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- Begin FitsChan # I/O channels to FITS files
- Card = 1 # Index of current card
-# Encod = "NATIVE" # Encoding system
-# FitsDg = 15 # No. of digits for floating point values
-# DfB1950 = 1 # Default to FK4 B1950
-# CdMat = 0 # Use PC matrix
-# CarLin = 0 # Use full FITS-WCS CAR projections
-# Iwc = 0 # Do not include an IWC Frame
-# Warn = "Tnx Zpx BadCel BadMat BadCTYPE" # Warnings to be reported
- Nm1 = "NAXIS" # FITS keyword name
- Ty1 = "integer" # FITS keyword data type
- Dt1 = 1 # FITS keyword value
- Nm2 = "NAXIS1" # FITS keyword name
- Ty2 = "integer" # FITS keyword data type
- Dt2 = 100 # FITS keyword value
- Nm3 = "CTYPE1" # FITS keyword name
- Ty3 = "string" # FITS keyword data type
- Dt3 = "fred" # FITS keyword value
- Nm4 = "CDELT1" # FITS keyword name
- Ty4 = "floating point" # FITS keyword data type
- Dt4 = 0 # FITS keyword value
- Nm5 = "CRPIX1" # FITS keyword name
- Ty5 = "integer" # FITS keyword data type
- Dt5 = 50 # FITS keyword value
- Nm6 = "CUNIT1" # FITS keyword name
- Ty6 = "string" # FITS keyword data type
- Dt6 = "GHz" # FITS keyword value
- Nm7 = " " # FITS keyword name
- Ty7 = "comment" # FITS keyword data type
- End FitsChan
- Begin FrameSet # Set of inter-related coordinate systems
-# Title = "IAU (1958) galactic coordinates; zenithal equal area projection" # Title of coordinate system
-# Naxes = 2 # Number of coordinate axes
-# Domain = "SKY" # Coordinate system domain
-# Epoch = 1950 # Besselian epoch of observation
-# Lbl1 = "Galactic longitude" # Label for axis 1
-# Lbl2 = "Galactic latitude" # Label for axis 2
-# System = "GALACTIC" # Coordinate system type
-# Uni1 = "degrees" # Units for axis 1
-# Uni2 = "degrees" # Units for axis 2
-# Bot2 = -1.5707963267949 # Lowest legal axis value
-# Top2 = 1.5707963267949 # Highest legal axis value
- IsA Frame # Coordinate system description
- Nframe = 2 # Number of Frames in FrameSet
- Base = 1 # Index of base Frame
- Currnt = 2 # Index of current Frame
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- Frm1 = # Frame number 1
- Begin Frame # Coordinate system description
- Title = "Pixel Coordinates" # Title of coordinate system
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-# Lbl2 = "Pixel axis 2" # Label for axis 2
- Ax1 = # Axis number 1
- Begin Axis # Coordinate axis
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- End Axis
- Ax2 = # Axis number 2
- Begin Axis # Coordinate axis
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- End Frame
- Frm2 = # Frame number 2
- Begin SkyFrame # Description of celestial coordinate system
- Ident = " " # Permanent Object identification string
- IsA Object # AST Object
-# Title = "IAU (1958) galactic coordinates; zenithal equal area projection" # Title of coordinate system
- Naxes = 2 # Number of coordinate axes
-# Domain = "SKY" # Coordinate system domain
- Epoch = 1950 # Besselian epoch of observation
-# Lbl1 = "Galactic longitude" # Label for axis 1
-# Lbl2 = "Galactic latitude" # Label for axis 2
- System = "GALACTIC" # Coordinate system type
-# Uni1 = "degrees" # Units for axis 1
-# Uni2 = "degrees" # Units for axis 2
-# Bot2 = -1.5707963267949 # Lowest legal axis value
-# Top2 = 1.5707963267949 # Highest legal axis value
- Ax1 = # Axis number 1
- Begin SkyAxis # Celestial coordinate axis
- End SkyAxis
- Ax2 = # Axis number 2
- Begin SkyAxis # Celestial coordinate axis
- End SkyAxis
- IsA Frame # Coordinate system description
- Proj = "zenithal equal area" # Description of sky projection
- SRefIs = "Ignored" # Not rotated (ref. pos. is ignored)
- SRef1 = -2.61046557479594 # Ref. pos. l -149.5687
- SRef2 = -0.344845661720836 # Ref. pos. b -19.7582
- End SkyFrame
- Map2 = # Mapping between nodes 1 and 2
- Begin CmpMap # Compound Mapping
- Nin = 2 # Number of input coordinates
- IsSimp = 1 # Mapping has been simplified
- IsA Mapping # Mapping between coordinate systems
- MapA = # First component Mapping
- Begin WinMap # Map one window on to another
- Nin = 2 # Number of input coordinates
- Invert = 0 # Mapping not inverted
- IsA Mapping # Mapping between coordinate systems
- Sft1 = -150.5 # Shift for axis 1
- Sft2 = -150.5 # Shift for axis 2
- End WinMap
- MapB = # Second component Mapping
- Begin CmpMap # Compound Mapping
- Nin = 2 # Number of input coordinates
- IsA Mapping # Mapping between coordinate systems
- MapA = # First component Mapping
- Begin MatrixMap # Matrix transformation
- Nin = 2 # Number of input coordinates
- Invert = 0 # Mapping not inverted
- IsA Mapping # Mapping between coordinate systems
- M0 = -0.020943951023932 # Forward matrix value
- M1 = 0.020943951023932 # Forward matrix value
- Form = "Diagonal" # Matrix storage form
- End MatrixMap
- MapB = # Second component Mapping
- Begin CmpMap # Compound Mapping
- Nin = 2 # Number of input coordinates
- IsA Mapping # Mapping between coordinate systems
- InvA = 1 # First Mapping used in inverse direction
- MapA = # First component Mapping
- Begin WcsMap # FITS-WCS sky projection
- Nin = 2 # Number of input coordinates
- Invert = 1 # Mapping inverted
- IsA Mapping # Mapping between coordinate systems
- Type = "ZEA" # Zenithal equal area projection
- End WcsMap
- MapB = # Second component Mapping
- Begin CmpMap # Compound Mapping
- Nin = 2 # Number of input coordinates
- IsA Mapping # Mapping between coordinate systems
- InvA = 1 # First Mapping used in inverse direction
- MapA = # First component Mapping
- Begin SphMap # Cartesian to Spherical mapping
- Nin = 3 # Number of input coordinates
- Nout = 2 # Number of output coordinates
- Invert = 1 # Mapping inverted
- IsA Mapping # Mapping between coordinate systems
- UntRd = 1 # All input vectors have unit length
- PlrLg = 0 # Polar longitude (rad.s)
- End SphMap
- MapB = # Second component Mapping
- Begin CmpMap # Compound Mapping
- Nin = 3 # Number of input coordinates
- Nout = 2 # Number of output coordinates
- IsA Mapping # Mapping between coordinate systems
- MapA = # First component Mapping
- Begin MatrixMap # Matrix transformation
- Nin = 3 # Number of input coordinates
- Invert = 0 # Mapping not inverted
- IsA Mapping # Mapping between coordinate systems
- M0 = 0.291480364581799 # Forward matrix value
- M1 = 0.506505471460186 # AST version 4.3- 0
-PutCards Ncards = 7
-PutCards Card = 1
-PutCards Card = 8
-PutCards Ncards = 7
-PutCards Card = 1
-
-
-
-
- FITS test number 1
- ====================
-
-
-
-AST_SHOW:
-
-REG_SINK:
-SIMPLE = T / Written by IDL: 30-Jul-1997 05:35:42.00
-BITPIX = -32 / Bits per pixel.
-NAXIS = 2 / Number of dimensions
-NAXIS1 = 300 / Length of x axis.
-NAXIS2 = 300 / Length of y axis.
-COMMENT
-COMMENT This file was produced by the SkyView survey analysis system from
-COMMENT available astronomical surveys. The data are formatted
-COMMENT as a simple two-dimensional FITS image with the same units as
-COMMENT the orginal survey. A single ASCII table extension may be present
-COMMENT which describes catalog objects found within the field of view.
-COMMENT Copies of relevant copyright notices are included in this file.
-COMMENT
-COMMENT Questions should be directed to:
-COMMENT
-COMMENT scollick@skyview.gsfc.nasa.gov
-COMMENT or
-COMMENT mcglynn@grossc.gsfc.nasa.gov
-COMMENT
-COMMENT SkyView
-COMMENT Code 668.1
-COMMENT Goddard Space Flight Center, Greenbelt, MD 20771
-COMMENT 301-286-7780
-COMMENT
-COMMENT SkyView is supported by NASA ADP grant NAS 5-32068.
-COMMENT
-SURVEY = 'COBE DIRBE'
-BUNITS = 'MJy/sr '
-ORIGIN = 'CDAC ' / Cosmology Data Analysis Center
-TELESCOP= 'COBE ' / COsmic Background Explorer satellite
-INSTRUME= 'DIRBE ' / COBE instrument [DIRBE, DMR, FIRAS]
-PIXRESOL= 9 / Quad tree pixel resolution [6, 9]
-DATE = '27/09/94' / FITS file creation date (dd/mm/yy)
-DATE-MAP= '16/09/94' / Date of original file creation (dd/mm/yy)
-COMMENT COBE specific keywords
-DATE-BEG= '08/12/89' / date of initial data represented (dd/mm/yy)
-DATE-END= '25/09/90' / date of final data represented (dd/mm/yy)
-COMMENT
-COMMENT THE COBE DIRBE map is a combination of the original ten
-COMMENT band passes with the following wavelengths:
-COMMENT Band 1 - 1.25 microns
-COMMENT Band 2 - 2.2 microns
-COMMENT Band 3 - 3.5 microns
-COMMENT Band 4 - 4.9 microns
-COMMENT Band 5 - 12 microns
-COMMENT Band 6 - 25 microns
-COMMENT Band 7 - 60 microns
-COMMENT Band 8 - 100 microns
-COMMENT Band 9 - 140 microns
-COMMENT Band 10 - 240 microns
-COMMENT
-
-Objects written: 1
-
-Native Encoding:
-
-COMMENT AST ++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ AST
-COMMENT AST WCS information in AST format AST
-COMMENT AST See http://www.starlink.ac.uk/ast/ AST
-COMMENT AST Beginning of AST data for FrameSet object AST
-COMMENT AST ................................................................ AST
-BEGAST_A= 'FrameSet' / Set of inter-related coordinate systems
-NFRAME_A= 2 / Number of Frames in FrameSet
-BASE_A = 1 / Index of base Frame
-CURRNT_A= 2 / Index of current Frame
-LNK2_A = 1 / Node 2 is derived from node 1
-FRM1_A = ' ' / Frame number 1
-BEGAST_B= 'Frame ' / Coordinate system description
-TITLE_A = 'Pixel Coordinates' / Title of coordinate system
-NAXES_A = 2 / Number of coordinate axes
-DOMAIN_A= 'GRID ' / Coordinate system domain
-AX1_A = ' ' / Axis number 1
-BEGAST_C= 'Axis ' / Coordinate axis
-LABEL_A = 'Pixel axis 1' / Axis Label
-ENDAST_A= 'Axis ' / End of object definition
-AX2_A = ' ' / Axis number 2
-BEGAST_D= 'Axis ' / Coordinate axis
-LABEL_B = 'Pixel axis 2' / Axis Label
-ENDAST_B= 'Axis ' / End of object definition
-ENDAST_C= 'Frame ' / End of object definition
-FRM2_A = ' ' / Frame number 2
-BEGAST_E= 'SkyFrame' / Description of celestial coordinate system
-IDENT_A = '" " ' / Permanent Object identification string
-ISA_A = 'Object ' / AST Object
-NAXES_B = 2 / Number of coordinate axes
-EPOCH_A = 1950.0 / Besselian epoch of observation
-SYSTEM_A= 'GALACTIC' / Coordinate system type
-AX1_B = ' ' / Axis number 1
-BEGAST_F= 'SkyAxis ' / Celestial coordinate axis
-ENDAST_D= 'SkyAxis ' / End of object definition
-AX2_B = ' ' / Axis number 2
-BEGAST_G= 'SkyAxis ' / Celestial coordinate axis
-ENDAST_E= 'SkyAxis ' / End of object definition
-ISA_B = 'Frame ' / Coordinate system description
-PROJ_A = 'zenithal equal area'/ Description of sky projection
-SREFIS_A= 'Ignored ' / Not rotated (ref. pos. is ignored)
-SREF1_A = -2.61046557479594 / Ref. pos. l -149.5687
-SREF2_A = -0.344845661720836 / Ref. pos. b -19.7582
-ENDAST_F= 'SkyFrame' / End of object definition
-MAP2_A = ' ' / Mapping between nodes 1 and 2
-BEGAST_H= 'CmpMap ' / Compound Mapping
-NIN_A = 2 / Number of input coordinates
-ISSIMP_A= 1 / Mapping has been simplified
-ISA_C = 'Mapping ' / Mapping between coordinate systems
-MAPA_A = ' ' / First component Mapping
-BEGAST_I= 'WinMap ' / Map one window on to another
-NIN_B = 2 / Number of input coordinates
-INVERT_A= 0 / Mapping not inverted
-ISA_D = 'Mapping ' / Mapping between coordinate systems
-SFT1_A = -150.5 / Shift for axis 1
-SFT2_A = -150.5 / Shift for axis 2
-ENDAST_G= 'WinMap ' / End of object definition
-MAPB_A = ' ' / Second component Mapping
-BEGAST_J= 'CmpMap ' / Compound Mapping
-NIN_C = 2 / Number of input coordinates
-ISA_E = 'Mapping ' / Mapping between coordinate systems
-MAPA_B = ' ' / First component Mapping
-BEGAST_K= 'MatrixMap' / Matrix transformation
-NIN_D = 2 / Number of input coordinates
-INVERT_B= 0 / Mapping not inverted
-ISA_F = 'Mapping ' / Mapping between coordinate systems
-M0_A = -0.020943951023932 / Forward matrix value
-M1_A = 0.020943951023932 / Forward matrix value
-FORM_A = 'Diagonal' / Matrix storage form
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-BEGAST_L= 'CmpMap ' / Compound Mapping
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-INVA_A = 1 / First Mapping used in inverse direction
-MAPA_C = ' ' / First component Mapping
-BEGAST_M= 'WcsMap ' / FITS-WCS sky projection
-NIN_F = 2 / Number of input coordinates
-INVERT_C= 1 / Mapping inverted
-ISA_H = 'Mapping ' / Mapping between coordinate systems
-TYPE_A = 'ZEA ' / Zenithal equal area projection
-ENDAST_I= 'WcsMap ' / End of object definition
-MAPB_C = ' ' / Second component Mapping
-BEGAST_N= 'CmpMap ' / Compound Mapping
-NIN_G = 2 / Number of input coordinates
-ISA_I = 'Mapping ' / Mapping between coordinate systems
-INVA_B = 1 / First Mapping used in inverse direction
-MAPA_D = ' ' / First component Mapping
-BEGAST_O= 'SphMap ' / Cartesian to Spherical mapping
-NIN_H = 3 / Number of input coordinates
-NOUT_A = 2 / Number of output coordinates
-INVERT_D= 1 / Mapping inverted
-ISA_J = 'Mapping ' / Mapping between coordinate systems
-UNTRD_A = 1 / All input vectors have unit length
-PLRLG_A = 0.0 / Polar longitude (rad.s)
-ENDAST_J= 'SphMap ' / End of object definition
-MAPB_D = ' ' / Second component Mapping
-BEGAST_P= 'CmpMap ' / Compound Mapping
-NIN_I = 3 / Number of input coordinates
-NOUT_B = 2 / Number of output coordinates
-ISA_K = 'Mapping ' / Mapping between coordinate systems
-MAPA_E = ' ' / First component Mapping
-BEGAST_Q= 'MatrixMap' / Matrix transformation
-NIN_J = 3 / Number of input coordinates
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-ISA_L = 'Mapping ' / Mapping between coordinate systems
-M0_B = 0.291480364581799 / Forward matrix value
-M1_B = 0.506505471460186 / Forward matrix value
-M2_A = -0.811474832908671 / Forward matrix value
-M3_A = 0.171224898552328 / Forward matrix value
-M4_A = -0.862236746712233 / Forward matrix value
-M5_A = -0.476686298035564 / Forward matrix value
-M6_A = -0.941127638091139 / Forward matrix value
-M7_A = 0.0 / Forward matrix value
-M8_A = -0.338051429254475 / Forward matrix value
-FORM_B = 'Full ' / Matrix storage form
-ENDAST_K= 'MatrixMap' / End of object definition
-MAPB_E = ' ' / Second component Mapping
-BEGAST_R= 'SphMap ' / Cartesian to Spherical mapping
-NIN_K = 3 / Number of input coordinates
-NOUT_C = 2 / Number of output coordinates
-INVERT_F= 0 / Mapping not inverted
-ISA_M = 'Mapping ' / Mapping between coordinate systems
-UNTRD_B = 1 / All input vectors have unit length
-PLRLG_B = -2.61046557479594 / Polar longitude (rad.s)
-ENDAST_L= 'SphMap ' / End of object definition
-ENDAST_M= 'CmpMap ' / End of object definition
-ENDAST_N= 'CmpMap ' / End of object definition
-ENDAST_O= 'CmpMap ' / End of object definition
-ENDAST_P= 'CmpMap ' / End of object definition
-ENDAST_Q= 'CmpMap ' / End of object definition
-ENDAST_R= 'FrameSet' / End of object definition
-COMMENT AST ................................................................ AST
-COMMENT AST End of AST data for FrameSet object AST
-COMMENT AST ---------------------------------------------------------------- AST
-
-ATTRIBUTES:
- Colour(axis1) : 1
- Font(Stri) : 1
- Nout : 1
- Class : 4
- Tol : 0.100000E-01
- Gap(1) : 1.04720
- Border : 0
- Invert : 0
- TextLabGap : 0.100000E-01
- Nin : 2
- Current : 3
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- RefCOUNT : 1
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-Forward matrix value
- M2 = -0.811474832908671 # Forward matrix value
- M3 = 0.171224898552328 # Forward matrix value
- M4 = -0.862236746712233 # Forward matrix value
- M5 = -0.476686298035564 # Forward matrix value
- M6 = -0.941127638091139 # Forward matrix value
- M7 = 0 # Forward matrix value
- M8 = -0.338051429254475 # Forward matrix value
- Form = "Full" # Matrix storage form
- End MatrixMap
- MapB = # Second component Mapping
- Begin SphMap # Cartesian to Spherical mapping
- Nin = 3 # Number of input coordinates
- Nout = 2 # Number of output coordinates
- Invert = 0 # Mapping not inverted
- IsA Mapping # Mapping between coordinate systems
- UntRd = 1 # All input vectors have unit length
- PlrLg = -2.61046557479594 # Polar longitude (rad.s)
- End SphMap
- End CmpMap
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- Fwd2 = "theta=atan2(y,x)" # Forward function 2
- Inv1 = "x=r*cos(theta)" # Inverse function 1
- Inv2 = "y=r*sin(theta)" # Inverse function 2
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- Begin FrameSet # Set of inter-related coordinate systems
-# Title = "FK5 equatorial coordinates; mean equinox J2000.0; gnomonic projection" # Title of coordinate system
-# Naxes = 2 # Number of coordinate axes
-# Domain = "SKY" # Coordinate system domain
-# Epoch = 1977.77512999212 # Besselian epoch of observation
-# Lbl1 = "Right ascension" # Label for axis 1
-# Lbl2 = "Declination" # Label for axis 2
-# System = "FK5" # Coordinate system type
-# Uni1 = "hh:mm:ss.s" # Units for axis 1
-# Uni2 = "ddd:mm:ss" # Units for axis 2
-# Dir1 = 0 # Plot axis 1 in reverse direction
-# Bot2 = -1.5707963267949 # Lowest legal axis value
-# Top2 = 1.5707963267949 # Highest legal axis value
- IsA Frame # Coordinate system description
- Nframe = 2 # Number of Frames in FrameSet
- Base = 1 # Index of base Frame
- Currnt = 2 # Index of current Frame
- Lnk2 = 1 # Node 2 is derived from node 1
- Frm1 = # Frame number 1
- Begin Frame # Coordinate system description
- Title = "Pixel Coordinates" # Title of coordinate system
- Naxes = 2 # Number of coordinate axes
- Domain = "GRID" # Coordinate system domain
-# Lbl1 = "Pixel axis 1" # Label for axis 1
-# Lbl2 = "Pixel axis 2" # Label for axis 2
- Ax1 = # Axis number 1
- Begin Axis # Coordinate axis
- Label = "Pixel axis 1" # Axis Label
- End Axis
- Ax2 = # Axis number 2
- Begin Axis # Coordinate axis
- Label = "Pixel axis 2" # Axis Label
- End Axis
- End Frame
- Frm2 = # Frame number 2
- Begin SkyFrame # Description of celestial coordinate system
- Ident = " " # Permanent Object identification string
- IsA Object # AST Object
-# Title = "FK5 equatorial coordinates; mean equinox J2000.0; gnomonic projection" # Title of coordinate system
- Naxes = 2 # Number of coordinate axes
-# Domain = "SKY" # Coordinate system domain
- Epoch = 1977.77512999212 # Besselian epoch of observation
-# Lbl1 = "Right ascension" # Label for axis 1
-# Lbl2 = "Declination" # Label for axis 2
- System = "FK5" # Coordinate system type
-# Uni1 = "hh:mm:ss.s" # Units for axis 1
-# Uni2 = "ddd:mm:ss" # Units for axis 2
-# Dir1 = 0 # Plot axis 1 in reverse direction
-# Bot2 = -1.5707963267949 # Lowest legal axis value
-# Top2 = 1.5707963267949 # Highest legal axis value
- Ax1 = # Axis number 1
- Begin SkyAxis # Celestial coordinate axis
- End SkyAxis
- Ax2 = # Axis number 2
- Begin SkyAxis # Celestial coordinate axis
- End SkyAxis
- IsA Frame # Coordinate system description
- Proj = "gnomonic" # Description of sky projection
- Eqnox = 2000 # Julian epoch of mean equinox
- SRefIs = "Ignored" # Not rotated (ref. pos. is ignored)
- SRef1 = 0 # Ref. pos. RA 0:00:00.0
- SRef2 = -1.57079633000002 # Ref. pos. Dec -90:00:00
- End SkyFrame
- Map2 = # Mapping between nodes 1 and 2
- Begin CmpMap # Compound Mapping
- Nin = 2 # Number of input coordinates
- IsSimp = 1 # Mapping has been simplified
- IsA Mapping # Mapping between coordinate systems
- MapA = # First component Mapping
- Begin WinMap # Map one window on to another
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- Invert = 0 # Mapping not inverted
- IsA Mapping # Mapping between coordinate systems
- Sft1 = -893.6318379289 # Shift for axis 1
- Sft2 = -223.8380193875 # Shift for axis 2
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- MapB = # Second component Mapping
- Begin CmpMap # Compound Mapping
- Nin = 2 # Number of input coordinates
- IsA Mapping # Mapping between coordinate systems
- MapA = # First component Mapping
- Begin MatrixMap # Matrix transformation
- Nin = 2 # Number of input coordinates
- Invert = 0 # Mapping not inverted
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- M0 = -3.25441534352674e-06 # Forward matrix value
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- MapB = # Second component Mapping
- Begin CmpMap # Compound Mapping
- Nin = 2 # Number of input coordinates
- IsA Mapping # Mapping between coordinate systems
- InvA = 1 # First Mapping used in inverse direction
- MapA = # First component Mapping
- Begin WcsMap # FITS-WCS sky projection
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- Begin CmpMap # Compound Mapping
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- IsA Mapping # Mapping between coordinate systems
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- Begin SphMap # Cartesian to Spherical mapping
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- Nout = 2 # Number of output coordinates
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- FITS test number 3
- ====================
-
-
-
-AST_SHOW:
-
-REG_SINK:
-SIMPLE = T / file does conform to FITS standard
-BITPIX = 16 / number of bits per data pixel
-NAXIS = 2 / number of data axes
-NAXIS1 = 1787 / length of data axis 1
-NAXIS2 = 447 / length of data axis 2
-EXTEND = T / FITS dataset may contain extensions
-COMMENT FITS (Flexible Image Transport System) format defined in Astronomy and
-COMMENT Astrophysics Supplement Series v44/p363, v44/p371, v73/p359, v73/p365.
-COMMENT Contact the NASA Science Office of Standards and Technology for the
-COMMENT FITS Definition document #100 and other FITS information.
-PLATENUM= '3665 ' / Plate number
-EMULSION= 'IIIaJ ' / Kodak emulsion type
-FILTER = 'GG395 ' / Schott glass filter type
-PLTSCALE= '67.14 ' / [arcsec/mm] plate scale
-FIELDNUM= '1 ' / Sky survey field number
-TELESCOP= 'UKST ' / Telescope on which the plate was taken
-TELETYPE= 'SCHM ' / Type of telescope
-SITELAT = -0.5458410576565 / [radians] latitude of telescope
-SITELONG= 2.601766194458 / [radians] longitude of telescope
-LST = '00:20 ' / [hh:mm] local sidereal time at start of obs
-INSTRUME= 'SuperCOSMOS I' / Measuring machine
-DATE-MES= '2000-11-04' / [yyyy-mm-dd] Date of this plate measurement
-NHKLINES= 146 / Number of lines from house-keeping file
-HKLIN001= 'JOB.JOBNO UKJ001'
-HKLIN002= 'JOB.DATE-MES 2000:11:04'
-HKLIN003= 'JOB.TIME 12:51:09'
-HKLIN004= 'JOB.INSTRUME SuperCOSMOS I'
-HKLIN005= 'JOB.ORIGIN Royal Observatory Edinburgh'
-HKLIN006= 'JOB.SOFTWARE /home/scosdev/v033'
-HKLIN007= 'JOB.OPERATOR ebt'
-HKLIN008= 'JOB.USER htm'
-HKLIN009= 'JOB.USERREF NONE'
-HKLIN010= 'JOB.UORIGIN ROE'
-HKLIN011= 'JOB.UCOUNTRY uk'
-HKLIN012= 'JOB.COMMENT Digital catalogue of the Sky'
-HKLIN013= 'JOB.IAM_FILE iam.srt'/ / ' /
-HKLIN014= 'PLATE.TELESCOP UKST'
-HKLIN015= 'PLATE.TELTYPE SCHM'
-HKLIN016= 'PLATE.PLATE 3665'
-HKLIN017= 'PLATE.MATERIAL 3mm glass'
-HKLIN018= 'PLATE.EMULSION IIIaJ'
-HKLIN019= 'PLATE.FILTER GG395'
-HKLIN020= 'PLATE.PSCALE 67.14'
-HKLIN021= 'PLATE.FIELD 1'
-HKLIN022= 'PLATE.RA_PNT 0'
-HKLIN023= 'PLATE.DEC_PNT -90'
-HKLIN024= 'PLATE.RADECSYS FK4'
-HKLIN025= 'PLATE.EQUINOX 1950'
-HKLIN026= 'PLATE.TIMESYS BESSELIAN'
-HKLIN027= 'PLATE.EPOCH 1977.78'/ / ' /
-HKLIN028= 'PLATE.EXPOSURE 75'
-HKLIN029= 'PLATE.UTDATE 771011'
-HKLIN030= 'PLATE.LST 0020'
-HKLIN031= 'PLATE.MJD 43426.573008796'
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-HKLIN033= 'PLATE.TELLONG 2.6017661944583'
-HKLIN034= 'PLATE.TELHT 1145'
-HKLIN035= 'PLATE.TEMP 273.155'/ / ' /
-HKLIN036= 'PLATE.ATMOSP 1013.25'/ / ' /
-HKLIN037= 'PLATE.HUMID 0.5'
-HKLIN038= 'PLATE.WAVE 4500'
-HKLIN039= 'PLATE.TROPL 0.0065'
-HKLIN040= 'CALIBRATION.CALTYPE SPLINE'
-HKLIN041= 'CALIBRATION.STEPWEDG KPNO'
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-HKLIN047= 'MEASUREMENT.STEPSIZE 10'
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-HKLIN049= 'MEASUREMENT.A-XMIN 1622000'/ / ' /
-HKLIN050= 'MEASUREMENT.A-YMIN 1622000'/ / ' /
-HKLIN051= 'MEASUREMENT.A-XMAX 33878000'
-HKLIN052= 'MEASUREMENT.A-YMAX 33878000'
-HKLIN053= 'MEASUREMENT.X_PNT 17500000'
-HKLIN054= 'MEASUREMENT.Y_PNT 18000000'
-HKLIN055= 'ANALYSIS.NPARAMS 32'
-HKLIN056= 'ANALYSIS.AREACUT 8'
-HKLIN057= 'ANALYSIS.AP-PARAM 1.07'
-HKLIN058= 'DEBLEND.DB-PARAM 1.05'
-HKLIN059= 'DEBLEND.DB-AMIN 16'
-HKLIN060= 'DEBLEND.DB-AMAX 100000'
-HKLIN061= 'DEBLEND.DB-ACUT 8'
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-HKLIN063= 'DEBLEND.SELECT PARENT+CHILD'
-HKLIN064= 'SKY.SKYSQUAR 64'
-HKLIN065= 'SKY.SKYDEFN MEDIAN'
-HKLIN066= 'SKY.SKYFILTR bdkjunk'/ / ' /
-HKLIN067= 'SKY.F-THRESH 8'
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-HKLIN078= 'IAMQC.MIDELL 0.21'
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-HKLIN127= 'XYTORADEC.REFSMULT 5'
-HKLIN128= 'XYTORADEC.RESDMULT 1000'
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-HKLIN130= 'XYTORADEC.DECOL DEC'
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-HKLIN132= 'XYTORADEC.DECPMCOL PMDE'
-HKLIN133= 'XYTORADEC.PLXCOL NONE'
-HKLIN134= 'XYTORADEC.RVCOL NONE'
-HKLIN135= 'XYTORADEC.MAGCOL VT'
-HKLIN136= 'XYTORADEC.STARSC 2374'
-HKLIN137= 'XYTORADEC.STARSU 1727'
-HKLIN138= 'XYTORADEC.COEFFS_1 17.640343856524'
-HKLIN139= 'XYTORADEC.COEFFS_2 -260.44151995641'
-HKLIN140= 'XYTORADEC.COEFFS_3 -163.09155572601'
-HKLIN141= 'XYTORADEC.COEFFS_4 17.504230442205'
-HKLIN142= 'XYTORADEC.COEFFS_5 -163.08676953832'
-HKLIN143= 'XYTORADEC.COEFFS_6 260.48817907668'
-HKLIN144= 'XYTORADEC.DISTR -0.33333333333333'
-HKLIN145= 'XYTORADEC.RA_PNT 0.54924996662137'
-HKLIN146= 'XYTORADEC.DEC_PNT -1.5684931501781'
-HISTORY = 'SuperCOSMOS image analysis and mapping mode (IAM and MM)' /
-HISTORY = 'data written by xydcomp_ss.' /
-HISTORY = 'Any questions/comments/suggestions/bug reports should be sent' /
-HISTORY = 'to N.Hambly@roe.ac.uk' /
-ASTSIGX = 0.37 / [arcsec] std. dev. of astrometric fit in X
-ASTSIGY = 0.38 / [arcsec] std. dev. of astrometric fit in Y
-PC001001= 1.0 / DEPRECATED - Axis rotation matrix
-PC001002= 0.004927623810613 / DEPRECATED - Axis rotation matrix
-PC002001= -0.005563056187788 / DEPRECATED - Axis rotation matrix
-PC002002= 1.0 / DEPRECATED - Axis rotation matrix
-CROTA2 = 0.3005532298491 / DEPRECATED - rotation of axis 2
-DATATYPE= 'INTEGER*2' / Type of data
-DATUNITS= 'DENSITY ' / Units: transmission, density or intensity
-XPIXELSZ= 9.997114974 / [microns] X pixel size
-YPIXELSZ= 10.0 / [microns] Y pixel size
-OBJCTRA = ' 0 0 0.000' / Centre Right Ascension (J2000)
-OBJCTDEC= '-90 0 0.00' / Centre Declination (J2000)
-OBJCTX = 16368.63183793 / [pixels] Centre X on plate
-OBJCTY = 14740.83801939 / [pixels] Centre Y on plate
-
-Objects written: 1
-
-Native Encoding:
-
-COMMENT AST ++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ AST
-COMMENT AST WCS information in AST format AST
-COMMENT AST See http://www.starlink.ac.uk/ast/ AST
-COMMENT AST Beginning of AST data for FrameSet object AST
-COMMENT AST ................................................................ AST
-BEGAST_A= 'FrameSet' / Set of inter-related coordinate systems
-NFRAME_A= 2 / Number of Frames in FrameSet
-BASE_A = 1 / Index of base Frame
-CURRNT_A= 2 / Index of current Frame
-LNK2_A = 1 / Node 2 is derived from node 1
-FRM1_A = ' ' / Frame number 1
-BEGAST_B= 'Frame ' / Coordinate system description
-TITLE_A = 'Pixel Coordinates' / Title of coordinate system
-NAXES_A = 2 / Number of coordinate axes
-DOMAIN_A= 'GRID ' / Coordinate system domain
-AX1_A = ' ' / Axis number 1
-BEGAST_C= 'Axis ' / Coordinate axis
-LABEL_A = 'Pixel axis 1' / Axis Label
-ENDAST_A= 'Axis ' / End of object definition
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-BEGAST_D= 'Axis ' / Coordinate axis
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-ENDAST_B= 'Axis ' / End of object definition
-ENDAST_C= 'Frame ' / End of object definition
-FRM2_A = ' ' / Frame number 2
-BEGAST_E= 'SkyFrame' / Description of celestial coordinate system
-IDENT_A = '" " ' / Permanent Object identification string
-ISA_A = 'Object ' / AST Object
-NAXES_B = 2 / Number of coordinate axes
-EPOCH_A = 1977.77512999212 / Besselian epoch of observation
-SYSTEM_A= 'FK5 ' / Coordinate system type
-AX1_B = ' ' / Axis number 1
-BEGAST_F= 'SkyAxis ' / Celestial coordinate axis
-ENDAST_D= 'SkyAxis ' / End of object definition
-AX2_B = ' ' / Axis number 2
-BEGAST_G= 'SkyAxis ' / Celestial coordinate axis
-ENDAST_E= 'SkyAxis ' / End of object definition
-ISA_B = 'Frame ' / Coordinate system description
-PROJ_A = 'gnomonic' / Description of sky projection
-EQNOX_A = 2000.0 / Julian epoch of mean equinox
-SREFIS_A= 'Ignored ' / Not rotated (ref. pos. is ignored)
-SREF1_A = 0.0 / Ref. pos. RA 0:00:00.0
-SREF2_A = -1.57079633 / Ref. pos. Dec -90:00:00
-ENDAST_F= 'SkyFrame' / End of object definition
-MAP2_A = ' ' / Mapping between nodes 1 and 2
-BEGAST_H= 'CmpMap ' / Compound Mapping
-NIN_A = 2 / Number of input coordinates
-ISSIMP_A= 1 / Mapping has been simplified
-ISA_C = 'Mapping ' / Mapping between coordinate systems
-MAPA_A = ' ' / First component Mapping
-BEGAST_I= 'WinMap ' / Map one window on to another
-NIN_B = 2 / Number of input coordinates
-INVERT_A= 0 / Mapping not inverted
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-REG_QCH:
-REG_CAP: 0
-REG_CAP: 0
-REG_TEXT: '10'
- 15.0 -124. BC .977 .215
-REG_CAP: 2
-REG_SCALES:
-REG_QCH:
-REG_CAP: 2
-REG_SCALES:
-REG_QCH:
-REG_CAP: 0
-REG_CAP: 0
-REG_CAP: 2
-REG_SCALES:
-REG_QCH:
-REG_CAP: 2
-REG_SCALES:
-REG_QCH:
-REG_CAP: 0
-REG_CAP: 0
-REG_CAP: 2
-REG_SCALES:
-REG_QCH:
-REG_CAP: 2
-REG_SCALES:
-REG_QCH:
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-REG_SCALES:
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-REG_CAP: 0
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-REG_SCALES:
-REG_QCH:
-REG_CAP: 2
-REG_SCALES:
-REG_QCH:
-REG_CAP: 0
-REG_CAP: 0
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-REG_QCH:
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-REG_SCALES:
-REG_QCH:
-REG_CAP: 0
-REG_CAP: 0
-REG_TEXT: '-90:00'
- 22.4 49.8 BC -1.00 -0.615E-03
-REG_CAP: 2
-REG_SCALES:
-REG_QCH:
-REG_CAP: 2
-REG_SCALES:
-REG_QCH:
-REG_CAP: 0
-REG_CAP: 0
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-REG_CAP: 2
-REG_SCALES:
-REG_QCH:
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-REG_TEXT: '59'
- 22.4 150. BC -1.00 -0.615E-03
-REG_CAP: 2
-REG_SCALES:
-REG_QCH:
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-REG_SCALES:
-REG_QCH:
-REG_CAP: 0
-REG_CAP: 0
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-REG_SCALES:
-REG_QCH:
-REG_CAP: 2
-REG_SCALES:
-REG_QCH:
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-REG_TEXT: '-89:58'
- 22.3 250. BC -1.00 -0.615E-03
-REG_CAP: 2
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-REG_TEXT: ' A FITS test'
- 30.9 313. BC .000 1.00
-ude (rad.s)
- End SphMap
- MapB = # Second component Mapping
- Begin CmpMap # Compound Mapping
- Nin = 3 # Number of input coordinates
- Nout = 2 # Number of output coordinates
- IsA Mapping # Mapping between coordinate systems
- MapA = # First component Mapping
- Begin MatrixMap # Matrix transformation
- Nin = 3 # Number of input coordinates
- Invert = 0 # Mapping not inverted
- IsA Mapping # Mapping between coordinate systems
- M0 = -1 # Forward matrix value
- M1 = 1 # Forward matrix value
- M2 = -1 # Forward matrix value
- Form = "Diagonal" # Matrix storage form
- End MatrixMap
- MapB = # Second component Mapping
- Begin SphMap # Cartesian to Spherical mapping
- Nin = 3 # Number of input coordinates
- Nout = 2 # Number of output coordinates
- Invert = 0 # Mapping not inverted
- IsA Mapping # Mapping between coordinate systems
- UntRd = 1 # All input vectors have unit length
- PlrLg = 0 # Polar longitude (rad.s)
- End SphMap
- End CmpMap
- End CmpMap
- End CmpMap
- End CmpMap
- End CmpMap
- End FrameSet