| 1 | /* | 
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| 2 | *+ | 
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| 3 | *  Name: | 
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| 4 | *     palPlantu | 
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| 5 |  | 
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| 6 | *  Purpose: | 
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| 7 | *     Topocentric RA,Dec of a Solar-System object from universal elements | 
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| 8 |  | 
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| 9 | *  Language: | 
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| 10 | *     Starlink ANSI C | 
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| 11 |  | 
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| 12 | *  Type of Module: | 
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| 13 | *     Library routine | 
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| 14 |  | 
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| 15 | *  Invocation: | 
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| 16 | *     void palPlantu ( double date, double elong, double phi, const double u[13], | 
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| 17 | *                      double *ra, double *dec, double *r, int *jstat ) { | 
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| 18 |  | 
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| 19 | *  Description: | 
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| 20 | *     Topocentric apparent RA,Dec of a Solar-System object whose | 
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| 21 | *     heliocentric universal elements are known. | 
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| 22 |  | 
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| 23 | *  Arguments: | 
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| 24 | *     date = double (Given) | 
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| 25 | *        TT MJD of observation (JD-2400000.5) | 
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| 26 | *     elong = double (Given) | 
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| 27 | *        Observer's east longitude (radians) | 
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| 28 | *     phi = double (Given) | 
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| 29 | *        Observer's geodetic latitude (radians) | 
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| 30 | *     u = const double [13] (Given) | 
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| 31 | *        Universal orbital elements | 
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| 32 | *          -   (0)  combined mass (M+m) | 
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| 33 | *          -   (1)  total energy of the orbit (alpha) | 
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| 34 | *          -   (2)  reference (osculating) epoch (t0) | 
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| 35 | *          - (3-5)  position at reference epoch (r0) | 
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| 36 | *          - (6-8)  velocity at reference epoch (v0) | 
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| 37 | *          -   (9)  heliocentric distance at reference epoch | 
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| 38 | *          -  (10)  r0.v0 | 
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| 39 | *          -  (11)  date (t) | 
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| 40 | *          -  (12)  universal eccentric anomaly (psi) of date, approx | 
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| 41 | *     ra = double * (Returned) | 
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| 42 | *        Topocentric apparent RA (radians) | 
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| 43 | *     dec = double * (Returned) | 
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| 44 | *        Topocentric apparent Dec (radians) | 
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| 45 | *     r = double * (Returned) | 
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| 46 | *        Distance from observer (AU) | 
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| 47 | *     jstat = int * (Returned) | 
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| 48 | *        status: 0 = OK | 
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| 49 | *             - -1 = radius vector zero | 
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| 50 | *             - -2 = failed to converge | 
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| 51 |  | 
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| 52 | *  Authors: | 
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| 53 | *     PTW: Pat Wallace (STFC) | 
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| 54 | *     TIMJ: Tim Jenness (JAC, Hawaii) | 
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| 55 | *     {enter_new_authors_here} | 
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| 56 |  | 
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| 57 | *  Notes: | 
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| 58 | *     - DATE is the instant for which the prediction is required.  It is | 
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| 59 | *       in the TT timescale (formerly Ephemeris Time, ET) and is a | 
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| 60 | *       Modified Julian Date (JD-2400000.5). | 
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| 61 | *     - The longitude and latitude allow correction for geocentric | 
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| 62 | *       parallax.  This is usually a small effect, but can become | 
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| 63 | *       important for near-Earth asteroids.  Geocentric positions can be | 
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| 64 | *       generated by appropriate use of routines palEpv (or palEvp) and | 
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| 65 | *       palUe2pv. | 
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| 66 | *     - The "universal" elements are those which define the orbit for the | 
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| 67 | *       purposes of the method of universal variables (see reference 2). | 
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| 68 | *       They consist of the combined mass of the two bodies, an epoch, | 
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| 69 | *       and the position and velocity vectors (arbitrary reference frame) | 
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| 70 | *       at that epoch.  The parameter set used here includes also various | 
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| 71 | *       quantities that can, in fact, be derived from the other | 
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| 72 | *       information.  This approach is taken to avoiding unnecessary | 
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| 73 | *       computation and loss of accuracy.  The supplementary quantities | 
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| 74 | *       are (i) alpha, which is proportional to the total energy of the | 
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| 75 | *       orbit, (ii) the heliocentric distance at epoch, (iii) the | 
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| 76 | *       outwards component of the velocity at the given epoch, (iv) an | 
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| 77 | *       estimate of psi, the "universal eccentric anomaly" at a given | 
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| 78 | *       date and (v) that date. | 
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| 79 | *     - The universal elements are with respect to the J2000 equator and | 
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| 80 | *       equinox. | 
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| 81 |  | 
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| 82 | *  See Also: | 
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| 83 | *     - Sterne, Theodore E., "An Introduction to Celestial Mechanics", | 
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| 84 | *       Interscience Publishers Inc., 1960.  Section 6.7, p199. | 
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| 85 | *     - Everhart, E. & Pitkin, E.T., Am.J.Phys. 51, 712, 1983. | 
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| 86 |  | 
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| 87 | *  History: | 
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| 88 | *     2012-03-12 (TIMJ): | 
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| 89 | *        Initial version direct conversion of SLA/F. | 
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| 90 | *        Adapted with permission from the Fortran SLALIB library. | 
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| 91 | *     {enter_further_changes_here} | 
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| 92 |  | 
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| 93 | *  Copyright: | 
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| 94 | *     Copyright (C) 2005 Patrick T. Wallace | 
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| 95 | *     Copyright (C) 2012 Science and Technology Facilities Council. | 
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| 96 | *     All Rights Reserved. | 
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| 97 |  | 
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| 98 | *  Licence: | 
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| 99 | *     This program is free software; you can redistribute it and/or | 
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| 100 | *     modify it under the terms of the GNU General Public License as | 
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| 101 | *     published by the Free Software Foundation; either version 3 of | 
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| 102 | *     the License, or (at your option) any later version. | 
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| 103 | * | 
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| 104 | *     This program is distributed in the hope that it will be | 
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| 105 | *     useful, but WITHOUT ANY WARRANTY; without even the implied | 
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| 106 | *     warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR | 
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| 107 | *     PURPOSE. See the GNU General Public License for more details. | 
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| 108 | * | 
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| 109 | *     You should have received a copy of the GNU General Public License | 
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| 110 | *     along with this program; if not, write to the Free Software | 
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| 111 | *     Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, | 
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| 112 | *     MA 02110-1301, USA. | 
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| 113 |  | 
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| 114 | *  Bugs: | 
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| 115 | *     {note_any_bugs_here} | 
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| 116 | *- | 
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| 117 | */ | 
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| 118 |  | 
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| 119 | #include <math.h> | 
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| 120 |  | 
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| 121 | #include "pal.h" | 
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| 122 | #include "palmac.h" | 
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| 123 |  | 
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| 124 | #include "pal1sofa.h" | 
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| 125 |  | 
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| 126 | void palPlantu ( double date, double elong, double phi, const double u[13], | 
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| 127 | double *ra, double *dec, double *r, int *jstat ) { | 
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| 128 |  | 
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| 129 | int i; | 
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| 130 | double dvb[3], dpb[3], vsg[6], vsp[6], v[6], rmat[3][3], | 
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| 131 | vgp[6], stl, vgo[6], dx, dy, dz, d, tl; | 
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| 132 |  | 
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| 133 | double ucp[13]; | 
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| 134 |  | 
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| 135 | /* To retain the stated const API and conform to the documentation | 
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| 136 | we must copy the contents of the u array as palUe2pv updates | 
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| 137 | the final two elements */ | 
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| 138 | for (i=0;i<13;i++) { | 
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| 139 | ucp[i] = u[i]; | 
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| 140 | } | 
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| 141 |  | 
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| 142 | /* Sun to geocentre (J2000, velocity in AU/s) */ | 
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| 143 | palEpv( date, vsg, &(vsg[3]), dpb, dvb ); | 
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| 144 | for (i=3; i < 6; i++) { | 
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| 145 | vsg[i] /= PAL__SPD; | 
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| 146 | } | 
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| 147 |  | 
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| 148 | /* Sun to planet (J2000) */ | 
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| 149 | palUe2pv( date, ucp, vsp, jstat ); | 
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| 150 |  | 
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| 151 | /* Geocentre to planet (J2000) */ | 
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| 152 | for (i=0; i<6; i++) { | 
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| 153 | v[i] = vsp[i] - vsg[i]; | 
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| 154 | } | 
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| 155 |  | 
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| 156 | /* Precession and nutation to date */ | 
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| 157 | palPrenut( 2000.0, date, rmat ); | 
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| 158 | eraRxp(rmat, v, vgp); | 
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| 159 | eraRxp( rmat, &(v[3]), &(vgp[3]) ); | 
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| 160 |  | 
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| 161 | /* Geocentre to observer (date) */ | 
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| 162 | stl = palGmst( date - palDt( palEpj(date) ) / PAL__SPD ) + elong; | 
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| 163 | palPvobs( phi, 0.0, stl, vgo ); | 
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| 164 |  | 
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| 165 | /* Observer to planet (date) */ | 
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| 166 | for (i=0; i<6; i++) { | 
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| 167 | v[i] = vgp[i] - vgo[i]; | 
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| 168 | } | 
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| 169 |  | 
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| 170 | /* Geometric distance (AU) */ | 
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| 171 | dx = v[0]; | 
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| 172 | dy = v[1]; | 
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| 173 | dz = v[2]; | 
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| 174 | d = sqrt( dx*dx + dy*dy + dz*dz ); | 
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| 175 |  | 
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| 176 | /* Light time (sec) */ | 
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| 177 | tl = PAL__CR * d; | 
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| 178 |  | 
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| 179 | /* Correct position for planetary aberration */ | 
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| 180 | for (i=0; i<3; i++) { | 
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| 181 | v[i] -= tl * v[i+3]; | 
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| 182 | } | 
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| 183 |  | 
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| 184 | /* To RA,Dec */ | 
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| 185 | eraC2s( v, ra, dec ); | 
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| 186 | *ra = eraAnp( *ra ); | 
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| 187 | *r = d; | 
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| 188 | } | 
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| 189 |  | 
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