SIMPLE = T / conforms to FITS standard BITPIX = -64 / array data type NAXIS = 2 / number of array dimensions NAXIS1 = 12 NAXIS2 = 12 WCSAXES = 2 / Number of coordinate axes CRPIX1 = 6.5 / Pixel coordinate of reference point CRPIX2 = 6.5 / Pixel coordinate of reference point CDELT1 = -0.25 / [deg] Coordinate increment at reference point CDELT2 = 0.25 / [deg] Coordinate increment at reference point CUNIT1 = 'deg' / Units of coordinate increment and value CUNIT2 = 'deg' / Units of coordinate increment and value CTYPE1 = 'RA---CAR' / Right ascension, plate caree projection CTYPE2 = 'DEC--CAR' / Declination, plate caree projection CRVAL1 = 251.76666666667 / [deg] Coordinate value at reference point CRVAL2 = -45.851361111111 / [deg] Coordinate value at reference point LONPOLE = 180.0 / [deg] Native longitude of celestial pole LATPOLE = 44.148638888889 / [deg] Native latitude of celestial pole DATEREF = '1858-11-17' / ISO-8601 fiducial time MJDREFI = 0.0 / [d] MJD of fiducial time, integer part MJDREFF = 0.0 / [d] MJD of fiducial time, fractional part RADESYS = 'ICRS' / Equatorial coordinate system WCSSHAPE= '(12,12) ' PSLICE1 = '6:18 ' / Parent slice PSLICE2 = '6:18 ' / Parent slice CSLICE1 = '0:12 ' / Cutout slice CSLICE2 = '0:12 ' / Cutout slice META = '{} ' BUNIT = '' END ?7H(?Le4?U>K0k?`-=? Sz@w69@ 3 @/,@4͟@@ 4۝@Q}?^cS?3E{?-?5S@ 6O@8\@ S4%G@@=E @7' R:@#[{@䳇+? %`Q? Kb?W(@U]a\V@.|$@ #yv2@ \<@8@]T@pدd@j|1@Ϡ h:?;?vOtn@\~|b@@]ݘ4@u_"@ʐK' @2WV@HEW@/;q@ A@+_@4Q@(Ev@:_U@D>3@ȑ@=@* @ v@#7@ l`'7@ {U@k秦@ LI@rhN@ A@E@cd@l@@Iaj@\%@ @.]@^^ N@S4@#Y+B@l@01ˆ@-@"Nj@jZ7#3@ Q7@c@&N/@FQɸ@K{}@@!EI@ @(r@Kb@m5@ ԏ@?G1w@2E$@Ir/@`vVls@@PN}@FF@/+@r̞Ad@;w@ E@AK@&i@@1M@Zw,G@|X@ Y@9#@@u^@ C@sQ@亅