; Some Moon based astronomical times and data for Gcal-2.20 or newer ; ; $Id: mdata.rc 0.07 2000/06/30 00:00:07 tom Exp $ ; ; Copyright (c) 2000 Thomas Esken ; Im Hagenfeld 84 ; D-48147 M"unster ; GERMANY ; ; This software doesn't claim completeness, correctness or usability. ; On principle I will not be liable for ANY damages or losses (implicit ; or explicit), which result from using or handling my software. ; If you use this software, you agree without any exception to this ; agreement, which binds you LEGALLY !! ; ; This program is free software; you can redistribute it and/or modify ; it under the terms of the `GNU General Public License' as published by ; the `Free Software Foundation'; either version 2, or (at your option) ; any later version. ; ; You should have received a copy of the `GNU General Public License' ; along with this program; if not, write to the: ; ; Free Software Foundation, Inc. ; 59 Temple Place - Suite 330 ; Boston, MA 02111-1307, USA ; ; ; Try this resource file by using the `-QUx' option of Gcal. ; Try `--time-offset=ARG' to calculate some data for a definite time! ; Try `--precise' to display data and times more precise! ; ; Either set your preferred geographical base location here ; or comment the proper next lines and run Gcal with the `--text-variable=ARG' ; option for passing the geographical base location in a flexible manner like: ; ; gcal -f./mdata.rc -QUx --text-var='$l=Münster:$c=+5158+00738+61:$z=60' --time-offset=t ; ; *** If you modify this file you have to rename the modified version. ; *** If you make any improvements I would like to hear from you. ; *** But I do not promise any support. ; ; ; Name of location ; $l=%3%1Münster%2 ; Geographical co-ordinate of location ; $c=+5158+00738+61 ; Timezone of location ; $z=60 ; ; Line templates $p=0*d1#999 ; $l= $c= $z= ; ; Data. $p A00 calculations for geographic co-ordinate $c,$z/$l $p A01 gmt time and date %@ $p A02 local time and date %t /%n $p A03 given time-offset %(x$c $p A04 local julian date at %<9*(x$c %(y$c,$z $p A05 local julian ephemeris date at %<9*(x$c %(z$c,$z $p A06 local sidereal time at %<9*(x$c %(w$c,$z $p A07 delta-t in ss.fract at %<9*(x$c %(v$c,$z ; $p B00 T moon/earth dist in radii at %<9*(x$c %(g$c,$z $p B01 T moon/earth dist in km at %<9*(x$c %(*g$c,$z $p B02 T moon's ecliptic longitude at %<9*(x$c %(d$c,$z $p B03 T moon's ecliptic latitude at %<9*(x$c %(e$c,$z $p B04 T moon's right ascension at %<9*(x$c %(f$c,$z $p B05 T moon's declination angle at %<9*(x$c %(c$c,$z $p B06 T moon's azimuth angle at %<9*(x$c %(b$c,$z $p B07 T moon's elevation angle at %<9*(x$c %(a$c,$z $p B08 T moon's horizontal parallax at %<9*(x$c %(*6$c,$z $p B09 T moon's semidiameter at %<9*(x$c %(*7$c,$z $p B10 T moon's magnitude at %<9*(x$c %(8$c,$z $p B11 T moon's phase angle at %<9*(x$c %(9$c,$z $p B12 T moon/sun elongation at %<9*(x$c %(h$c,$z $p B13 T moon/sun azimuth delta at %<9*(x$c %(B$c,$z $p B14 T moon/sun elevation delta at %<9*(x$c %(A$c,$z $p B15 T atmospheric refraction at %<9*(x$c %(*i$c,$z ; $p C00 G moon/earth dist in radii at %<9*(x$c %(t$c,$z $p C01 G moon/earth dist in km at %<9*(x$c %(*t$c,$z $p C02 G moon's ecliptic longitude at %<9*(x$c %(q$c,$z $p C03 G moon's ecliptic latitude at %<9*(x$c %(r$c,$z $p C04 G moon's right ascension at %<9*(x$c %(s$c,$z $p C05 G moon's declination angle at %<9*(x$c %(p$c,$z $p C06 G moon's azimuth angle at %<9*(x$c %(o$c,$z $p C07 G moon's elevation angle at %<9*(x$c %(n$c,$z $p C08 G moon's horizontal parallax at %<9*(x$c %(*j$c,$z $p C09 G moon's semidiameter at %<9*(x$c %(*k$c,$z $p C10 G moon's magnitude at %<9*(x$c %(l$c,$z $p C11 G moon's phase angle at %<9*(x$c %(m$c,$z $p C12 G moon/sun elongation at %<9*(x$c %(u$c,$z $p C13 G moon/sun azimuth delta at %<9*(x$c %(D$c,$z $p C14 G moon/sun elevation delta at %<9*(x$c %(C$c,$z ; $p DM0 moon's midnight (near lowest culmination) at %(0$c,$z $p DM2 T moon's elevation angle at moon's midnight %(L$c,$z $p DM3 T moon's phase angle at moon's midnight %(M$c,$z $p DM4 G moon's elevation angle at moon's midnight %(S$c,$z $p DM5 G moon's phase angle at moon's midnight %(T$c,$z $p DM6 moon/sun midnight delta %(I$c,$z $p DN1 moon's noon (near highest culmination) at %)1$c,$z $p DN2 T moon's elevation angle at moon's noon %)N$c,$z $p DN3 T moon's phase angle at moon's noon %)O$c,$z $p DN4 G moon's elevation angle at moon's noon %)U$c,$z $p DN5 G moon's phase angle at moon's noon %)V$c,$z $p DN6 moon/sun noon delta %)J$c,$z ; $p ER0 moon's upper limb (standard rise) rises at %(5$c,$z $p ER3 T moon's azimuth angle at moon's rise %(Q$c,$z $p ER4 T moon's elevation angle at moon's rise %(P$c,$z $p ER5 T moon's phase angle at moon's rise %(R$c,$z $p ER6 G moon's azimuth angle at moon's rise %(X$c,$z $p ER7 G moon's elevation angle at moon's rise %(W$c,$z $p ER8 G moon's phase angle at moon's rise %(Y$c,$z $p ER9 T moon/sun azimuth delta at moon's rise %(F$c,$z $p ERA T moon/sun elevation delta at moon's rise %(E$c,$z $p ERB G moon/sun azimuth delta at moon's rise %(H$c,$z $p ERC G moon/sun elevation delta at moon's rise %(G$c,$z $p ERD moon/sun standard rise delta %(K$c,$z $p FR0 moon's center rises at %(4$c,$z $p GR0 moon's upper limb at math-horizon rises at %(3$c,$z $p HR0 moon's center at math-horizon rises at %(2$c,$z ; $p HS1 moon's center at math-horizon sets at %)2$c,$z $p GS1 moon's upper limb at math-horizon sets at %)3$c,$z $p FS1 moon's center sets at %)4$c,$z $p ES1 moon's upper limb (standard set) sets at %)5$c,$z $p ES3 T moon's azimuth angle at moon's set %)Q$c,$z $p ES4 T moon's elevation angle at moon's set %)P$c,$z $p ES5 T moon's phase angle at moon's set %)R$c,$z $p ES6 G moon's azimuth angle at moon's set %)X$c,$z $p ES7 G moon's elevation angle at moon's set %)W$c,$z $p ES8 G moon's phase angle at moon's set %)Y$c,$z $p ES9 T moon/sun azimuth delta at moon's set %)F$c,$z $p ESA T moon/sun elevation delta at moon's set %)E$c,$z $p ESB G moon/sun azimuth delta at moon's set %)H$c,$z $p ESC G moon/sun elevation delta at moon's set %)G$c,$z $p ESD moon/sun standard set delta %)K$c,$z ; $p QE6 moon's upper limb (standard r/s) visible %[5$c,$z $p QE7 moon's upper limb (standard r/s) non-visible %]5$c,$z $p QF6 moon's center visible %[4$c,$z $p QF7 moon's center non-visible %]4$c,$z $p QG6 math-horizon moon's upper limb visible %[3$c,$z $p QG7 math-horizon moon's upper limb non-visible %]3$c,$z $p QH6 math-horizon moon's center visible %[2$c,$z $p QH7 math-horizon moon's center non-visible %]2$c,$z