHUTTER_def i Qgotolink Defs.book:MASKCORR_defefk jEi_gotolink Defs.book:ATODCORR_def S kgogotolink Defs.book:BLEVCORR_defCTO loligotolink Defs.book:BIASCORR_defRO_ moligotolink Defs.book:PREFCORR_def_de noligotolink Defs.book:PURGCORR_defgo ok Dgotolink Defs.book:DARKCORR_defoli pfs.gotolink Defs.book:FLATCORR_defoli qfs.gotolink Defs.book:DOSATMAP_defoli rfs.gotolink Defs.book:DOPHOTOM_defk D sookgotolink Defs.book:DOHISTOS_deffs. tPFIgotolink Defs.book:OUTDTYPE_deffs. uPFIgotolink Defs.book:MASKFILE_deffs. vTECgotolink Defs.book:ATODFILE_deffs. wTECgotolink Defs.book:BLEVFILE_deffs. xTECgotolink Defs.book:BLEVDFIL_deffs. yTECgotolink Defs.book:BIASFILE_deffs. zTECgotolink Defs.book:BIASDFIL_deffs. {TECgotolink Defs.book:PREFFILE_deffs. |TECgotolink Defs.book:PREFDFIL_deffs. }TECgotolink Defs.book:PURGFILE_deffs. ~WBAgotolink Defs.book:PURGDFIL_deffs. KSPgotolink Defs.book:DARKFILE_defook TERgotolink Defs.book:DARKDFIL_defMAS _degotolink Defs.book:FLATFILE_defATO _degotolink Defs.book:FLATDFIL_defBLE _degotolink Defs.book:PHOTTAB_def CORgotolink Defs.book:SATURATE_defook CORgotolink Defs.book:WSCALE_def. PURgotolink Defs.book:WZERO_def D ookgotolink Defs.book:PA_V3_defli fs.gotolink Defs.book:RA_SUN_defo k Dgotolink Defs.book:DEC_SUN_def oligotolink Defs.book:EQNX_SUN_defook oligotolink Defs.book:MTFLAG_deft gogotolink Defs.book:EQRADTRG_def u gogotolink Defs.book:FLATNTRG_def v gogotolink Defs.book:NPDECTRG_def w gogotolink Defs.book:NPRATRG_def TECgotolink Defs.book:ROTRTTRG_deffs. TECgotolink Defs.book:LONGPMER_deffs. TECgotolink Defs.book:EPLONGPM_deffs. TECgotolink Defs.book:SURFLATD_deffs. TECgotolink Defs.book:SURFLONG_deffs. TECgotolink Defs.book:SURFALTD_deffs. WBAgotolink Defs.book:PODPSFF_def  gotolink Defs.book:STDCFFF_def ookgotolink Defs.book:STDCFFP_def _degotolink Defs.book:RSDPFILL_defFLA _degotolink Defs.book:WEXPODUR_defFLA _degotolink Defs.book:NSHUTA17_defPHO defgotolink Defs.book:PREFTIME_defRAT ookgotolink Defs.book:DARKTIME_defLE_  gotolink Defs.book:PURGTIME_deff D  ookgotolink Defs.book:WEXPOTIM_def  gogotolink Defs.book:PSTRTIME_defk D  oligotolink Defs.book:PSTPTIME_defgo  k Dgotolink Defs.book:EQUINOX_def  oligotolink Defs.book:SUNANGLE_defgo  k Dgotolink Defs.book:MOONANGL_defgo  k Dgotolink Defs.book:SUN_ALT_def  oligotolink Defs.book:FGSLOCK_def gogotolink Defs.book:DATE-OBS_defTEC oligotolink Defs.book:TIME-OBS_defTEC oligotolink Defs.book:EXPSTART_defTEC oligotolink Defs.book:EXPEND_def gogotolink Defs.book:EXPTIME_def  TECgotolink Defs.book:EXPFLAG_def   gotolink Defs.book:TARGNAME_def_de   gotolink Defs.book:RA_TARG_def   gotolink Defs.book:DEC_TARG_defdef  ookgotolink Defs.book:PEQUINOX_def  gogotolink Defs.book:PROPOSID_def  gogotolink Defs.book:PEP_EXPO_def  gogotolink Defs.book:LINENUM_def  defgotolink Defs.book:SEQLINE_def   gotolink Defs.book:SEQNAME_def  LE_gotolink Defs.book:END_def  TIMnewlink WFP_EXTgo  k Dgotolink Defs.book:SIMPLE_defo  oligotolink Defs.book:BITPIX_def  gogotolink Defs.book:DATATYPE_def  gogotolink Defs.book:NAXIS_def  gogotolink Defs.book:NAXIS1_defo  k Dgotolink Defs.book:NAXIS2_defe  gotolink Defs.book:GROUPS_defT !  gotolink Defs.book:GCOUNT_defK "  gotolink Defs.book:PCOUNT_defB # TECgotolink Defs.book:FILLCNT_def $ _degotolink Defs.book:ERRCNT_defk % TARgotolink Defs.book:DETECTOR_defook & ND_gotolink Defs.book:INSTRUME_defEXP ' defgotolink Defs.book:ROOTNAME_defLAG (  gotolink Defs.book:FILETYPE_def_de )  gotolink Defs.book:CTYPE1_defG *  gotolink Defs.book:CTYPE2_defR + gotolink Defs.book:MODE_defPEQ , _degotolink Defs.book:CAMERA_defk - OSIgotolink Defs.book:FILTER1_def . PEPgotolink Defs.book:FILTER2_def / ookgotolink Defs.book:LINEBEG_def 0 ookgotolink Defs.book:SAMPBEG_def 1 ookgotolink Defs.book:DATE_defk D 2 ookgotolink Defs.book:PODPSFF_def 3  gotolink Defs.book:STDCFFF_def 4  gotolink Defs.book:STDCFFP_def 5  gotolink Defs.book:TARGNAME_def_de 6  gotolink Defs.book:RA_TARG_def 7  gotolink Defs.book:DEC_TARG_defefo 8 k Dgotolink Defs.book:PEQUINOX_def 9 gogotolink Defs.book:PROPOSID_def : oligotolink Defs.book:PEP_EXPO_defgo ; k Dgotolink Defs.book:LINENUM_def < k Dgotolink Defs.book:SEQLINE_def = k Dgotolink Defs.book:SEQNAME_def > k Dgotolink Defs.book:END_def ? gonewlink WFP_SHPINS @ _degotolink Defs.book:SIMPLE_defk A NAMgotolink Defs.book:BITPIX_def. B FILgotolink Defs.book:DATATYPE_deffs. C CTYgotolink Defs.book:NAXIS_defs. D CTYgotolink Defs.book:NAXIS1_def. E MODgotolink Defs.book:GROUPS_def. F CAMgotolink Defs.book:GCOUNT_def. G FILgotolink Defs.book:PCOUNT_def. H FILgotolink Defs.book:FILLCNT_def I LINgotolink Defs.book:ERRCNT_def. J SAMgotolink Defs.book:PKTTIME_def K DATgotolink Defs.book:INSTRUME_defook L SFFgotolink Defs.book:ROOTNAME_defSTD M defgotolink Defs.book:FILETYPE_defFFP N 5 gotolink Defs.book:CTYPE1_defM O _degotolink Defs.book:DEFAULTS_defARG P 7 gotolink Defs.book:DATE_defTAR Q efogotolink Defs.book:DCFOBSN_def R _degotolink Defs.book:PROC_TYP_defPRO S _degotolink Defs.book:CLKDRFTR_defPEP T _degotolink Defs.book:CLKRATE_def U NUMgotolink Defs.book:SPCLINCN_defSEQ V defgotolink Defs.book:UTCO1_defEQ W defgotolink Defs.book:UTCO2_defND X ? gotolink Defs.book:UTC0_def_de Y oligotolink Defs.book:WBA1LGCT_defgo Z k Dgotolink Defs.book:WBA2EDTM_defoli [ fs.gotolink Defs.book:WBA3PCTM_defoli \ fs.gotolink Defs.book:WBA4WFTM_defk D ] gotolink Defs.book:WBA5TEMP_deffs. ^ GROgotolink Defs.book:WCANLTIM_defook _ NT_gotolink Defs.book:WCH1HJTM_defPCO ` ef.gotolink Defs.book:WCH7HJTM_defCNT a I gotolink Defs.book:WCHVLTS_def b J gotolink Defs.book:WEXPTMHI_defdef c DATgotolink Defs.book:WEXPOTIM_defook d SFFgotolink Defs.book:WEXPOCMD_defSTD e defgotolink Defs.book:WEXPODUR_defFFP f 5 gotolink Defs.book:WFCSTAT_def g _degotolink Defs.book:WFOCTM01_defARG h 7 gotolink Defs.book:WFOCTM02_defQ i gogotolink Defs.book:WFOCTM03_def_de j oligotolink Defs.book:WFOCTM04_def_de k oligotolink Defs.book:WFOCTM05_def_de l oligotolink Defs.book:WFOCTM06_defgo m k Dgotolink Defs.book:WFOCTM07_defgo n k Dgotolink Defs.book:WFOCTM08_defoli o fs.gotolink Defs.book:WFOCTM09_defk D p ookgotolink Defs.book:WFOCTM10_deffs. q WBAgotolink Defs.book:WFOCTM11_deffs. r WBAgotolink Defs.book:WFOCTM12_deffs. s WBAgotolink Defs.book:WFOCTM13_deffs. t WBAgotolink Defs.book:WFOCTM14_deffs. u WBAgotolink Defs.book:WFOCTM15_deffs. v WCAgotolink Defs.book:WFOSPOSV_deffs. w WCHgotolink Defs.book:WHOLDHTR_deffs. x WCHgotolink Defs.book:WHTPIHTR_deffs. y WCHgotolink Defs.book:WMECHPWR_defook z TMHgotolink Defs.book:WMECIFAT_defook { OTIgotolink Defs.book:WMECIFBT_defook | OCMgotolink Defs.book:WMECIFCT_defook } ODUgotolink Defs.book:WMECVOLT_defook ~ TATgotolink Defs.book:WN15VADC_defWFO  _degotolink Defs.book:WN15VANA_defWFO _degotolink Defs.book:WP5VADC_def TM0gotolink Defs.book:WP5VLGC_def WFOgotolink Defs.book:WP10VLGC_deffs. !WFOgotolink Defs.book:WP15VADC_deffs. "WFOgotolink Defs.book:WP15VANA_deffs. #WFOgotolink Defs.book:WPCTECA_def $ookgotolink Defs.book:WPCTECV_def %fs.gotolink Defs.book:WPTECPWR_defoli &fs.gotolink Defs.book:WPWRONF_def 'k Dgotolink Defs.book:WPYRMDTM_defgo (k Dgotolink Defs.book:WRADATMP_defgo )k Dgotolink Defs.book:WRIUATEM_defgo *k Dgotolink Defs.book:WRIUBTEM_defgo +k Dgotolink Defs.book:WSTRCTEM_defgo ,k Dgotolink Defs.book:WTIMEXPO_defgo -k Dgotolink Defs.book:WUVMTEMP_defgo .k Dgotolink Defs.book:WWCANCM_def /oligotolink Defs.book:WWLOGOF_def 0gogotolink Defs.book:WWSCAP_defk 1OTIgotolink Defs.book:WBLDASNR_defook 2OCMgotolink Defs.book:WBLDBSNR_defook 3ODUgotolink Defs.book:PROGRMID_defook 4TATgotolink Defs.book:PR_INV_L_defWFO 5_degotolink Defs.book:PR_INV_F_defWFO 6_degotolink Defs.book:PR_INV_M_def  7gogotolink Defs.book:AFFILIAT_defWFO 8oligotolink Defs.book:ACCPDATE_defWFO 9oligotolink Defs.book:OBSET_ID_defWFO :oligotolink Defs.book:CALIBRAT_defWFO ;oligotolink Defs.book:OBSERVTN_defgo <k Dgotolink Defs.book:EXPACKET_defoli =fs.gotolink Defs.book:PRODTYPE_defoli >fs.gotolink Defs.book:OPFORMAT_defk D ?ookgotolink Defs.book:CALIBTYP_defk D @ookgotolink Defs.book:CDBSDATA_defk D Aookgotolink Defs.book:SS_MODE_def Bfs.gotolink Defs.book:SS_CAMRA_defoli Cfs.gotolink Defs.book:SS_FILTi_defoli Dfs.gotolink Defs.book:SS_FILTi_defoli Efs.gotolink Defs.book:RTAMATCH_defoli Ffs.gotolink Defs.book:SS_PFTIM_defk D Gookgotolink Defs.book:SS_PFILi_deffs. HWWSgotolink Defs.book:SS_PFILi_defook IASNgotolink Defs.book:TARGTYPE_defook JBSNgotolink Defs.book:WRD11_14_defook KRMIgotolink Defs.book:PSTRTIME_defook LNV_gotolink Defs.book:PSTPTIME_defook MNV_gotolink Defs.book:APEROBJ_def NPR_gotolink Defs.book:APERSKY_def Oookgotolink Defs.book:TARG_ID_def Pfs.gotolink Defs.book:APERTYPE_defoli Qfs.gotolink Defs.book:RA_V1_defgo Rk Dgotolink Defs.book:DEC_V1_defi Soligotolink Defs.book:PA_V3_def < Tgogotolink Defs.book:APEROFFX_def = Ugogotolink Defs.book:APEROFFY_def > Vgogotolink Defs.book:ANGLESEP_def ? Wgogotolink Defs.book:DGESTAR_def Xookgotolink Defs.book:SGESTAR_def Y Agotolink Defs.book:PA_APER_def Z Bgotolink Defs.book:PA_REF_defR [oligotolink Defs.book:SAAAVOID_defILT \oligotolink Defs.book:TARAQMOD_defILT ]oligotolink Defs.book:POSTNSTX_defATC ^oligotolink Defs.book:POSTNSTY_defFTI _k Dgotolink Defs.book:POSTNSTZ_defFIL `fs.gotolink Defs.book:VELOCSTX_defFIL aookgotolink Defs.book:VELOCSTY_defTYP bookgotolink Defs.book:VELOCSTZ_def1_1 cookgotolink Defs.book:RA_SUN_defT d_degotolink Defs.book:DEC_SUN_def eTIMgotolink Defs.book:RA_MOON_def fAPEgotolink Defs.book:DEC_MOON_defook gSKYgotolink Defs.book:VELABBRA_defTAR hdefgotolink Defs.book:ANNPARRA_defTYP ioligotolink Defs.book:V2APERCE_def1_d j Rgotolink Defs.book:V3APERCE_defefi koligotolink Defs.book:EQRADTRG_def T lgogotolink Defs.book:FLATNTRG_def U mgogotolink Defs.book:NPDECTRG_def V ngogotolink Defs.book:NPRATRG_def ogogotolink Defs.book:ROTRTTRG_def X pgogotolink Defs.book:LONGPMER_def A qoligotolink Defs.book:EPLONGPM_defgo rk Dgotolink Defs.book:SURFLATD_defoli sfs.gotolink Defs.book:SURFLONG_defoli tfs.gotolink Defs.book:SURFALTD_defoli ufs.gotolink Defs.book:MTFLAG_defo vk Dgotolink Defs.book:S0INVMAG_defgo wk Dgotolink Defs.book:S0XDIR_def. xoligotolink Defs.book:S0YDIR_defa ygogotolink Defs.book:S0ZDIR_defP zookgotolink Defs.book:TRK_TYPE_def1_1 {ookgotolink Defs.book:T51_RATE_def d |gogotolink Defs.book:T51_ANGL_defTIM }oligotolink Defs.book:TARGDIST_defgo ~k Dgotolink Defs.book:PAR_CORR_defgo k Dgotolink Defs.book:RA_REF_deff oligotolink Defs.book:DEC_REF_def gogotolink Defs.book:EPCHTIME_def j gogotolink Defs.book:SDMEANAN_def k gogotolink Defs.book:SDMA3SQ_def gogotolink Defs.book:HSTHORB_def  mgotolink Defs.book:CIRVELOC_def_de  ngotolink Defs.book:COSINCLI_defdef gogotolink Defs.book:ECCENTRY_def X gogotolink Defs.book:ECCENTX2_def A oligotolink Defs.book:ECBDX4D3_defgo k Dgotolink Defs.book:ESQDX5D2_defoli fs.gotolink Defs.book:ECBDX3_defe  tgotolink Defs.book:FDMEANAN_def_de  ugotolink Defs.book:RCASCNRD_defefo k Dgotolink Defs.book:RCASCNRV_defgo k Dgotolink Defs.book:ARGPERIG_def x gogotolink Defs.book:MEANANOM_defgo oligotolink Defs.book:RCARGPER_defgo k Dgotolink Defs.book:RASCASCN_defgo k Dgotolink Defs.book:SINEINCL_defgo k Dgotolink Defs.book:SEMILREC_defgo k Dgotolink Defs.book:TIMEFFEC_defgo k Dgotolink Defs.book:OBSSTRTT_defgo k Dgotolink Defs.book:CONFIG_defo k Dgotolink Defs.book:OPMODE_defo k Dgotolink Defs.book:SPEC_i_defo oligotolink Defs.book:SPEC_i_def gogotolink Defs.book:SPEC_i_def gogotolink Defs.book:SPEC_i_def gogotolink Defs.book:APER_1_defe  ngotolink Defs.book:APER_2_defe  gotolink Defs.book:APER_3_defR  Xgotolink Defs.book:APER_4_defC _degotolink Defs.book:TAR_TYPE_defECB _degotolink Defs.book:TARDESCR_defESQ _degotolink Defs.book:TARDESC2_defECB efegotolink Defs.book:TARGCAT_def _degotolink Defs.book:TARKEYi_def CNRgotolink Defs.book:TARKEYi_def RCAgotolink Defs.book:TARKEYi_def ookgotolink Defs.book:TARKEYi_def fs.gotolink Defs.book:TARKEYi_def k Dgotolink Defs.book:TARGCAT2_defgo k Dgotolink Defs.book:TARKEYi_def oligotolink Defs.book:TARKEYi_def gogotolink Defs.book:TARKEYi_def k Dgotolink Defs.book:TARKEYi_def  gotolink Defs.book:TARKEYi _def_de  gotolink Defs.book:ALIASi_def_  gotolink Defs.book:ALIASi_def_  gotolink Defs.book:MAG_V_defi_  gotolink Defs.book:SURF_V_def_  gotolink Defs.book:MAG_B_defi_  gotolink Defs.book:SURF_B_def_  gotolink Defs.book:MAG_U_def1_  gotolink Defs.book:SURF_U_def_  gotolink Defs.book:MAG_R_def3_  gotolink Defs.book:SURF_R_def_  gotolink Defs.book:COL_B_V_def ] gotolink Defs.book:COL_U_B_def _degotolink Defs.book:COL_V_R_def ESCgotolink Defs.book:E_B_V_defs. TARgotolink Defs.book:EXTNCT_V_defook! EYigotolink Defs.book:CMD_EXP_def" EYigotolink Defs.book:MT_LV1_1_defTAR# defgotolink Defs.book:MT_LV1_2_defEYi$  gotolink Defs.book:MT_LV1_3_defdef% k Dgotolink Defs.book:MT_LV1_4_defgo& k Dgotolink Defs.book:MT_LV1_5_def ' gogotolink Defs.book:MT_LV2_1_defgo( oligotolink Defs.book:MT_LV2_2_defgo) k Dgotolink Defs.book:MT_LV2_3_defoli* fs.gotolink Defs.book:MT_LV2_4_defoli+ fs.gotolink Defs.book:MT_LV2_5_defk D, ookgotolink Defs.book:MT_LV3_1_deffs.- MAGgotolink Defs.book:MT_LV3_2_defook. _V_gotolink Defs.book:MT_LV3_3_defMAG/ fi_gotolink Defs.book:MT_LV3_4_def_B_0  gotolink Defs.book:MT_LV3_5_deff1_1  gotolink Defs.book:REDSHIFT_def 2 gogotolink Defs.book:PARALLAX_def 3 oligotolink Defs.book:MU_RA_def 4 oligotolink Defs.book:MU_DEC_def5 oligotolink Defs.book:MU_EPOCH_defgo6 k Dgotolink Defs.book:SP_TYPE_def7 k Dgotolink Defs.book:RAD_VEL_def8 k Dgotolink Defs.book:SCAN_TYP_defgo9 k Dgotolink Defs.book:SCAN_WID_defoli: fs.gotolink Defs.book:ANG_SIDE_defoli; fs.gotolink Defs.book:DWELL_LN_defoli< fs.gotolink Defs.book:DWELL_TM_defoli= fs.gotolink Defs.book:SCAN_ANG_defoli> fs.gotolink Defs.book:SCAN_RAT_defoli? fs.gotolink Defs.book:NO_LINES_defoli@ fs.gotolink Defs.book:SCAN_LEN_defoliA fs.gotolink Defs.book:SCAN_COR_defoliB fs.gotolink Defs.book:TARGNAME_defoliC fs.gotolink Defs.book:RA_TARG_defD k Dgotolink Defs.book:DEC_TARG_defgoE k Dgotolink Defs.book:PEQUINOX_defgoF k Dgotolink Defs.book:PROPOSID_defgoG k Dgotolink Defs.book:PEP_EXPO_defgoH k Dgotolink Defs.book:LINENUM_defI oligotolink Defs.book:SEQLINE_defJ gogotolink Defs.book:SEQNAME_defK oligotolink Defs.book:END_def4 previouslink! <$lastpagenum>ok<$monthname> <$daynum>, <$year>."<$monthnum>/<$daynum>/<$shortyear>ok;<$monthname> <$daynum>, <$year> <$hour>:<$minute00> <$ampm>o"<$monthnum>/<$daynum>/<$shortyear>go<$monthname> <$daynum>, <$year>."<$monthnum>/<$daynum>/<$shortyear>s. <$fullfilename>E  <$filename>.  <$paratext[Title]>AN  <$paratext[Heading]>  <$curpagenum>oli  <$marker1> D <$marker2>de (Continued)Pagepage<$pagenum>.Heading & Page <$paratext> on page<$pagenum> DSee Heading & Page%See <$paratext> on page<$pagenum>.f Table & Page7Table<$paranumonly>, <$paratext>, on page<$pagenum>Q+ (Sheet <$tblsheetnum> of <$tblsheetcount>)e wwPkEPxxP DyyP.okzzPli{{Q.Ak||QAo}}P.ok~~PliQ.AkQAr55P KJ$laK>okI$moI<$dJ$yeK"Im>/I/<$I>okJ$moQ<$dQ$yeUr>:U0> UUthnUnumUyeaUUme>U>, UUthnUnumUyeaUUenaU Ue>.U$paUtleUUt[HU UpagU  UkerU U>deU(CoUUPaU<$pUU & UparUn pUenuUSeU & U <U> U$paUU PaU<$Uly>UtexUageUm>QU(ShUsheU <$UounUUUwPkUU DUyUUzPUUAkU|UU}P.UUliUUUQUUUKUJUKUIUIUJUKUIUIUIUJUQUQUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUU UU UU UU UU UUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUU UU!UU"UU#UU$UU%UU&UU'UU(UU)UU*UU+UU,UU-UU.UU/UU0UU1UU2UU3UU4UU5UU6UU7UU8UU9UU:UU;UU<UU=UU>UU?UU@UUAUUBUUCUUDUUEUUFUUGUUHUUIUUJUUKUULUUMUUNUUOUUPUUQUURUUSUUTUUUUUVUUWUUXUUYUUZUU[UU\UU]UU^U U_U U`U UaU UbU UcUUdUUeUUfUUgUUhUUiUUjUUkUUlUUmUUnUUoUUpUUqUUrUUsUUtUUuU UvU!UwU"UxU#UyU$UzU%U{U&U|U'U}U(U~U)UU*UU+UU,UU-UU.UU/UU0UU1UU2UU3UU4UU5UU6UU7UU8UU9UU:UU;UUU=UU>UU?UU@UUAUUBUUCUUDUUEUUFUUGUUHUUIUUJUUKUULUUMUUNUUOUUPUUQUURUUSUUTUUUUUVUUWUUXUUYUUZUU[UU\UU]UU^UU_UU`UUaUUbUUcUUdUUeUUfUUgUUhUUiUUjUUkUUlUUmUUnUUoUUpUUqUUrUUsUUtUUuUUvUIwUIxUIyUIzUI{UI|UI}UI~UIUIUIUQUQUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUU UU UU UU UU UUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUU UU!UI"UI#UI$UI%UI&UI'II(II)II*II+II,IQ-IQ.IU/IU0QU1QU2UU3UU4UU5UU6UU7UU8UU9UU:UU;UU<UU=UU>UU?UU@UUAUUBUUCUUDUUEUUFUUGUUHUUIUUJUUKUULUUMUUNUUOUUPUUQUURUUSUUTUUUUUVUUWUUXUUYUUZUU[UU\UU]UU^U U_U U`U UaU UbU UcUUdUUeUUfUUgUUhUUiUUjUUkUUlUUmUUnUUoUUpUUqUUrUUsUUtUUuU UvU!UwU"UxU#UyU$UzU%U{U&U|U'I}U(I~U)IU*IU+IU,IU-IU.IU/IU0QU1QU2UU3UU4UU5UU6UU7UU8UU9UU:UU;UUU=UU>UU?UU@UUAUUBUUCUUDUUEUUFUUGUUHUUIUUJUUKUULUUMUUNUUOUUPUUQUURUUSUUTUUUUUVUUWUUXUUYUUZUU[UU\UU]UU^UU_UU`UUaUUbUUcUUdUUeUUfUUgUUhUUiUUjUUkUUlUUmUUnUUoUUpUUqUUrUUsUUtUUuUUvUUwUUxUUyUUzUU{UU|UU}UU~UUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUU UU UU UU UU UUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUUU UU!UU"UU#UU$UU%UU&UU'UU(UU)UU*UU+UU,UU-UU.UU/UU0UU1UU2UU3UU4UU5UU6UU7UU8UU9UU:UU;UU<UU=UU>UU?UU@UUAUUBUUCUUDUUEUUFUUGUUHUUIUUJUUKUULUUMUUNUUOUUPUUQUURUUSUUTUUUUUVUUWUUXUUYUUZUU[UU\UU]UU^U U_U U`U UaU UbU UcUUdUUeUUfUUgUUhUUiUUjUUkUUlUUmUUnUUoUUpUUqUUrUUsUUtUUuU UvU!UwU"UxU#UyU$UzU%U{U&U|U'U}U(U~U)UU*UU+UU,UU-UU.UU/UU0UU1UU2UU3UU4UU5UU6UU7UU8UU9UU:UU;U UuUBduUw|UdvU}5UH$ wxu UH$ UUU`U UHz xwyu UHz UUU`U H$ yxzu H$ UUUU` UHz zy{u UHz UUU`U UHH{z|u UHHU`U HH|{u HHUU` UH$ }~v UH$ UUU`U UHz ~}v UHz UUU` HH~5v HH` dH3K ^ H RH RFootnoteHqv? ^ HzHz Single LineUH'Footnote   UHvDf ^ UHH Double LineH  U Double LineU H  U Single LineU UHZU TableFootnoteEGX-Rb ^ EPoEPo TableFootnotedHH HH,K` #UT UT`WIDEFIELD/PLANETARY CAMERA ^=UR UThSCIENCE DATA HEADER   L` Z` hhnoFSIMPLE  = F data conforms to the fits standard vhfFBITPIX  != 16 bits per data value hGDATATYPE "= INTEGER*2 datatype of the group array hENAXIS  #= 2 number of data axes hFNAXIS1  $= length of 1st data axis hFNAXIS2  %= length of 2nd data axis hFGROUPS  &= T data has groups h=FGCOUNT  '= 1 number of groups per observation (1-4) hFPCOUNT  (= 37 number of parameters  5 PSIZE = 1536 bits in each parameter R@UTblock I E`J `da nfo`anJ / GROUP PARAMETERS: OSS *`  8hIPTYPE1 = CRVAL1  ) right ascension of reference pixel (deg) F`R PDTYPE1 = REAL*8 C T`R PSIZE1 = 64 I bh IPTYPE2 = CRVAL2  * declination of reference pixel (deg) Sp` R PDTYPE2 = REAL*8 C ~`f R PSIZE2 = 64 I h IPTYPE3 = CRPIX1  + x-coordinate of reference pixel s` RR PDTYPE3 = REAL*4 C ` R PSIZE3 = 32 I h IPTYPE4 = CRPIX2  , y-coordinate of reference pixel `R PDTYPE4 = REAL*4 C `R PSIZE4 = 32 I hHPTYPE5 = CD1_1  - partial of the right ascension w.r.t. x `R PDTYPE5 = REAL*4 C `R PSIZE5 = 32 I  hHPTYPE6 = CD1_2  . partial of the right ascension w.r.t. y `R PDTYPE6 = REAL*4 C &`R PSIZE6 = 32 I 4hHPTYPE7 = CD2_1  / partial of the declination w.r.t. x B`R PDTYPE7 = REAL*4 C P`R PSIZE7 = 32 I ^hHPTYPE8 = CD2_2  0 partial of the declination w.r.t. y l`R PDTYPE8 = REAL*4 C z`R PSIZE8 = 32 I dZE dHH HH.t/ hJPTYPE9 = DATAMIN  1 minimum value of the data `R PDTYPE9 = REAL*4 C $`R PSIZE9 = 32 I 2hJPTYPE10 = DATAMAX  2 maximum value of the data @`R PDTYPE10= REAL*4 C N`R PSIZE10 = 32 I \hJPTYPE11 = MIR_REVR 3 is the image mirror reversed? j`R PDTYPE11= LOGICAL*4 C x`R PSIZE11 = 32 I hJPTYPE12 = ORIENTAT 4 orientation of the image (deg) `R PDTYPE12= REAL*4 C `R PSIZE12 = 32 I hJPTYPE13 = FILLCNT  5 number of segments containing fill `R PDTYPE13= INTEGER*4 C `R PSIZE13 = 32 I hIPTYPE14 = ERRCNT  6 number of segments containing errors `R PDTYPE14= INTEGER*4 C `R PSIZE14 = 32 I hJPTYPE15 = FPKTTIME 7 time of the first packet  =/ PDTYPE15= REAL*8 (Modified Julian or@ma#Date) C ,`4 R PSIZE15 = 64 I :h JPTYPE16 = LPKTTIME 8 time of the last packet H = / PDTYPE16= REAL*8 (Modified Julian ng T@#Date) C b` R PSIZE16 = 64 I ph IPTYPE17 = CTYPE1  9 first coordinate type C~ r O PDTYPE17= CHARACTER*8 @ C ` R PSIZE17 = 64 I h IPTYPE18 = CTYPE2  : second coordinate type i  O PDTYPE18= CHARACTER*8 @DaC ` R PSIZE18 = 64 I h JPTYPE19 = DETECTOR ; CCD detector: WFC 1-4, PC 5-8 ` R PDTYPE19= INTEGER*4 C `DaR PSIZE19 = 32 I ` J ` c nat"` J / GROUP PARAMETERS: PODPS 0`  >hIPTYPE20 = DEZERO  < Bias level from EED extended register L` R PDTYPE20= REAL*4 C Z` R PSIZE20 = 32 I hh JPTYPE21 = BIASEVEN = Bias level from EED extended register v` R PDTYPE21= REAL*4 C `;R PSIZE21 = 32 I d  HH =HH . h JPTYPE22 = BIASODD  > Bias level from EED extended register ` R PDTYPE22= REAL*4 C $` R PSIZE22 = 32 I 2hiaJPTYPE23 = GOODMIN  ? minimum value of the "good" pixels @` R PDTYPE23= REAL*4 C N` R PSIZE23 = 32 I \hBiJPTYPE24 = GOODMAX  @ maximum value of the "good" pixels j` R PDTYPE24= REAL*4 C x` R PSIZE24 = 32 I hJPTYPE25 = DATAMEAN A mean value of the "good" pixels `R PDTYPE25= REAL*4 C `R PSIZE25 = 32 I `J ` `= J / GROUP PARAMETERS: DATA QUALITY FILE SUMMARY `3= *4 h JPTYPE26 = GPIXELS  B number of "good" pixels (D ` R PDTYPE26= INTEGER*4 C `@R PSIZE26 = 32 I h JPTYPE27 = SOFTERRS C number of "soft error" pixels (D  ` R PDTYPE27= INTEGER*4 C .`AR PSIZE27 = 32 I <h JPTYPE28 = CALIBDEF D number of "calibration defect" pixels (D J` R PDTYPE28= INTEGER*4 C X`  R PSIZE28 = 32 I fh  JPTYPE29 = STATICD  E number of "static defect" pixels (D t` R PDTYPE29= INTEGER*4 C ` R PSIZE29 = 32 I h JPTYPE30 = ATODSAT  F number of "AtoD saturated" pixels (D `R PDTYPE30= INTEGER*4 C `R PSIZE30 = 32 I hJPTYPE31 = DATALOST G number of "data lost" pixels (D `R PDTYPE31= INTEGER*4 C `R PSIZE31 = 32 I hJPTYPE32 = BADPIXEL H number of "generic bad" pixels (D `R PDTYPE32= INTEGER*4 C `R PSIZE32 = 32 I `J ` *`= J / GROUP PARAMETERS: PHOTOMETRY 8`0= GERFh JPTYPE33 = PHOTMODE I Photometry mode T  O PDTYPE33= CHARACTER*24 = `@GC bern`xeR PSIZE33 = 192 I |h JPTYPE34 = PHOTFLAM J Inverse Sensitivity d HH HHH .`YPR PDTYPE34= REAL*4 C `ZER PSIZE34 = 32 I $h JPTYPE35 = PHOTZPT  K Zero point 2`!R PDTYPE35= REAL*4 C @`"R PSIZE35 = 32 I Nh# JPTYPE36 = PHOTPLAM L Pivot wavelength \`$ R PDTYPE36= REAL*4 C j`% R PSIZE36 = 32 I xh&InIPTYPE37 = PHOTBW  M RMS bandwidth of the filter `'R PDTYPE37= REAL*4 C `(R PSIZE37 = 32 I `)J `* `+= J / WFPC DATA DESCRIPTOR KEYWORDS `,5= *4 h- GINSTRUME N= WFPC instrument in use 5 =h. GROOTNAME O= rootname of the observation set JPTh/AMGFILETYPE P= SCI shp, ext, edq, sdq, sci R P`0 J `12   `2 J / SCIENCE INSTRUMENT CONFIGURATION .`3MS wid<h4 FCAMERA  Q= camera in use: WF (wide-field), PC (plan Jh5 DMODE  R= instr. mode: FULL (full res.), AREA (are Xh6 GSERIALS  S= serial clocks: ON, OFF f`7 J t`8  `9RIJ / IMAGE TYPE CHARACTERISTICS `: = h;enGIMAGETYP T= EXTERNAL DARK/BIAS/INTFLAT/KSPOTS/EXTERNAL/EARTH- = h<e GCDBSFILE U= NO GENERIC/BIAS/DARK/PREF/FLAT/MASK/ATOD/NO = h=t,FPKTFMT  V= packet format code h> DDATE  W= date file written (dd/mm/yy) `? J `@  <`ACAJ / FILTER CONFIGURATION `B  R=hC mGFILTNAM1 X= first filter name = hDclGFILTNAM2 Y= second filter name *hE GFILTER1  Z= first filter number (0-48) 8hF GFILTER2  [= second filter number (0-48) FhGGPFILTER1 \= Preflash Filter 1 number (0-48) XTEThHGPFILTER2 ]= Preflash Filter 2 number (0-48) T/Mb`IJ p`J h>~`K=J / INSTRUMENT STATUS USED IN DATA PROCESSING d  HH HH ./ `LON hM GTECTEMP1 ^= -1.00 TEC cold junction #1 temperature (Celciu $hNr GTECTEMP2 _= -1.00 TEC cold junction #2 temperature (Celciu 2hOerGTECTEMP3 `= -1.00 TEC cold junction #3 temperature (Celciu @hPr GTECTEMP4 a= -1.00 TEC cold junction #4 temperature (Celciu NhQerGTECTEMP5 b= -1.00 TEC cold junction #5 temperature (Celciu \hRltGTECTEMP6 c= -1.00 TEC cold junction #6 temperature (Celciu jhSltGTECTEMP7 d= -1.00 TEC cold junction #7 temperature (Celciu xhT GTECTEMP8 e= -1.00 TEC cold junction #8 temperature (Celciu `KhU GWBA3PCTM f= Bay 3 temperature (Celcius) hV FKSPOTS  g= Status of Kelsall spot lamps: ON, OFF hWGSHUTTER  h= UNKNOWN Shutter in place during preflash or INTF TEM`X J `Y  C c`ZmpJ / RSDP CONTROL KEYWORDS `[mp re h\GMASKCORR i= YES Do mask correction: YES, NO, DONE re h]GATODCORR j= Do A-to-D correction: YES, NO, DONE re h^GBLEVCORR k= Do bias level correction: YES, NO, DONE re h_GBIASCORR l= Do bias correction: YES, NO, DONE re  h`GPREFCORR m= Do preflash correction: YES, NO, DONE re .haGPURGCORR n= Do purge correction: YES, NO, DONE <hbGDARKCORR o= Do dark correction: YES, NO, DONE N, JhcGFLATCORR p= Do flat field correction: YES, NO, DONE r IXhdGDOSATMAP q= Output Saturated Pixel Map: YES, NO, DON fheGDOPHOTOM r= Fill photometry keywords: YES, NO, DONE KEYthf GDOHISTOS s= Make histograms: YES, NO, DONE Rhg DGOUTDTYPE t= REAL Output image datatype: REAL, LONG, SHORT R`h DJ `i D s l`jESJ / CALIBRATION REFERENCE FILES `k,  hlGMASKFILE u= name of the input DQF of known bad pixel ONEhmGATODFILE v= name of the A-to-D conversion file hnGBLEVFILE w= Engineering file with extended register hoGBLEVDFIL x= Engineering file DQF DOhpGBIASFILE y= name of the bias frame reference file O, hqGBIASDFIL z= name of the bias frame reference DQF DOhrGPREFFILE {= name of the preflash reference file *hsGPREFDFIL |= name of the preflash reference DQF SH8htGPURGFILE }= name of the purge reference file FhuGPURGDFIL ~= name of the purge reference DQF EFEThv GDARKFILE = name of the dark reference file Ebhw nGDARKDFIL = name of the dark reference DQF Ephx nGFLATFILE = name of the flat field reference file E~hy EGFLATDFIL = name of the flat field reference DQF Lde  HH HHre.e hzGPHOTTAB  = name of the photometry calibration table ce `{J $`| hs2`} J / DEFAULT KEYWORDS SET BY STSCI @`~  Nh pGSATURATE = 4095 Data value at which saturation occurs \h pFWSCALE  = 1.0 Scale factor for output image jh tEWZERO  = 0.0 Zero point for output image x`e J `e  e f`e J / PLANETARY SCIENCE KEYWORDS `e  hEPA_V3  = 0.0 position angle of v3 axis of HST hFRA_SUN  = 0.0 right ascension of the sun (deg) h nGDEC_SUN  = 0.0 declination of the sun (deg) h GEQNX_SUN = 2000.0 equinox of the sun 2h FMTFLAG  = F moving target flag h GEQRADTRG = 0.0 equatorial radius of target whihrsGFLATNTRG = 0.0 flattening of target r oh GNPDECTRG = 0.0 north pole declination of target t i h GNPRATRG  = 0.0 north pole right ascension of target .h GROTRTTRG = 0.0 rotation rate of target LAN<hORGLONGPMER = 0.0 longitude of prime meridian Jh0.GEPLONGPM = 0.0 epoch of longitude of prime meridian FRAXh GSURFLATD = 0.0 surface feature latitude _SUfh GSURFLONG = 0.0 surface feature longitude X_Sth GSURFALTD = 0.0 surface feature altitude LAG` J ` e ria` J / PODPS FILL VALUES `  hGPODPSFF  = 0=(no podps fill), 1=(podps fill present hGSTDCFFF  = 0=(no st dcf fill), 1=(st dcf fill prese et hGSTDCFFP  = st dcf fill pattern (hex) hGRSDPFILL = -100 bad data fill value for calibrated image `J ` `= J / EXPOSURE TIME AND RELATED INFORMATION `=  *h lGWEXPODUR = Commanded duration of exposure (seconds) 8h aGNSHUTA17 = Number of AP17 shutter B closes Fh GPREFTIME = Predicted preflash time (seconds) Th GDARKTIME = Dark time (seconds) bhGPURGTIME = -1 Time since last SuperPurge (seconds) resphGWEXPOTIM = Major frame pulse time preceding exposur pr~hGPSTRTIME = Predicted obs. start time (yyyy:ddd:hh: dFI bHH imHH . h GPSTPTIME = Predicted obs. stop time (yyyy:ddd:hh: `` J $` h2` J / EXPOSURE INFORMATION @`  NhP1GEQUINOX  = J2000 equinox of the celestial coordinate syst \hreGSUNANGLE = angle between sun and V1 axis (deg) jhseGMOONANGL = angle between moon and V1 axis (deg) 1 xhlaGSUN_ALT  = altitude of the sun above Earths limb ( h pGFGSLOCK  = commanded FGS lock (FINE,COARSE,GYROS,UN `bsJ ` hGDATE-OBS = UT date of start of observation (dd/mm/y h= GTIME-OBS = UT time of start of observation (hh:mm:s h GEXPSTART = exposure start time (Modified Julian Dat hFEXPEND  = exposure end time (Modified Julian Date) hGEXPTIME  = exposure duration (seconds)--calculated uinhl GEXPFLAG  = Exposure interruption indicator gle`1 J `V1 (d `J / TARGET & PROPOSAL ID .` h<h GTARGNAME = proposers target name `Jh GRA_TARG  = right ascension of the target (deg) (J20 `XhGDEC_TARG = declination of the target (deg) (J2000) n (fhGPEQUINOX = proposed equinox of celestial coordinate n (t`J ` hh GPROPOSID = PEP proposal identifier h= GPEP_EXPO = PEP exposure identifier including sequen l h= GLINENUM  = PEP proposal line number 1 h GSEQLINE  = PEP line number of defined sequence V1hGSEQNAME  = PEP define/use sequence name `J `  hEND   `  r`th a` *`DE A8`  dF`ta tT` ( b`PE Np`  p~` c sHH HH , `  #UT UT`WIDEFIELD/PLANETARY CAMERA =UR UTh= !EXTRACTED ENGINEERING DATA   L` Z`EX  hh eFSIMPLE  = F data conforms to the fits standard vh PFBITPIX  = 16 bits per data value h GDATATYPE = INTEGER*2 datatype of the group array NAMh ENAXIS  = 2 number of data axes h FNAXIS1  = 14 length of 1st data axis hFNAXIS2  = length of 2nd data axis hFGROUPS  = T data has groups hFGCOUNT  = 1 number of groups per observation (1-4) hFPCOUNT  = 3 number of parameters  5 PSIZE = 96 bits in each parameter A@block I A`J `da nfo`anJ / GROUP PARAMETERS: OSS *`  8h JPTYPE1 = FILLCNT   number of segments containing fill F` R PDTYPE1 = INTEGER*4 C T`R PSIZE1 = 32 I bh IPTYPE2 = ERRCNT   number of segments containing errors Sp` R PDTYPE2 = INTEGER*4 C ~`f R PSIZE2 = 32 I ` J ` A `k J / GROUP PARAMETERS: PODPS `  hJPTYPE3 = DETECTOR  the ccd number of the data ` R PDTYPE3 = INTEGER*4 C `R PSIZE3 = 32 I ` J `   ` J / WFPC DATA DESCRIPTOR KEYWORDS `s  ini&hGINSTRUME = WFPC instrument in use 4h GROOTNAME = rootname of the observation set Bh GFILETYPE = EXT shp, ext, edq, sdq, sci Ph FCTYPE1  = UNITLESS unitless, line, pixel, channel, sample, ^hPAFCTYPE2  = LINE unitless, line, pixel, channel, sample, l`J z`  TYPd  d HH HH . ` J / CALIBRATION FLAGS AND INDICATORS `  $hPCDMODE  = instr. mode: FULL (full res.), AREA (are 2hFCAMERA  = camera in use: WF (wide-field), PC (plan @hGFILTER1  = first filter number (0-48) NhGFILTER2  = second filter number (0-48) \`J j`= FCTx` E J / CALIBRATION KEYWORDS `   h  GLINEBEG  = 1 line number (1st line: wrt source format h GSAMPBEG  = 1 sample number (1st sample: wrt source fo H` J `  `AGJ / STATISTICAL KEYWORDS ` he:DDATE  = date this file was written (dd/mm/yy) hn GPODPSFF  = 0=(no podps fill); 1=(podps fill presen hr GSTDCFFF  = 0=(no st dcf fill); 1=(st dcf fill prese herGSTDCFFP  = st dcf fill pattern (hex)  ` J .`  / <`DSJ / TARGET & PROPOSAL ID J`  Xh (GTARGNAME = proposers target name fherGRA_TARG  = right ascension of the target (deg) (J20 th GDEC_TARG = declination of the target (deg) (J2000) `h GPEQUINOX = proposed equinox of celestial coordinate ``J ` n h= GPROPOSID = PEP proposal identifier r h = GPEP_EXPO = PEP exposure identifier including sequen erh!= GLINENUM  = PEP proposal line number h" GSEQLINE  = PEP line number of defined sequence h#GSEQNAME  = PEP define/use sequence name `$J `%  h&END   `  r*`'th a8`(  F`)DE AT`*  db`+ta tp`, ~`-PE NHH uiHH,`.  #UT UT`0 WIDEFIELD/PLANETARY CAMERA =UR UTh1STANDARD HEADER PACKET   RL`2  PZ`3fi hh4FSIMPLE  = F data conforms to the fits standard vh5erFBITPIX  = 16 bits per data value h6 GDATATYPE = UNSIGNED*2 datatype of the group array deh7 ENAXIS  = 1 number of data axes eh8 FNAXIS1  = 965 length of first 1st data axis h9 FGROUPS  = T data has groups h:FGCOUNT  = 1 number of groups h;FPCOUNT  = 3 number of parameters  <4 PSIZE = 128 bits in the parameter @<block I `=WIJ `>2  `?3J / GROUP PARAMETERS: OSS `@rd *hAerJPTYPE1 = FILLCNT   number of segments containing fill 8`BDAR PDTYPE1 = INTEGER*4 C F`CR PSIZE1 = 32 I ThD IPTYPE2 = ERRCNT   number of segments containing errors Sb`E R PDTYPE2 = INTEGER*4 C p`Ff R PSIZE2 = 32 I ~hG JPTYPE3 = PKTTIME   time from the packet ancillary data  H/ PDTYPE3 = REAL*8 (Modified Julian I @HWI#Date) C `I R PSIZE3 = 64 I `JRSJ `K=  ILL`LerJ / WFPC DATA DESCRIPTOR KEYWORDS `M hN GINSTRUME = WFPC instrument in use hO GROOTNAME = rootname of the observation set  hPs GFILETYPE = SHP shp, ext, edq, sdq, sci hQ FCTYPE1  = UNITLESS unitless, line, pixel, channel, sample, $hR GDEFAULTS = F default values used in reformatting thes = 2`SJ @`T  fieN`UJ / STATISTICAL KEYWORDS \`V  jhW DDATE  = date this file was written (dd/mm/yy) xhX GDCFOBSN  = DCF observation number in SHP dPCRDHH HHRU. hYtrGPROC_TYP = NORMAL level of reprocessing (NORMAL, MINOR, MA  `ZtnJ $`[,  edq2`\ J / TIME CONVERSION KEYWORDS @`]sa Nh^ GCLKDRFTR = spacecraft clock drift rate = \h_GCLKRATE  = spacecraft clock rate jh` GSPCLINCN = spacecraft clock at UTC0 ICAxha EUTCO1  = bytes 5-8 of UTC0 =hbhiEUTCO2  = bytes 1-4 of UTC0 hc oDUTC0  = Coordinated Universal Time (Mod Julian D `dJ `e  `f_TJ / CDBS KEYWORDS `g  hh GWBA1LGCT = bay 1 A1 temperature (deg C) hi GWBA2EDTM = bay 2 A1 temperature (deg C) hj GWBA3PCTM = bay 3 A1 temperature (deg C) rahk= GWBA4WFTM = bay 4 A1 temperature (deg C) hl GWBA5TEMP = bay 5 A1 temperature (deg C) C0  hmCAGWCANLTIM = time of cancel operation command .hnGWCH1HJTM = camera head hot junction 1 temperature ( <hoGWCH7HJTM = hot junction 7 temperature (deg C) uliJhpGWCHVLTS  = camera head voltage (volts) XhqGWEXPTMHI = maj frame pulse time preceding exp start fhr GWEXPOTIM = maj frame pulse time preceding exp start Tths bGWEXPOCMD = expose command image Mht bGWEXPODUR = commanded duration of exposure (sec) Mhu bGWFCSTAT  = control/status word for exposure Mhv bGWFOCTM01 = time of first close B shutter Phw bGWFOCTM02 = slot for second open B shutter time Mhx tGWFOCTM03 = slot for second close B shutter time Mhy cGWFOCTM04 = slot for third open B shutter time Mhz hGWFOCTM05 = slot for third close B shutter time h{ cGWFOCTM06 = slot for fourth open B shutter time Ih| mGWFOCTM07 = slot for fourth close B shutter time Mh} mGWFOCTM08 = slot for fifth open B shutter time Dh~ eGWFOCTM09 = slot for fifth close B shutter time Rh cGWFOCTM10 = slot for sixth open B shutter time *h cGWFOCTM11 = slot for sixth close B shutter time 18h tGWFOCTM12 = slot for seventh open B shutter time 2Fh sGWFOCTM13 = slot for seventh close B shutter time 3Th sGWFOCTM14 = slot for eighth open B shutter time 4bh sGWFOCTM15 = slot for eighth close B shutter time 5ph sGWFOSPOSV = relative focus position voltage (counts) 6~hGWHOLDHTR = replacement heater on (ON, OFF) 7d c HH HHhu.imhGWHTPIHTR = heat pipe heater on (ON, OFF) tihGWMECHPWR = mechanism power off (ON, OFF) tim$hGWMECIFAT = mechanical interface A temperature (deg ti2hGWMECIFBT = mechanical interface B temperature (deg r t@hGWMECIFCT = mechanical interface C temperature (deg er NhGWMECVOLT = mechanism supply voltage (volts) ti\hGWN15VADC = - 15 v adc supply (counts) r tjhGWN15VANA = - 15 v analog supply (counts) e (xhGWP5VADC  = + 5 volts ADC supply (volts) ) hGWP5VLGC  = + 5 volts logic supply (volts) hGWP10VLGC = +10 volts logic supply (volts) Rh hGWP15VADC != +15 volts ADC supply (volts) Rh mGWP15VANA "= +15 volts analog supply (volts) Th mGWPCTECA  #= OLDTEC current (mA) Th mGWPCTECV  $= OLDTEC supply voltage (volts) Th mGWPTECPWR %= OLDTEC power off (ON, OFF) Th mGWPWRONF  &= power off (ON, OFF) Ch -GWPYRMDTM '= optical bench pyramid bulkhead temperatu Ah -GWRADATMP (= OLDRadiator +V2HP 3/4/7/8 temperature (d h +GWRIUATEM )= RIU A temperature (deg C)  h +GWRIUBTEM *= RIU B temperature (deg C) C.h +GWSTRCTEM += SOFA/shutter mounting plate temperature C<h +GWTIMEXPO ,= time of 110 msec expose command AJh +GWUVMTEMP -= OLDRadiator -V2HP 1/2/5/6 temperature (d Xh OGWWCANCM  .= cancel operation command bit fh OGWWLOGOF  /= log overflow bit Rth OFWWSCAP  0= shutter control application processor bi h GWBLDASNR 1= Blade A sensor: 0:closed, 1:open RMDh GWBLDBSNR 2= Blade B sensor: 0:closed, 1:open DAT` J `  U A`C)J / SUPPORT SCHEDULE: PROGRAMMATIC DATA `C) hGPROGRMID 3= program id (base 36) mpehGPR_INV_L 4= last name of principal investigator d hGPR_INV_F 5= first name of principal investigator erahGPR_INV_M 6= middle initial of principal investigator hGAFFILIAT 7= proposal class (eg: GO, IDT, OS) hGACCPDATE 8= proposal acceptance date (yyyyddd) ces*hGOBSET_ID 9= observation set id 8hGCALIBRAT := Y calibrate data flag FhGOBSERVTN ;= observation number (base 36) ThGEXPACKET <= expected number of source packets ULEbhA GPRODTYPE == output product medium type Dph pGOPFORMAT >= output product format specification L~h lGCALIBTYP ?= calibration type : E, I or Blank Fdri HH HHip.eshGCDBSDATA @= cdbs notification flag: CAL or FALSE S) `J $` h2` J / SUPPORT SCHEDULE: FLAGS AND INDICATORS @`  NhatGSS_MODE  A= instr. mode: FULL (full res.), AREA (are \h nGSS_CAMRA B= camera in use: WF (wide-field), PC (plan jhmbGSS_FILT1 C= first filter number (0-48) xhucGSS_FILT2 D= second filter number (0-48) hucGRTAMATCH E= above f&i match RTA (TRUE,FALSE,NO RTA F ` tJ ` hGSS_PFTIM F= Predicted preflash time in seconds h= GSS_PFIL1 G= Preflash Filter 1 number (0-48) h GSS_PFIL2 H= Preflash Filter 2 number (0-48) hGTARGTYPE I= qesiparm target type `J `.) A (`J / SUPPORT SCHEDULE: DATA GROUP II DATA ` mb h= GWRD11_14 J= word 11/14 (0-255) uc.h= GPSTRTIME K= predicted obs. start time (yyyy.ddd:hh:m uc<h= GPSTPTIME L= predicted obs. stop time (yyyy.ddd:hh:mm tJh GAPEROBJ  M= si object aperture id XhGAPERSKY  N= si sky aperture id fhGTARG_ID  O= SPSS target ID from proposal+target no. thGAPERTYPE P= aperture type (SICS, SIAS, SIDS) hERA_V1  Q= 0.0 right ascension of v1 axis of st (deg) hFDEC_V1  R= 0.0 declination of v1 axis of st (deg) hEPA_V3  S= 0.0 position angle of v3 axis of st (deg) Ph GGAPEROFFX T= 0.0 x comp of object offset in aperture (arc = h= GAPEROFFY U= 0.0 y comp of object offset in aperture (arc = h= GANGLESEP V= 0.0 ang separation of target from ref obj (a = h= GDGESTAR  W= FGS ID(F1,F2,F3) concat. w/ dom. gd. sta h= GSGESTAR  X= FGS ID(F1,F2,F3) concat. w/ subdom. gd. h= GPA_APER  Y= 0.0 position ang of aperture used with targe h= FPA_REF  Z= 0.0 position ang of target from ref. object h GSAAAVOID [= SAA model for SAA Avoidance (range 02-99 hhQGTARAQMOD \= target acquisition mode (values 00, 01, *h 0GPOSTNSTX ]= 0.0 position of space telescope x axis (km) EPA8h GPOSTNSTY ^= 0.0 position of space telescope y axis (km) ROFFh GPOSTNSTZ _= 0.0 position of space telescope z axis (km) ROFTh GVELOCSTX `= 0.0 vel of space telescope along x axis (km/ LESbh GVELOCSTY a= 0.0 vel of space telescope along y axis (km/ STAph GVELOCSTZ b= 0.0 vel of space telescope along z axis (km/ STA~h FRA_SUN  c= 0.0 right ascension of the sun (deg) dn !itHH PAHHta.rohGDEC_SUN  d= 0.0 declination of the sun (deg) e (hGRA_MOON  e= 0.0 right ascension of the moon (deg) alu$hGDEC_MOON f= 0.0 declination of the moon (deg) e x2hGVELABBRA g= 0.0 aberration in position of the target e y@hGANNPARRA h= 0.0 par. shift in position, non-solar sys ta e zNhGV2APERCE i= 0.0 V2 offset of target from aper. center (a ng \hGV3APERCE j= 0.0 V3 offset of target from aper. center (a ng jhGEQRADTRG k= 0.0 equatorial radius of target (km) ng xhGFLATNTRG l= 0.0 flattening of target (dehGNPDECTRG m= 0.0 north pole declination of target (deg) hGNPRATRG  n= 0.0 north pole right ascension of target (de h dGROTRTTRG o= 0.0 rotation rate of target h rGLONGPMER p= 0.0 longitude of prime meridian (deg) Nh dGEPLONGPM q= 0.0 epoch of longitude of prime meridian (se Ah aGSURFLATD r= 0.0 surface feature latitude (deg) Ah pGSURFLONG s= 0.0 surface feature longitude (deg) Eh VGSURFALTD t= 0.0 surface feature altitude (km) Eh VFMTFLAG  u= moving target flag; T if it is a moving h GS0INVMAG v= 0.0 S0 inverse magnitude TNTh FS0XDIR  w= 0.0 S0 X direction  h0 FS0YDIR  x= 0.0 S0 Y direction .h= FS0ZDIR  y= 0.0 S0 Z direction <h GTRK_TYPE z= track 48 or track 51 commanding used (T4 hJh GT51_RATE {= 0.0 rate of motion commanded (arcsecs/sec) hXh GT51_ANGL |= 0.0 position angle of motion of aperture (de hfhGTARGDIST }= distance to target from Earths center ( hth GPAR_CORR ~= parallax correction used (T or F) hh FRA_REF  = 0.0 right ascension of reference object (deg hGDEC_REF  = 0.0 declination of reference object (deg) h` J ` w 0 `onJ / ONBOARD EPHEMERIS MODEL PARAMETERS `  hGEPCHTIME = 0.0 epoch time of parameters (secs since 1/1 hGSDMEANAN = 0.0 2nd deriv coef for mean anomaly (revs/se g uhGSDMA3SQ  = 0.0 3 * (SDMEANAN**2) radians/second**2. ecshGHSTHORB  = 0.0 half the duration of the ST orbit (secon erthGCIRVELOC = 0.0 circular orbit linear velocity (meters/s s ch GCOSINCLI = 0.0 cosine of inclination F)*h GECCENTRY = 0.0 eccentricity jec8h GECCENTX2 = 0.0 eccentricity times 2 eg)Fh GECBDX4D3 = 0.0 eccentricity cubed times 4/3 Th GESQDX5D2 = 0.0 eccentricity squared times 5/2 ERIbh FECBDX3  = 0.0 eccentricity cubed times 3 ph GFDMEANAN = 0.0 1st derivative coef for mean anomly (rev EAN~h GRCASCNRD = 0.0 rt chge right ascension ascend node (rad A3SdAN". HH ORHHf . ohGRCASCNRV = 0.0 rt chge right ascension ascend node (rev cithGARGPERIG = 0.0 argument of perigee (revolutions/second) $hGMEANANOM = 0.0 mean anomaly (radians) 2hGRCARGPER = 0.0 rate change of argument of perigee (revs @hGRASCASCN = 0.0 right ascension of ascending node (revol /3 NhGSINEINCL = 0.0 sine of inclination 5/\hGSEMILREC = 0.0 semi-latus rectum (meters) jhGTIMEFFEC = 0.0 time parameters took effect (secs since nomxhGOBSSTRTT = 0.0 predicted obs. start time (secs since 1/ no`J ` `J / PROPOSAL INFO: Instrument Configuration `en e (hFCONFIG  = proposed instrument configuration hFOPMODE  = proposed operation mode h FSPEC_1  = spectral element h! FSPEC_2  = spectral element h"l FSPEC_3  = spectral element h# FSPEC_4  = spectral element h$ FAPER_1  = instrument aperture  h% (FAPER_2  = instrument aperture .h&meFAPER_3  = instrument aperture <h' FAPER_4  = instrument aperture J`( J X`) f`* J / PROPOSAL INFO: Target Description t`+  prh,odGTAR_TYPE = target type ctrh- GTARDESCR = target description l eh. GTARDESC2 = target description (cont.) emeh/ GTARGCAT  = first target category t h0 GTARKEY1  = target key description for targcat h1 GTARKEY2  = target key description for targcat h2GTARKEY3  = target key description for targcat h3GTARKEY4  = target key description for targcat h4GTARKEY5  = target key description for targcat h5GTARGCAT2 = second target category : Th6 GTARKEY6  = target key description for targcat2 Eh7 tGTARKEY7  = target key description for targcat2 R*h8 tGTARKEY8  = target key description for targcat2 28h9 tGTARKEY9  = target key description for targcat2 Fh: fGTARKEY10 = target key description for targcat2 Th; tFALIAS1  = synonym for target name bh< FALIAS2  = synonym for target name p`= J ~`>  td #4HH tHH.`?CAJ / PROPOSAL INFO: Flux Information `@EY  $hAgeEMAG_V  = expected V Magnitude 2hB tFSURF_V  = expected V surface brightness @hC EMAG_B  = expected B Magnitude ANhD FSURF_B  = expected B surface brightness \hE= EMAG_U  = expected U Magnitude ;jhF FSURF_U  = expected U surface brightness xhG EMAG_R  = expected R Magnitude =hH FSURF_R  = expected R surface brightness hIGCOL_B_V  = expected B-V color hJGCOL_U_B  = expected U-B color hKOPGCOL_V_R  = expected V-R color  hLgeEE_B_V  = E(B-V) hM tGEXTNCT_V = extinction in V @`NMAJ `O_B  `PctJ / PROPOSAL INFO: Exposure Information `QU  tudhR GCMD_EXP  = commanded time per exposure (from TRANS) bri `S J .`T <`UJ / PROPOSAL INFO: Moving Target Information J`V  XhWV GMT_LV1_1 = moving target information fhXB GMT_LV1_2 = moving target information thYR GMT_LV1_3 = moving target information hZ GMT_LV1_4 = moving target information h[ GMT_LV1_5 = moving target information h\ GMT_LV2_1 = moving target information cth] GMT_LV2_2 = moving target information U h^GMT_LV2_3 = moving target information TRAh_GMT_LV2_4 = moving target information h`GMT_LV2_5 = moving target information : MhamaGMT_LV3_1 = moving target information 1hb mGMT_LV3_2 = moving target information 2hc mGMT_LV3_3 = moving target information 3hd mGMT_LV3_4 = moving target information 4he mGMT_LV3_5 = moving target information 5*`f mJ 8`g m taF`h J / PROPOSAL INFO: Target Properties T`i  bhjGREDSHIFT = expected redshift of target phkGPARALLAX = expected parallax of target ~hlEMU_RA  = expected RA proper motion dMT$ HH HH%= hmFMU_DEC  = expected DEC proper motion hninGMU_EPOCH = epoch of the proper motion  $hoinGSP_TYPE  = spectral type  2hpinGRAD_VEL  = radial velocity (km/sec) @`q J N`r  \`sNFJ / PROPOSAL INFO: Spatial Scan Info j`tHI  xhuecGSCAN_TYP = C:bostrophidon; D:Cwith dwell; N:unkno  hvecGSCAN_WID = scan width (arcsec) hwteGANG_SIDE = angle between sides of parallelogram (de hx GDWELL_LN = dwell points per line for scan pointing hyGDWELL_TM = wait time (duration) at each dwell point hzGSCAN_ANG = position angle of scan line (deg) h{GSCAN_RAT = commanded rate of the line scan (arcsec/ h|GNO_LINES = number of lines per scan (1-99) h}GSCAN_LEN = scan length (arcsec) h~GSCAN_COR = scan coordinate frame of ref: celestial, : S` J ` C rop `weJ / TARGET & PROPOSAL ID .`  <hGTARGNAME = proposers target name am JhGRA_TARG  = right ascension of the target (deg) (J20 ntiXhGDEC_TARG = declination of the target (deg) (J2000) pofhGPEQUINOX = proposed equinox of celestial coordinate t`J ` h= GPROPOSID = PEP proposal identifier h= GPEP_EXPO = PEP exposure identifier including sequen h= GLINENUM  = PEP proposal line number h GSEQLINE  = PEP line number of defined sequence ChGSEQNAME  = PEP define/use sequence name `J `  hEND   `/  r%?H5v (%?HDDm h  o   tUDFHDvFK5 = &CqFGDIJes al=C?&71/2&4H, 4"/ /A{3'A2""/2C+$nC gl CiGFHDHK igli7 +i#miFopoCqHGIDGJK C&1&^2/c4H)J4"&i/A{"ˣ'A#S"/#CwC2C IHJDFJ  2C=CF &CqJIKDHKSEFIgl .+HKJDmbGJq%duLeftdv Right den Reference dd d ddd d rddd d  d  d ! 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