| [2551] | 1 | /* saturn moon info */ | 
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|  | 2 |  | 
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|  | 3 | #include <stdio.h> | 
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|  | 4 | #include <stdlib.h> | 
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|  | 5 | #include <string.h> | 
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| [3111] | 6 | #include <errno.h> | 
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| [2551] | 7 | #include <math.h> | 
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|  | 8 |  | 
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|  | 9 | #include "astro.h" | 
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|  | 10 | #include "bdl.h" | 
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|  | 11 |  | 
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|  | 12 | static int use_bdl (double JD, char *dir, MoonData md[S_NMOONS]); | 
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|  | 13 | static void bruton_saturn (Obj *sop, double JD, MoonData md[S_NMOONS]); | 
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|  | 14 | static void moonradec (double satsize, MoonData md[S_NMOONS]); | 
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|  | 15 | static void moonSVis (Obj *eop, Obj *sop, MoonData md[S_NMOONS]); | 
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|  | 16 | static void moonEVis (MoonData md[S_NMOONS]); | 
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| [2643] | 17 | static void moonPShad (Obj *eop, Obj *sop, MoonData md[S_NMOONS]); | 
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|  | 18 | static void moonTrans (MoonData md[S_NMOONS]); | 
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| [2551] | 19 |  | 
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|  | 20 | /* moon table and a few other goodies and when it was last computed */ | 
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|  | 21 | static double mdmjd = -123456; | 
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|  | 22 | static MoonData smd[S_NMOONS] = { | 
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|  | 23 | {"Saturn",  NULL}, | 
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|  | 24 | {"Mimas",   "I"}, | 
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|  | 25 | {"Enceladus","II"}, | 
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|  | 26 | {"Tethys",  "III"}, | 
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|  | 27 | {"Dione",   "IV"}, | 
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|  | 28 | {"Rhea",    "V"}, | 
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|  | 29 | {"Titan",   "VI"}, | 
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|  | 30 | {"Hyperion","VII"}, | 
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|  | 31 | {"Iapetus", "VIII"}, | 
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|  | 32 | }; | 
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|  | 33 | static double sizemjd; | 
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|  | 34 | static double etiltmjd; | 
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|  | 35 | static double stiltmjd; | 
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|  | 36 |  | 
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| [2643] | 37 | /* These values are from the Explanatory Supplement. | 
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|  | 38 | * Precession degrades them gradually over time. | 
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|  | 39 | */ | 
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|  | 40 | #define POLE_RA         degrad(40.58)   /* RA of Saturn's north pole */ | 
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|  | 41 | #define POLE_DEC        degrad(83.54)   /* Dec of Saturn's north pole */ | 
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|  | 42 |  | 
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|  | 43 |  | 
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| [2551] | 44 | /* get saturn info in md[0], moon info in md[1..S_NMOONS-1]. | 
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|  | 45 | * if !dir always use bruton model. | 
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|  | 46 | * if !sop caller just wants md[] for names | 
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|  | 47 | * N.B. we assume eop and sop are updated. | 
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|  | 48 | */ | 
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|  | 49 | void | 
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|  | 50 | saturn_data ( | 
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|  | 51 | double Mjd,                     /* mjd */ | 
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|  | 52 | char dir[],                     /* dir in which to look for helper files */ | 
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|  | 53 | Obj *eop,                       /* earth == Sun */ | 
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|  | 54 | Obj *sop,                       /* saturn */ | 
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|  | 55 | double *sizep,                  /* saturn's angular diam, rads */ | 
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|  | 56 | double *etiltp, double *stiltp, /* earth and sun tilts -- +S */ | 
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| [2643] | 57 | double *polera, double *poledec,/* pole location */ | 
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| [2551] | 58 | MoonData md[S_NMOONS])          /* return info */ | 
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|  | 59 | { | 
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|  | 60 | double JD; | 
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|  | 61 |  | 
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|  | 62 | /* always copy back at least for name */ | 
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|  | 63 | memcpy (md, smd, sizeof(smd)); | 
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|  | 64 |  | 
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| [2643] | 65 | /* pole */ | 
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|  | 66 | if (polera) *polera = POLE_RA; | 
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|  | 67 | if (poledec) *poledec = POLE_DEC; | 
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|  | 68 |  | 
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| [2551] | 69 | /* nothing else if repeat call or just want names */ | 
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|  | 70 | if (Mjd == mdmjd || !sop) { | 
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|  | 71 | if (sop) { | 
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|  | 72 | *sizep = sizemjd; | 
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|  | 73 | *etiltp = etiltmjd; | 
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|  | 74 | *stiltp = stiltmjd; | 
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|  | 75 | } | 
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|  | 76 | return; | 
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|  | 77 | } | 
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|  | 78 | JD = Mjd + MJD0; | 
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|  | 79 |  | 
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|  | 80 | /* planet in [0] */ | 
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|  | 81 | md[0].ra = sop->s_ra; | 
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|  | 82 | md[0].dec = sop->s_dec; | 
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|  | 83 | md[0].mag = get_mag(sop); | 
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|  | 84 | md[0].x = 0; | 
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|  | 85 | md[0].y = 0; | 
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|  | 86 | md[0].z = 0; | 
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|  | 87 | md[0].evis = 1; | 
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|  | 88 | md[0].svis = 1; | 
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|  | 89 |  | 
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|  | 90 | /* size is straight from sop */ | 
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|  | 91 | *sizep = degrad(sop->s_size/3600.0); | 
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|  | 92 |  | 
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|  | 93 | /*  Visual Magnitude of the Satellites */ | 
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|  | 94 |  | 
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|  | 95 | md[1].mag = 13; md[2].mag = 11.8; md[3].mag = 10.3; md[4].mag = 10.2; | 
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|  | 96 | md[5].mag = 9.8; md[6].mag = 8.4; md[7].mag = 14.3; md[8].mag = 11.2; | 
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|  | 97 |  | 
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|  | 98 | /* get tilts from sky and tel code */ | 
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|  | 99 | satrings (sop->s_hlat, sop->s_hlong, sop->s_sdist, eop->s_hlong, | 
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|  | 100 | eop->s_edist, JD, etiltp, stiltp); | 
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|  | 101 |  | 
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|  | 102 | /* get moon x,y,z from BDL if possible, else Bruton's model */ | 
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| [3477] | 103 | if (!dir || use_bdl (JD, dir, md) < 0) | 
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| [2551] | 104 | bruton_saturn (sop, JD, md); | 
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|  | 105 |  | 
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|  | 106 | /* set visibilities */ | 
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|  | 107 | moonSVis (eop, sop, md); | 
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| [2643] | 108 | moonPShad (eop, sop, md); | 
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| [2551] | 109 | moonEVis (md); | 
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| [2643] | 110 | moonTrans (md); | 
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| [2551] | 111 |  | 
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|  | 112 | /* fill in moon ra and dec */ | 
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|  | 113 | moonradec (*sizep, md); | 
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|  | 114 |  | 
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|  | 115 | /* save */ | 
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|  | 116 | mdmjd = Mjd; | 
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|  | 117 | etiltmjd = *etiltp; | 
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|  | 118 | stiltmjd = *stiltp; | 
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|  | 119 | sizemjd = *sizep; | 
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|  | 120 | memcpy (smd, md, sizeof(smd)); | 
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|  | 121 | } | 
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|  | 122 |  | 
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|  | 123 | /* hunt for BDL file in dir[] and use if possible. | 
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|  | 124 | * return 0 if ok, else -1 | 
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|  | 125 | */ | 
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|  | 126 | static int | 
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|  | 127 | use_bdl ( | 
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|  | 128 | double JD,              /* julian date */ | 
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|  | 129 | char dir[],             /* directory */ | 
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|  | 130 | MoonData md[S_NMOONS])  /* fill md[1..NM-1].x/y/z for each moon */ | 
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|  | 131 | { | 
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|  | 132 | #define SATRAU  .0004014253     /* saturn radius, AU */ | 
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|  | 133 | double x[S_NMOONS], y[S_NMOONS], z[S_NMOONS]; | 
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|  | 134 | char buf[1024]; | 
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|  | 135 | FILE *fp; | 
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| [3111] | 136 | char *fn; | 
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| [2551] | 137 | int i; | 
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|  | 138 |  | 
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| [3111] | 139 | /* check ranges and appropriate data file */ | 
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|  | 140 | if (JD < 2451179.50000)         /* Jan 1 1999 UTC */ | 
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| [2551] | 141 | return (-1); | 
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| [3111] | 142 | if (JD < 2455562.5)             /* Jan 1 2011 UTC */ | 
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|  | 143 | fn = "saturne.9910"; | 
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|  | 144 | else if (JD < 2459215.5)        /* Jan 1 2021 UTC */ | 
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|  | 145 | fn = "saturne.1020"; | 
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|  | 146 | else | 
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|  | 147 | return (-1); | 
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| [2551] | 148 |  | 
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|  | 149 | /* open */ | 
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| [3111] | 150 | (void) sprintf (buf, "%s/%s", dir, fn); | 
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| [2551] | 151 | fp = fopen (buf, "r"); | 
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| [3111] | 152 | if (!fp) { | 
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|  | 153 | fprintf (stderr, "%s: %s\n", fn, strerror(errno)); | 
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| [2551] | 154 | return (-1); | 
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| [3111] | 155 | } | 
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| [2551] | 156 |  | 
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|  | 157 | /* use it */ | 
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|  | 158 | if ((i = read_bdl (fp, JD, x, y, z, buf)) < 0) { | 
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| [3111] | 159 | fprintf (stderr, "%s: %s\n", fn, buf); | 
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| [2551] | 160 | fclose (fp); | 
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|  | 161 | return (-1); | 
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|  | 162 | } | 
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|  | 163 | if (i != S_NMOONS-1) { | 
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| [3111] | 164 | fprintf (stderr, "%s: BDL says %d moons, code expects %d", fn, | 
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| [2551] | 165 | i, S_NMOONS-1); | 
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|  | 166 | fclose (fp); | 
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|  | 167 | return (-1); | 
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|  | 168 | } | 
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|  | 169 |  | 
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|  | 170 | /* copy into md[1..NM-1] with our scale and sign conventions */ | 
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|  | 171 | for (i = 1; i < S_NMOONS; i++) { | 
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|  | 172 | md[i].x =  x[i-1]/SATRAU;   /* we want sat radii +E */ | 
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|  | 173 | md[i].y = -y[i-1]/SATRAU;   /* we want sat radii +S */ | 
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|  | 174 | md[i].z = -z[i-1]/SATRAU;   /* we want sat radii +front */ | 
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|  | 175 | } | 
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|  | 176 |  | 
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|  | 177 | /* ok */ | 
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|  | 178 | fclose (fp); | 
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|  | 179 | return (0); | 
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|  | 180 | } | 
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|  | 181 |  | 
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|  | 182 | /*  */ | 
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|  | 183 | /*     SS2TXT.BAS                     Dan Bruton, astro@tamu.edu */ | 
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|  | 184 | /*  */ | 
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|  | 185 | /*       This is a text version of SATSAT2.BAS.  It is smaller, */ | 
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|  | 186 | /*    making it easier to convert other languages (250 lines */ | 
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|  | 187 | /*    compared to 850 lines). */ | 
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|  | 188 | /*  */ | 
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|  | 189 | /*       This BASIC program computes and displays the locations */ | 
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|  | 190 | /*    of Saturn's Satellites for a given date and time.  See */ | 
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|  | 191 | /*    "Practical Astronomy with your Calculator" by Peter */ | 
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|  | 192 | /*    Duffett-Smith and the Astronomical Almanac for explanations */ | 
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|  | 193 | /*    of some of the calculations here.  The code is included so */ | 
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|  | 194 | /*    that users can make changes or convert to other languages. */ | 
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|  | 195 | /*    This code was made using QBASIC (comes with DOS 5.0). */ | 
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|  | 196 | /*  */ | 
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|  | 197 | /*    ECD: merged with Sky and Tel, below, for better earth and sun ring tilt */ | 
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|  | 198 | /*  */ | 
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|  | 199 |  | 
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|  | 200 | /* ECD: BASICeze */ | 
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|  | 201 | #define FOR     for | 
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|  | 202 | #define IF      if | 
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|  | 203 | #define ELSE    else | 
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|  | 204 | #define COS     cos | 
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|  | 205 | #define SIN     sin | 
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|  | 206 | #define TAN     tan | 
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|  | 207 | #define ATN     atan | 
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|  | 208 | #define ABS     fabs | 
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|  | 209 | #define SQR     sqrt | 
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|  | 210 |  | 
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|  | 211 | /* find saturn moon data from Bruton's model */ | 
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|  | 212 | /* this originally computed +X:East +Y:North +Z:behind in [1..8] indeces. | 
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|  | 213 | * and +tilt:front south, rads | 
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|  | 214 | * then we adjust things in md[].x/y/z/mag to fit into our MoonData format. | 
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|  | 215 | */ | 
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|  | 216 | static void | 
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|  | 217 | bruton_saturn ( | 
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|  | 218 | Obj *sop,               /* saturn */ | 
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|  | 219 | double JD,              /* julian date */ | 
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|  | 220 | MoonData md[S_NMOONS])  /* fill md[1..NM-1].x/y/z for each moon */ | 
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|  | 221 | { | 
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|  | 222 | /* ECD: code does not use [0]. | 
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|  | 223 | * ECD and why 11 here? seems like 9 would do | 
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|  | 224 | */ | 
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|  | 225 | double SMA[11], U[11], U0[11], PD[11]; | 
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|  | 226 | double X[S_NMOONS], Y[S_NMOONS], Z[S_NMOONS]; | 
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|  | 227 |  | 
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|  | 228 | double P,TP,TE,EP,EE,RE0,RP0,RS; | 
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|  | 229 | double JDE,LPE,LPP,LEE,LEP; | 
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|  | 230 | double NN,ME,MP,VE,VP; | 
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|  | 231 | double LE,LP,RE,RP,DT,II,F,F1; | 
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|  | 232 | double RA,DECL; | 
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|  | 233 | double TVA,PVA,TVC,PVC,DOT1,INC,TVB,PVB,DOT2,INCI; | 
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|  | 234 | double TRIP,GAM,TEMPX,TEMPY,TEMPZ; | 
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|  | 235 | int I; | 
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|  | 236 |  | 
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|  | 237 | /* saturn */ | 
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|  | 238 | RA = sop->s_ra; | 
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|  | 239 | DECL = sop->s_dec; | 
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|  | 240 |  | 
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|  | 241 | /*  ******************************************************************** */ | 
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|  | 242 | /*  *                                                                  * */ | 
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|  | 243 | /*  *                        Constants                                 * */ | 
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|  | 244 | /*  *                                                                  * */ | 
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|  | 245 | /*  ******************************************************************** */ | 
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|  | 246 | P = PI / 180; | 
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|  | 247 | /*  Orbital Rate of Saturn in Radians per Days */ | 
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|  | 248 | TP = 2 * PI / (29.45771 * 365.2422); | 
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|  | 249 | /*  Orbital Rate of Earth in Radians per Day */ | 
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|  | 250 | TE = 2 * PI / (1.00004 * 365.2422); | 
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|  | 251 | /*  Eccentricity of Saturn's Orbit */ | 
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|  | 252 | EP = .0556155; | 
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|  | 253 | /*  Eccentricity of Earth's Orbit */ | 
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|  | 254 | EE = .016718; | 
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|  | 255 | /*  Semimajor axis of Earth's and Saturn's orbit in Astronomical Units */ | 
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|  | 256 | RE0 = 1; RP0 = 9.554747; | 
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|  | 257 | /*  Semimajor Axis of the Satellites' Orbit in Kilometers */ | 
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|  | 258 | SMA[1] = 185600; SMA[2] = 238100; SMA[3] = 294700; SMA[4] = 377500; | 
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|  | 259 | SMA[5] = 527200; SMA[6] = 1221600; SMA[7] = 1483000; SMA[8] = 3560100; | 
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|  | 260 | /*  Eccentricity of Satellites' Orbit [Program uses 0] */ | 
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|  | 261 | /*  Synodic Orbital Period of Moons in Days */ | 
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|  | 262 | PD[1] = .9425049; | 
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|  | 263 | PD[2] = 1.3703731; | 
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|  | 264 | PD[3] = 1.8880926; | 
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|  | 265 | PD[4] = 2.7375218; | 
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|  | 266 | PD[5] = 4.5191631; | 
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|  | 267 | PD[6] = 15.9669028; | 
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|  | 268 | PD[7] = 21.3174647; | 
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|  | 269 | PD[8] = 79.9190206;        /* personal mail 1/14/95 */ | 
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|  | 270 | RS = 60330; /*  Radius of planet in kilometers */ | 
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|  | 271 |  | 
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|  | 272 | /*  ******************************************************************** */ | 
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|  | 273 | /*  *                                                                  * */ | 
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|  | 274 | /*  *                      Epoch Information                           * */ | 
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|  | 275 | /*  *                                                                  * */ | 
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|  | 276 | /*  ******************************************************************** */ | 
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|  | 277 | JDE = 2444238.5; /*  Epoch Jan 0.0 1980 = December 31,1979 0:0:0 UT */ | 
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|  | 278 | LPE = 165.322242 * P; /*  Longitude of Saturn at Epoch */ | 
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|  | 279 | LPP = 92.6653974 * P; /*  Longitude of Saturn`s Perihelion */ | 
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|  | 280 | LEE = 98.83354 * P; /*  Longitude of Earth at Epoch */ | 
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|  | 281 | LEP = 102.596403 * P; /*  Longitude of Earth's Perihelion */ | 
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|  | 282 | /*  U0[I] = Angle from inferior geocentric conjuction */ | 
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|  | 283 | /*          measured westward along the orbit at epoch */ | 
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|  | 284 | U0[1] = 18.2919 * P; | 
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|  | 285 | U0[2] = 174.2135 * P; | 
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|  | 286 | U0[3] = 172.8546 * P; | 
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|  | 287 | U0[4] = 76.8438 * P; | 
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|  | 288 | U0[5] = 37.2555 * P; | 
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|  | 289 | U0[6] = 57.7005 * P; | 
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|  | 290 | U0[7] = 266.6977 * P; | 
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|  | 291 | U0[8] = 195.3513 * P;      /* from personal mail 1/14/1995 */ | 
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|  | 292 |  | 
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|  | 293 | /*  ******************************************************************** */ | 
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|  | 294 | /*  *                                                                  * */ | 
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|  | 295 | /*  *                    Orbit Calculations                            * */ | 
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|  | 296 | /*  *                                                                  * */ | 
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|  | 297 | /*  ******************************************************************** */ | 
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|  | 298 | /*  ****************** FIND MOON ORBITAL ANGLES ************************ */ | 
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|  | 299 | NN = JD - JDE; /*  NN = Number of days since epoch */ | 
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|  | 300 | ME = ((TE * NN) + LEE - LEP); /*  Mean Anomoly of Earth */ | 
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|  | 301 | MP = ((TP * NN) + LPE - LPP); /*  Mean Anomoly of Saturn */ | 
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|  | 302 | VE = ME; VP = MP; /*  True Anomolies - Solve Kepler's Equation */ | 
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|  | 303 | FOR (I = 1; I <= 3; I++) { | 
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|  | 304 | VE = VE - (VE - (EE * SIN(VE)) - ME) / (1 - (EE * COS(VE))); | 
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|  | 305 | VP = VP - (VP - (EP * SIN(VP)) - MP) / (1 - (EP * COS(VP))); | 
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|  | 306 | } | 
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|  | 307 | VE = 2 * ATN(SQR((1 + EE) / (1 - EE)) * TAN(VE / 2)); | 
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|  | 308 | IF (VE < 0) VE = (2 * PI) + VE; | 
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|  | 309 | VP = 2 * ATN(SQR((1 + EP) / (1 - EP)) * TAN(VP / 2)); | 
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|  | 310 | IF (VP < 0) VP = (2 * PI) + VP; | 
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|  | 311 | /*   Heliocentric Longitudes of Earth and Saturn */ | 
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|  | 312 | LE = VE + LEP; IF (LE > (2 * PI)) LE = LE - (2 * PI); | 
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|  | 313 | LP = VP + LPP; IF (LP > (2 * PI)) LP = LP - (2 * PI); | 
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|  | 314 | /*   Distances of Earth and Saturn from the Sun in AU's */ | 
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|  | 315 | RE = RE0 * (1 - EE * EE) / (1 + EE * COS(VE)); | 
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|  | 316 | RP = RP0 * (1 - EP * EP) / (1 + EP * COS(VP)); | 
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|  | 317 | /*   DT = Distance from Saturn to Earth in AU's - Law of Cosines */ | 
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|  | 318 | DT = SQR((RE * RE) + (RP * RP) - (2 * RE * RP * COS(LE - LP))); | 
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|  | 319 | /*   II = Angle between Earth and Sun as seen from Saturn */ | 
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|  | 320 | II = RE * SIN(LE - LP) / DT; | 
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|  | 321 | II = ATN(II / SQR(1 - II * II)); /*   ArcSIN and Law of Sines */ | 
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|  | 322 | /*    F = NN - (Light Time to Earth in days) */ | 
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|  | 323 | F = NN - (DT / 173.83); | 
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|  | 324 | F1 = II + MP - VP; | 
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|  | 325 | /*  U(I) = Angle from inferior geocentric conjuction measured westward */ | 
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|  | 326 | FOR (I = 1; I < S_NMOONS; I++) { | 
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|  | 327 | U[I] = U0[I] + (F * 2 * PI / PD[I]) + F1; | 
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|  | 328 | U[I] = ((U[I] / (2 * PI)) - (int)(U[I] / (2 * PI))) * 2 * PI; | 
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|  | 329 |  | 
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|  | 330 | } | 
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|  | 331 |  | 
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|  | 332 | /*  **************** FIND INCLINATION OF RINGS ************************* */ | 
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|  | 333 | /*  Use dot product of Earth-Saturn vector and Saturn's rotation axis */ | 
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|  | 334 | TVA = (90 - 83.51) * P; /*  Theta coordinate of Saturn's axis */ | 
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|  | 335 | PVA = 40.27 * P; /*  Phi coordinate of Saturn's axis */ | 
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|  | 336 | TVC = (PI / 2) - DECL; | 
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|  | 337 | PVC = RA; | 
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|  | 338 | DOT1 = SIN(TVA) * COS(PVA) * SIN(TVC) * COS(PVC); | 
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|  | 339 | DOT1 = DOT1 + SIN(TVA) * SIN(PVA) * SIN(TVC) * SIN(PVC); | 
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|  | 340 | DOT1 = DOT1 + COS(TVA) * COS(TVC); | 
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|  | 341 | INC = ATN(SQR(1 - DOT1 * DOT1) / DOT1); /*    ArcCOS */ | 
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|  | 342 | IF (INC > 0) INC = (PI / 2) - INC; ELSE INC = -(PI / 2) - INC; | 
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|  | 343 |  | 
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|  | 344 | /*  ************* FIND INCLINATION OF IAPETUS' ORBIT ******************* */ | 
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|  | 345 | /*  Use dot product of Earth-Saturn vector and Iapetus' orbit axis */ | 
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|  | 346 | /*  Vector B */ | 
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|  | 347 | TVB = (90 - 75.6) * P; /*  Theta coordinate of Iapetus' orbit axis (estimate) */ | 
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|  | 348 | PVB = 21.34 * 2 * PI / 24; /*  Phi coordinate of Iapetus' orbit axis (estimate) */ | 
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|  | 349 | DOT2 = SIN(TVB) * COS(PVB) * SIN(TVC) * COS(PVC); | 
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|  | 350 | DOT2 = DOT2 + SIN(TVB) * SIN(PVB) * SIN(TVC) * SIN(PVC); | 
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|  | 351 | DOT2 = DOT2 + COS(TVB) * COS(TVC); | 
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|  | 352 | INCI = ATN(SQR(1 - DOT2 * DOT2) / DOT2); /*    ArcCOS */ | 
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|  | 353 | IF (INCI > 0) INCI = (PI / 2) - INCI; ELSE INCI = -(PI / 2) - INCI; | 
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|  | 354 |  | 
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|  | 355 | /*  ************* FIND ROTATION ANGLE OF IAPETUS' ORBIT **************** */ | 
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|  | 356 | /*  Use inclination of Iapetus' orbit with respect to ring plane */ | 
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|  | 357 | /*  Triple Product */ | 
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|  | 358 | TRIP = SIN(TVC) * COS(PVC) * SIN(TVA) * SIN(PVA) * COS(TVB); | 
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|  | 359 | TRIP = TRIP - SIN(TVC) * COS(PVC) * SIN(TVB) * SIN(PVB) * COS(TVA); | 
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|  | 360 | TRIP = TRIP + SIN(TVC) * SIN(PVC) * SIN(TVB) * COS(PVB) * COS(TVA); | 
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|  | 361 | TRIP = TRIP - SIN(TVC) * SIN(PVC) * SIN(TVA) * COS(PVA) * COS(TVB); | 
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|  | 362 | TRIP = TRIP + COS(TVC) * SIN(TVA) * COS(PVA) * SIN(TVB) * SIN(PVB); | 
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|  | 363 | TRIP = TRIP - COS(TVC) * SIN(TVB) * COS(PVB) * SIN(TVA) * SIN(PVA); | 
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|  | 364 | GAM = -1 * ATN(TRIP / SQR(1 - TRIP * TRIP)); /*  ArcSIN */ | 
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|  | 365 |  | 
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|  | 366 | /*  ******************************************************************** */ | 
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|  | 367 | /*  *                                                                  * */ | 
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|  | 368 | /*  *                     Compute Moon Positions                       * */ | 
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|  | 369 | /*  *                                                                  * */ | 
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|  | 370 | /*  ******************************************************************** */ | 
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|  | 371 | FOR (I = 1; I < S_NMOONS - 1; I++) { | 
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|  | 372 | X[I] = -1 * SMA[I] * SIN(U[I]) / RS; | 
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|  | 373 | Z[I] = -1 * SMA[I] * COS(U[I]) / RS;   /* ECD */ | 
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|  | 374 | Y[I] = SMA[I] * COS(U[I]) * SIN(INC) / RS; | 
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|  | 375 | } | 
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|  | 376 | /*  ************************* Iapetus' Orbit *************************** */ | 
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|  | 377 | TEMPX = -1 * SMA[8] * SIN(U[8]) / RS; | 
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|  | 378 | TEMPZ = -1 * SMA[8] * COS(U[8]) / RS; | 
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|  | 379 | TEMPY = SMA[8] * COS(U[8]) * SIN(INCI) / RS; | 
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|  | 380 | X[8] = TEMPX * COS(GAM) + TEMPY * SIN(GAM); /*       Rotation */ | 
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|  | 381 | Z[8] = TEMPZ * COS(GAM) + TEMPY * SIN(GAM); | 
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|  | 382 | Y[8] = -1 * TEMPX * SIN(GAM) + TEMPY * COS(GAM); | 
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|  | 383 |  | 
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|  | 384 | #ifdef SHOWALL | 
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|  | 385 | /*  ******************************************************************** */ | 
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|  | 386 | /*  *                                                                  * */ | 
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|  | 387 | /*  *                          Show Results                            * */ | 
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|  | 388 | /*  *                                                                  * */ | 
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|  | 389 | /*  ******************************************************************** */ | 
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|  | 390 | printf ("                           Julian Date : %g\n", JD); | 
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|  | 391 | printf ("             Right Ascension of Saturn : %g Hours\n", RA * 24 / (2 * PI)); | 
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|  | 392 | printf ("                 Declination of Saturn : %g\n", DECL / P); | 
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|  | 393 | printf ("   Ring Inclination as seen from Earth : %g\n", -1 * INC / P); | 
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|  | 394 | printf ("      Heliocentric Longitude of Saturn : %g\n", LP / P); | 
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|  | 395 | printf ("       Heliocentric Longitude of Earth : %g\n", LE / P); | 
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|  | 396 | printf ("                Sun-Saturn-Earth Angle : %g\n", II / P); | 
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|  | 397 | printf ("     Distance between Saturn and Earth : %g AU = %g million miles\n", DT, (DT * 93)); | 
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|  | 398 | printf ("       Light time from Saturn to Earth : %g minutes\n", DT * 8.28); | 
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|  | 399 | TEMP = 2 * ATN(TAN(165.6 * P / (2 * 3600)) / DT) * 3600 / P; | 
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|  | 400 | printf ("                Angular Size of Saturn : %g arcsec\n", TEMP); | 
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|  | 401 | printf ("  Major Angular Size of Saturn's Rings : %g arcsec\n", RS4 * TEMP / RS); | 
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|  | 402 | printf ("  Minor Angular Size of Saturn's Rings : %g arcsec\n", ABS(RS4 * TEMP * SIN(INC) / RS)); | 
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|  | 403 | #endif | 
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|  | 404 |  | 
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|  | 405 | /* copy into md[1..S_NMOONS-1] with our sign conventions */ | 
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|  | 406 | for (I = 1; I < S_NMOONS; I++) { | 
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|  | 407 | md[I].x =  X[I];        /* we want +E */ | 
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|  | 408 | md[I].y = -Y[I];        /* we want +S */ | 
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|  | 409 | md[I].z = -Z[I];        /* we want +front */ | 
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|  | 410 | } | 
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|  | 411 | } | 
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|  | 412 |  | 
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|  | 413 | /* given saturn loc in md[0].ra/dec and size, and location of each moon in | 
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|  | 414 | * md[1..NM-1].x/y in sat radii, find ra/dec of each moon in md[1..NM-1].ra/dec. | 
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|  | 415 | */ | 
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|  | 416 | static void | 
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|  | 417 | moonradec ( | 
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|  | 418 | double satsize,         /* sat diameter, rads */ | 
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|  | 419 | MoonData md[S_NMOONS])  /* fill in RA and Dec */ | 
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|  | 420 | { | 
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|  | 421 | double satrad = satsize/2; | 
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|  | 422 | double satra = md[0].ra; | 
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|  | 423 | double satdec = md[0].dec; | 
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|  | 424 | int i; | 
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|  | 425 |  | 
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|  | 426 | for (i = 1; i < S_NMOONS; i++) { | 
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|  | 427 | double dra  = satrad * md[i].x; | 
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|  | 428 | double ddec = satrad * md[i].y; | 
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|  | 429 | md[i].ra  = satra + dra; | 
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|  | 430 | md[i].dec = satdec - ddec; | 
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|  | 431 | } | 
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|  | 432 | } | 
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|  | 433 |  | 
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|  | 434 | /* set svis according to whether moon is in sun light */ | 
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|  | 435 | static void | 
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|  | 436 | moonSVis( | 
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|  | 437 | Obj *eop,               /* earth == SUN */ | 
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|  | 438 | Obj *sop,               /* saturn */ | 
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|  | 439 | MoonData md[S_NMOONS]) | 
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|  | 440 | { | 
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|  | 441 | double esd = eop->s_edist; | 
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|  | 442 | double eod = sop->s_edist; | 
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|  | 443 | double sod = sop->s_sdist; | 
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|  | 444 | double soa = degrad(sop->s_elong); | 
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|  | 445 | double esa = asin(esd*sin(soa)/sod); | 
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|  | 446 | double   h = sod*sop->s_hlat; | 
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|  | 447 | double nod = h*(1./eod - 1./sod); | 
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|  | 448 | double sca = cos(esa), ssa = sin(esa); | 
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|  | 449 | int i; | 
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|  | 450 |  | 
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|  | 451 | for (i = 1; i < S_NMOONS; i++) { | 
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|  | 452 | MoonData *mdp = &md[i]; | 
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|  | 453 | double xp =  sca*mdp->x + ssa*mdp->z; | 
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|  | 454 | double yp =  mdp->y; | 
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|  | 455 | double zp = -ssa*mdp->x + sca*mdp->z; | 
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|  | 456 | double ca = cos(nod), sa = sin(nod); | 
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|  | 457 | double xpp = xp; | 
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|  | 458 | double ypp = ca*yp - sa*zp; | 
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|  | 459 | double zpp = sa*yp + ca*zp; | 
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|  | 460 | int outside = xpp*xpp + ypp*ypp > 1.0; | 
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|  | 461 | int infront = zpp > 0.0; | 
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|  | 462 | mdp->svis = outside || infront; | 
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|  | 463 | } | 
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|  | 464 | } | 
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|  | 465 |  | 
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|  | 466 | /* set evis according to whether moon is geometrically visible from earth */ | 
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|  | 467 | static void | 
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|  | 468 | moonEVis (MoonData md[S_NMOONS]) | 
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|  | 469 | { | 
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|  | 470 | int i; | 
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|  | 471 |  | 
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|  | 472 | for (i = 1; i < S_NMOONS; i++) { | 
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|  | 473 | MoonData *mdp = &md[i]; | 
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|  | 474 | int outside = mdp->x*mdp->x + mdp->y*mdp->y > 1.0; | 
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|  | 475 | int infront = mdp->z > 0.0; | 
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|  | 476 | mdp->evis = outside || infront; | 
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|  | 477 | } | 
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|  | 478 | } | 
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|  | 479 |  | 
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| [2643] | 480 | /* set pshad and sx,sy shadow info */ | 
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|  | 481 | static void | 
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|  | 482 | moonPShad( | 
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|  | 483 | Obj *eop,             /* earth == SUN */ | 
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|  | 484 | Obj *sop,             /* saturn */ | 
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|  | 485 | MoonData md[S_NMOONS]) | 
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|  | 486 | { | 
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|  | 487 | int i; | 
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|  | 488 |  | 
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|  | 489 | for (i = 1; i < S_NMOONS; i++) { | 
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|  | 490 | MoonData *mdp = &md[i]; | 
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|  | 491 | mdp->pshad = !plshadow (sop, eop, POLE_RA, POLE_DEC, mdp->x, | 
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|  | 492 | mdp->y, mdp->z, &mdp->sx, &mdp->sy); | 
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|  | 493 | } | 
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|  | 494 | } | 
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|  | 495 |  | 
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|  | 496 |  | 
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|  | 497 | /* set whether moons are transiting */ | 
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|  | 498 | static void | 
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|  | 499 | moonTrans (MoonData md[S_NMOONS]) | 
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|  | 500 | { | 
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|  | 501 | int i; | 
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|  | 502 |  | 
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|  | 503 | for (i = 1; i < S_NMOONS; i++) { | 
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|  | 504 | MoonData *mdp = &md[i]; | 
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|  | 505 | mdp->trans = mdp->z > 0 && mdp->x*mdp->x + mdp->y*mdp->y < 1; | 
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|  | 506 | } | 
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|  | 507 | } | 
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|  | 508 |  | 
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| [2551] | 509 | /* For RCS Only -- Do Not Edit */ | 
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| [3477] | 510 | static char *rcsid[2] = {(char *)rcsid, "@(#) $RCSfile: satmoon.c,v $ $Date: 2008-03-25 17:45:19 $ $Revision: 1.5 $ $Name: not supported by cvs2svn $"}; | 
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