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Lunar Eclipses: 1001 to 1100

( 1001 CE to 1100 CE )

Fred Espenak

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During the 11th century CE1, Earth experienced 247 lunar eclipses as follows:

                             All Eclipses =  247  = 100.0%
 
                            Penumbral (N) =   88  =  35.6%
                              Partial (P) =   96  =  38.9%
                                Total (T) =   63  =  25.5%
Eclipses in which some portion of the Moon passes into Earth 's umbral shadow are classified as umbral eclipses . All total and partial lunar eclipses are umbral eclipses. Statistics for umbral eclipses during the century are as follows:
                             Umbral (P&T) =  159  =  64.4%
 
                            Central2 (T±) =   48  =  19.4%
                          Non-Central (T) =   15  =   6.1%
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There are two to five lunar eclipses in each calendar year. 
The distribution of eclipses each year during this century are as follows: 
                           Number of Years with 2 Eclipses: 68
                           Number of Years with 3 Eclipses: 17
                           Number of Years with 4 Eclipses: 15
During any given century, old Saros series end while new ones begin. The year and Saros number of these events are as follows:
     4 Saros Series' begin (Year/Saros):   1022/122  1029/121  1087/123  1094/117 
     3 Saros Series' end   (Year/Saros):   1014/ 75  1043/ 76  1090/ 77 

The longest and shortest lunar eclipses of the century and other eclipse extrema are listed below.

     Longest  Total  Lunar Eclipse:    1016 May 24    Duration = 01h45m50s
    Shortest  Total  Lunar Eclipse:    1001 Mar 12    Duration = 00h08m29s
     Longest Partial Lunar Eclipse:    1071 Jun 15    Duration = 03h27m56s
    Shortest Partial Lunar Eclipse:    1050 Feb 09    Duration = 00h21m57s
     Largest  Total  Lunar Eclipse:    1092 Apr 24    Umbra Magnitude = 1.8741
    Smallest  Total  Lunar Eclipse:    1001 Mar 12    Umbra Magnitude = 1.0031
     Largest Partial Lunar Eclipse:    1048 Mar 03    Umbra Magnitude = 0.9959
    Smallest Partial Lunar Eclipse:    1050 Feb 09    Umbra Magnitude = 0.0079
   Largest Penumbral Lunar Eclipse:    1032 Jan 30     Pen. Magnitude = 1.0836
  Smallest Penumbral Lunar Eclipse:    1029 Sep 25     Pen. Magnitude = 0.0072

Total penumbral eclipses are lunar eclipses in which the entire Moon passes through the penumbra but misses the umbral shadow. Total penumbral eclipses (and magnitudes) for the century are:

           Total Penumbral Eclipse:    1014 Jan 19     Pen. Magnitude = 1.0547
           Total Penumbral Eclipse:    1032 Jan 30     Pen. Magnitude = 1.0836
           Total Penumbral Eclipse:    1097 Jul 27     Pen. Magnitude = 1.0706

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Description of Lunar Eclipse Catalog

Local circumstances at greatest eclipse3 for every event during the century are presented in the following catalog. The calendar date and Universal Time of the instant of greatest eclipse are found in the first two columns. The eclipse type is given (T=Total, P=Partial, or N=Penumbral) along with the Saros series. Gamma is the distance of the Moon's center from the shadow axis of Earth at greatest eclipse (in Earth radii). The penumbral and umbral magnitudes of the eclipse are defined as the fractions of the Moon's diameter obscured by each shadow at greatest eclipse. The semi-durations of the partial and total phases of the eclipse are given to the nearest minute. Finally, the Greenwich Sidereal Time at 00:00 U.T., along with the Moon's Geocentric Right Ascension and Declination at greatest eclipse complete each record. For a detailed key and additional information about the catalog, see: Key to Catalog of Lunar Eclipses.

For any eclipse in the catalog, the start and end times of the partial eclipse phases can be calculated by respectively subtracting and adding the semi-duration of the partial phase (S.D. Par) to the instant of greatest eclipse. Similarly, the start and end times of the total eclipse can be calculated by either subtracting or adding the semi-duration of the total phase (S.D. Tot) to the instant of greatest eclipse. For a detailed example, see Contact - Key to Lunar Eclipse Catalogs.

To determine whether an eclipse is visible from a specific geographic location, it is simply a matter of calculating the Moon's altitude and azimuth during each phase of the eclipse. The calculations can be performed on any pocket calculator having trigonometric functions (SIN, COS, TAN). Armed with the latitude and longitude of the location, the lunar eclipse catalog provides all the additional information needed to make the calculations. For the equations and an example of how to calculate the Moon's altitude for a specific location, see Altitude - Key to Lunar Eclipse Catalogs.

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Footnotes

1The terms BCE and CE are abbreviations for "Before Common Era" and "Common Era," respectively. They are the secular equivalents to the BC and AD dating conventions. (See: Year Dating Conventions )

2Central lunar eclipses are eclipses in which some portion of the Moon passes the central axis of Earth's umbral shadow. All penumbral and partial lunar eclipses are non-central eclipses since the Moon misses the shadow axis. However, total eclipses may be either non-central (frequently) or central (occasionally). Central total eclipses are longer and usually darker than non-central total eclipses.

3Greatest eclipse is defined as the instant when the Moon passes closest to the axis of Earth's shadow. The instant of greatest eclipse corresponds to the maximum phase of the eclipse.




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Lunar Eclipses: 1001 to 1100

( 1001 CE to 1100 CE )

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         Local Circumstances at Greatest Eclipse:   1001 to   1100

                U.T.
             Greatest    Saros          Pen.   Umb. S.D. S.D.  GST    Moon  Moon
      Date    Eclipse Type #    Gamma   Mag.   Mag. Par  Tot  (0 UT)   RA    Dec
                                                                 h     h      °

1001 Mar 12 07:50 T 87 0.474 2.004 1.003 96m 4m 11.7 11.84 1.5 1001 Sep 05 16:04 P 92 -0.528 1.955 0.856 100m - 23.3 23.28 -5.2 1002 Mar 01 23:25 T+ 97 -0.239 2.424 1.447 103m 43m 11.0 11.18 5.1 1002 Aug 25 16:04 T- 102 0.204 2.548 1.450 115m 47m 22.6 22.58 -8.8 1003 Feb 19 15:18 P 107 -0.944 1.142 0.142 41m - 10.3 10.50 8.5 1003 Aug 14 19:45 P 112 0.933 1.186 0.137 43m - 21.9 21.88 -12.0 1004 Jan 10 11:38 N 79 1.159 0.794 -0.298 - - 7.6 7.85 22.2 1004 Jul 04 23:00 P 84 -0.939 1.135 0.166 44m - 19.2 19.30 -23.3 1004 Dec 29 12:21 P 89 0.499 2.022 0.894 102m - 6.9 7.03 23.3 1005 Jun 24 16:12 T+ 94 -0.202 2.483 1.521 104m 46m 18.5 18.56 -23.5
1005 Dec 18 11:53 T+ 99 -0.185 2.589 1.481 114m 48m 6.2 6.19 23.4 1006 Jun 14 07:40 P 104 0.562 1.842 0.843 92m - 17.8 17.82 -23.0 1006 Dec 07 17:17 P 109 -0.859 1.324 0.272 58m - 5.4 5.37 22.5 1007 May 05 03:55 N 76 -1.396 0.352 -0.729 - - 15.2 15.09 -18.8 1007 Jun 03 17:12 N 114 1.385 0.359 -0.696 - - 17.1 17.08 -21.7 1007 Oct 28 19:05 N 81 1.194 0.676 -0.311 - - 2.8 2.52 16.3 1007 Nov 27 05:38 N 119 -1.476 0.165 -0.837 - - 4.7 4.59 20.6 1008 Apr 23 04:32 P 86 -0.666 1.699 0.605 88m - 14.4 14.38 -14.9 1008 Oct 17 10:49 P 91 0.537 1.888 0.889 91m - 2.1 1.84 12.0 1009 Apr 12 07:07 T- 96 0.100 2.720 1.660 114m 51m 13.7 13.70 -10.5
1009 Oct 06 22:51 T+ 101 -0.170 2.586 1.538 110m 48m 1.4 1.18 7.4 1010 Apr 01 16:38 P 106 0.834 1.346 0.339 63m - 13.0 13.06 -5.9 1010 Sep 26 03:56 P 111 -0.922 1.231 0.133 44m - 0.7 0.51 2.4 1011 Feb 20 23:05 N 78 -1.084 0.875 -0.106 - - 10.4 10.60 7.7 1011 Mar 22 07:47 N 116 1.499 0.109 -0.865 - - 12.3 12.43 -1.2 1011 Aug 16 11:48 N 83 1.272 0.582 -0.504 - - 22.0 21.99 -11.1 1012 Feb 10 14:08 T 88 -0.416 2.117 1.102 99m 24m 9.7 9.94 12.2 1012 Aug 04 17:32 P 93 0.476 2.015 0.984 99m - 21.3 21.31 -15.3 1013 Jan 29 23:41 T 98 0.301 2.359 1.283 108m 39m 9.0 9.24 16.4 1013 Jul 25 06:28 T 103 -0.291 2.329 1.351 103m 40m 20.6 20.63 -18.9
1014 Jan 19 01:51 N 108 1.024 1.055 -0.066 - - 8.2 8.48 20.1 1014 Jun 15 16:30 Ne 75 1.490 0.124 -0.845 - - 17.9 17.93 -22.1 1014 Jul 14 23:20 P 113 -1.009 1.002 0.041 22m - 19.9 19.94 -21.9 1014 Dec 09 07:18 N 80 -1.311 0.514 -0.580 - - 5.5 5.51 22.2 1015 Jun 05 06:42 P 85 0.795 1.422 0.408 69m - 17.2 17.20 -22.3 1015 Nov 28 14:51 P 90 -0.566 1.852 0.817 91m - 4.8 4.70 21.8 1016 May 24 14:09 T- 95 0.033 2.847 1.778 116m 53m 16.5 16.44 -21.8 1016 Nov 17 04:37 T- 100 0.129 2.634 1.640 105m 48m 4.1 3.92 20.6 1017 May 13 15:28 P 105 -0.736 1.569 0.476 80m - 15.8 15.68 -20.4 1017 Nov 06 20:23 P 110 0.799 1.406 0.410 66m - 3.4 3.17 18.7
1018 Apr 03 04:25 N 77 1.306 0.500 -0.547 - - 13.1 13.17 -6.2 1018 May 02 17:12 N 115 -1.459 0.230 -0.837 - - 15.0 14.93 -18.2 1018 Sep 27 20:04 N 82 -1.262 0.589 -0.474 - - 0.8 0.64 2.9 1018 Oct 27 09:29 N 120 1.533 0.080 -0.959 - - 2.7 2.43 16.1 1019 Mar 23 15:45 P 87 0.517 1.922 0.926 93m - 12.4 12.50 -2.7 1019 Sep 16 23:18 P 92 -0.577 1.867 0.762 96m - 0.1 23.95 -0.9 1020 Mar 12 07:39 T+ 97 -0.202 2.489 1.515 104m 45m 11.7 11.84 0.8 1020 Sep 04 23:08 T- 102 0.146 2.656 1.556 116m 50m 23.3 23.25 -4.8 1021 Mar 01 23:34 P 107 -0.916 1.191 0.192 48m - 11.0 11.18 4.3 1021 Aug 25 03:06 P 112 0.872 1.299 0.249 57m - 22.6 22.55 -8.3
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Lunar Eclipses: 1001 to 1100

( 1001 CE to 1100 CE )

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         Local Circumstances at Greatest Eclipse:   1001 to   1100

                U.T.
             Greatest    Saros          Pen.   Umb. S.D. S.D.  GST    Moon  Moon
      Date    Eclipse Type #    Gamma   Mag.   Mag. Par  Tot  (0 UT)   RA    Dec
                                                                 h     h      °

1022 Jan 20 19:47 N 79 1.173 0.769 -0.325 - - 8.4 8.63 19.7 1022 Jul 16 06:30 P 84 -1.007 1.009 0.041 22m - 19.9 20.04 -21.6 1022 Aug 14 14:27 Nb 122 1.544 0.036 -0.956 - - 21.9 21.87 -11.4 1023 Jan 09 20:21 P 89 0.509 2.003 0.877 101m - 7.6 7.82 21.6 1023 Jul 05 23:41 T 94 -0.275 2.350 1.386 103m 41m 19.3 19.32 -22.6 1023 Dec 29 20:05 T+ 99 -0.178 2.599 1.494 114m 48m 6.9 7.00 22.7 1024 Jun 24 14:52 P 104 0.487 1.980 0.978 97m - 18.6 18.58 -22.9 1024 Dec 18 01:53 P 109 -0.854 1.331 0.282 59m - 6.2 6.18 22.7 1025 May 15 10:33 N 76 -1.477 0.205 -0.876 - - 15.9 15.80 -21.5 1025 Jun 13 23:55 N 114 1.309 0.501 -0.556 - - 17.8 17.82 -22.3
1025 Nov 08 03:49 N 81 1.204 0.659 -0.329 - - 3.5 3.27 19.5 1025 Dec 07 14:29 N 119 -1.471 0.174 -0.826 - - 5.5 5.39 21.8 1026 May 04 11:10 P 86 -0.742 1.558 0.467 79m - 15.2 15.07 -18.1 1026 Oct 28 19:22 P 91 0.553 1.860 0.856 90m - 2.8 2.56 15.7 1027 Apr 23 14:12 T- 96 0.033 2.839 1.785 114m 52m 14.4 14.38 -14.2 1027 Oct 18 06:58 T+ 101 -0.148 2.630 1.575 111m 49m 2.1 1.87 11.4 1028 Apr 12 00:16 P 106 0.777 1.449 0.448 71m - 13.7 13.72 -9.9 1028 Oct 06 11:30 P 111 -0.890 1.292 0.188 52m - 1.4 1.18 6.7 1029 Mar 03 07:25 N 78 -1.115 0.817 -0.161 - - 11.1 11.27 3.5 1029 Apr 01 15:45 N 116 1.452 0.195 -0.775 - - 13.0 13.09 -5.4
1029 Aug 26 18:51 N 83 1.328 0.479 -0.607 - - 22.7 22.66 -7.2 1029 Sep 25 11:15 Nb 121 -1.593 0.007 -1.104 - - 0.6 0.51 1.7 1030 Feb 20 22:25 T 88 -0.443 2.068 1.053 98m 17m 10.4 10.63 8.2 1030 Aug 16 00:55 P 93 0.536 1.905 0.875 95m - 22.0 22.00 -11.8 1031 Feb 10 07:44 T 98 0.282 2.395 1.319 109m 41m 9.7 9.96 12.8 1031 Aug 05 14:05 T+ 103 -0.226 2.448 1.469 105m 44m 21.3 21.34 -15.9 1032 Jan 30 09:42 N 108 1.008 1.084 -0.036 - - 9.0 9.23 17.1 1032 Jul 25 06:56 P 113 -0.943 1.125 0.161 43m - 20.6 20.67 -19.5 1032 Dec 19 15:38 N 80 -1.312 0.512 -0.579 - - 6.3 6.31 22.3 1033 Jun 15 13:45 P 85 0.877 1.274 0.256 56m - 18.0 17.95 -22.7
1033 Dec 08 23:33 P 90 -0.567 1.849 0.816 90m - 5.5 5.50 22.8 1034 Jun 04 20:46 T- 95 0.118 2.692 1.621 116m 51m 17.2 17.19 -23.0 1034 Nov 28 13:29 T- 100 0.123 2.643 1.650 105m 48m 4.8 4.71 22.5 1035 May 24 21:56 P 105 -0.652 1.723 0.632 90m - 16.5 16.41 -22.3 1035 Nov 18 05:09 P 110 0.792 1.419 0.420 67m - 4.1 3.94 21.3 1036 Apr 13 11:44 N 77 1.360 0.397 -0.643 - - 13.8 13.84 -10.0 1036 May 13 00:00 N 115 -1.380 0.372 -0.690 - - 15.8 15.65 -20.9 1036 Oct 08 03:55 N 82 -1.296 0.530 -0.540 - - 1.5 1.31 7.1 1036 Nov 06 17:53 N 120 1.525 0.098 -0.947 - - 3.4 3.17 19.4 1037 Apr 02 23:35 P 87 0.566 1.830 0.840 90m - 13.1 13.16 -6.8
1037 Sep 27 06:40 P 92 -0.620 1.791 0.682 92m - 0.8 0.61 3.4 1038 Mar 23 15:45 T+ 97 -0.158 2.569 1.598 105m 47m 12.4 12.50 -3.5 1038 Sep 16 06:24 T- 102 0.096 2.748 1.647 117m 52m 0.0 23.91 -0.5 1039 Mar 13 07:41 P 107 -0.882 1.254 0.256 54m - 11.7 11.85 0.1 1039 Sep 05 10:36 P 112 0.817 1.399 0.349 66m - 23.3 23.22 -4.2 1040 Feb 01 03:49 N 79 1.193 0.732 -0.361 - - 9.1 9.37 16.6 1040 Jul 26 14:05 N 84 -1.071 0.892 -0.077 - - 20.7 20.77 -19.2 1040 Aug 24 22:12 N 122 1.488 0.140 -0.852 - - 22.6 22.54 -7.6 1041 Jan 20 04:14 P 89 0.524 1.975 0.851 100m - 8.3 8.59 19.2 1041 Jul 16 07:12 T 94 -0.347 2.220 1.253 100m 35m 20.0 20.06 -20.9
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Lunar Eclipses: 1001 to 1100

( 1001 CE to 1100 CE )

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         Local Circumstances at Greatest Eclipse:   1001 to   1100

                U.T.
             Greatest    Saros          Pen.   Umb. S.D. S.D.  GST    Moon  Moon
      Date    Eclipse Type #    Gamma   Mag.   Mag. Par  Tot  (0 UT)   RA    Dec
                                                                 h     h      °

1042 Jan 09 04:15 T+ 99 -0.170 2.613 1.512 114m 48m 7.6 7.79 21.1 1042 Jul 05 22:03 T 104 0.414 2.118 1.111 101m 25m 19.3 19.33 -21.9 1042 Dec 29 10:29 P 109 -0.848 1.340 0.294 60m - 6.9 6.99 22.0 1043 May 26 17:06 Ne 76 -1.560 0.052 -1.030 - - 16.6 16.54 -23.5 1043 Jun 25 06:37 N 114 1.231 0.646 -0.416 - - 18.6 18.57 -22.2 1043 Nov 19 12:39 N 81 1.209 0.649 -0.340 - - 4.2 4.04 22.1 1043 Dec 18 23:22 N 119 -1.467 0.181 -0.818 - - 6.2 6.19 22.1 1044 May 14 17:42 P 86 -0.822 1.409 0.320 67m - 15.9 15.79 -20.8 1044 Nov 08 04:00 P 91 0.565 1.841 0.833 89m - 3.5 3.30 18.9 1045 May 03 21:12 T+ 96 -0.039 2.827 1.778 114m 52m 15.2 15.07 -17.5
1045 Oct 28 15:11 T+ 101 -0.132 2.662 1.602 111m 49m 2.8 2.58 15.1 1046 Apr 23 07:48 P 106 0.714 1.562 0.566 78m - 14.4 14.40 -13.6 1046 Oct 17 19:13 P 111 -0.865 1.341 0.232 57m - 2.1 1.87 10.8 1047 Mar 14 15:39 N 78 -1.151 0.749 -0.227 - - 11.8 11.93 -0.8 1047 Apr 12 23:37 N 116 1.400 0.288 -0.679 - - 13.7 13.76 -9.4 1047 Sep 07 02:03 N 83 1.379 0.388 -0.699 - - 23.4 23.32 -3.1 1047 Oct 06 18:43 N 121 -1.556 0.075 -1.039 - - 1.4 1.18 6.0 1048 Mar 03 06:35 P 88 -0.474 2.011 0.996 97m - 11.1 11.31 4.0 1048 Aug 26 08:25 P 93 0.590 1.806 0.776 91m - 22.7 22.67 -7.9 1049 Feb 20 15:37 T- 98 0.255 2.443 1.367 111m 43m 10.4 10.65 8.8
1049 Aug 15 21:48 T+ 103 -0.166 2.557 1.578 106m 47m 22.0 22.03 -12.3 1050 Feb 09 17:25 P 108 0.985 1.125 0.008 11m - 9.7 9.95 13.5 1050 Aug 05 14:37 P 113 -0.882 1.239 0.272 55m - 21.3 21.38 -16.4 1050 Dec 30 23:56 N 80 -1.315 0.505 -0.583 - - 7.0 7.11 21.4 1051 Jun 26 20:48 P 85 0.957 1.129 0.107 37m - 18.7 18.70 -22.3 1051 Dec 20 08:15 P 90 -0.568 1.846 0.816 90m - 6.3 6.31 22.9 1052 Jun 15 03:19 T- 95 0.205 2.535 1.461 114m 48m 18.0 17.94 -23.4 1052 Dec 08 22:22 T- 100 0.120 2.649 1.656 105m 48m 5.6 5.52 23.5 1053 Jun 04 04:20 P 105 -0.564 1.884 0.794 98m - 17.2 17.16 -23.6 1053 Nov 28 13:58 P 110 0.789 1.426 0.425 68m - 4.9 4.73 23.2
1054 Apr 24 18:56 N 77 1.421 0.284 -0.751 - - 14.5 14.52 -13.5 1054 May 24 06:45 N 115 -1.298 0.521 -0.537 - - 16.5 16.38 -22.9 1054 Oct 19 11:55 N 82 -1.322 0.485 -0.591 - - 2.2 2.01 11.0 1054 Nov 18 02:22 N 120 1.522 0.106 -0.944 - - 4.2 3.94 22.0 1055 Apr 14 07:18 P 87 0.621 1.727 0.741 86m - 13.8 13.83 -10.7 1055 Oct 08 14:11 P 92 -0.656 1.728 0.614 88m - 1.5 1.28 7.6 1056 Apr 02 23:44 T+ 97 -0.108 2.659 1.690 105m 49m 13.1 13.17 -7.6 1056 Sep 26 13:49 T- 102 0.054 2.826 1.723 117m 52m 0.8 0.57 3.8 1057 Mar 23 15:39 P 107 -0.841 1.329 0.332 61m - 12.5 12.51 -4.2 1057 Sep 15 18:16 P 112 0.770 1.485 0.436 73m - 0.0 23.88 0.0
1058 Feb 11 11:43 N 79 1.218 0.686 -0.407 - - 9.8 10.09 13.0 1058 Aug 06 21:46 N 84 -1.131 0.782 -0.187 - - 21.4 21.48 -16.2 1058 Sep 05 06:06 N 122 1.437 0.232 -0.760 - - 23.3 23.21 -3.6 1059 Jan 31 12:03 P 89 0.543 1.939 0.817 99m - 9.1 9.34 16.1 1059 Jul 27 14:47 T 94 -0.414 2.098 1.128 98m 26m 20.7 20.78 -18.5 1060 Jan 20 12:22 T+ 99 -0.158 2.632 1.535 114m 49m 8.3 8.56 18.7 1060 Jul 16 05:15 T 104 0.341 2.254 1.242 104m 36m 20.0 20.07 -20.2 1061 Jan 08 19:02 P 109 -0.840 1.352 0.311 61m - 7.6 7.78 20.5 1061 Jul 05 13:18 N 114 1.153 0.790 -0.275 - - 19.3 19.32 -21.2 1061 Nov 29 21:31 N 81 1.213 0.642 -0.348 - - 5.0 4.84 23.8
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Lunar Eclipses: 1001 to 1100

( 1001 CE to 1100 CE )

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         Local Circumstances at Greatest Eclipse:   1001 to   1100

                U.T.
             Greatest    Saros          Pen.   Umb. S.D. S.D.  GST    Moon  Moon
      Date    Eclipse Type #    Gamma   Mag.   Mag. Par  Tot  (0 UT)   RA    Dec
                                                                 h     h      °

1061 Dec 29 08:13 N 119 -1.461 0.190 -0.807 - - 6.9 7.00 21.4 1062 May 26 00:11 P 86 -0.905 1.256 0.170 50m - 16.6 16.53 -22.8 1062 Nov 19 12:42 P 91 0.573 1.828 0.817 89m - 4.3 4.07 21.5 1063 May 15 04:09 T+ 96 -0.113 2.687 1.644 113m 51m 15.9 15.79 -20.1 1063 Nov 08 23:28 T+ 101 -0.120 2.687 1.621 112m 50m 3.6 3.32 18.3 1064 May 03 15:15 P 106 0.646 1.683 0.692 84m - 15.2 15.09 -16.8 1064 Oct 28 03:02 P 111 -0.846 1.378 0.265 61m - 2.8 2.58 14.5 1065 Mar 24 23:42 N 78 -1.196 0.666 -0.308 - - 12.5 12.59 -5.2 1065 Apr 23 07:21 N 116 1.341 0.395 -0.569 - - 14.5 14.43 -13.1 1065 Sep 17 09:26 N 83 1.420 0.312 -0.776 - - 0.1 23.98 1.3
1065 Oct 17 02:22 N 121 -1.528 0.127 -0.988 - - 2.1 1.86 10.1 1066 Mar 14 14:34 P 88 -0.514 1.937 0.922 94m - 11.8 11.97 -0.3 1066 Sep 06 16:05 P 93 0.636 1.721 0.692 86m - 23.4 23.33 -3.7 1067 Mar 03 23:21 T- 98 0.221 2.505 1.430 112m 46m 11.1 11.32 4.6 1067 Aug 27 05:39 T+ 103 -0.113 2.655 1.676 106m 49m 22.7 22.70 -8.4 1068 Feb 21 01:00 P 108 0.956 1.177 0.062 31m - 10.4 10.65 9.5 1068 Aug 15 22:23 P 113 -0.824 1.346 0.377 64m - 22.0 22.06 -12.8 1069 Jan 10 08:13 N 80 -1.318 0.497 -0.586 - - 7.7 7.90 19.7 1069 Jul 07 03:50 N 85 1.036 0.985 -0.041 - - 19.4 19.45 -21.1 1069 Dec 30 16:57 P 90 -0.569 1.841 0.815 90m - 7.0 7.12 22.1
1070 Jun 26 09:52 T 95 0.291 2.378 1.302 112m 41m 18.7 18.70 -22.9 1070 Dec 20 07:17 T- 100 0.118 2.653 1.661 105m 48m 6.3 6.34 23.6 1071 Jun 15 10:44 P 105 -0.476 2.045 0.956 104m - 17.9 17.92 -24.0 1071 Dec 09 22:48 P 110 0.787 1.431 0.427 68m - 5.6 5.54 24.2 1072 May 05 02:06 N 77 1.483 0.166 -0.862 - - 15.3 15.21 -16.5 1072 Jun 03 13:30 N 115 -1.215 0.672 -0.382 - - 17.2 17.14 -24.2 1072 Oct 29 19:59 N 82 -1.344 0.448 -0.633 - - 2.9 2.72 14.6 1072 Nov 28 10:53 N 120 1.521 0.109 -0.945 - - 4.9 4.74 23.9 1073 Apr 24 14:55 P 87 0.681 1.614 0.633 80m - 14.6 14.51 -14.2 1073 Oct 18 21:49 P 92 -0.684 1.678 0.560 85m - 2.2 1.98 11.5
1074 Apr 14 07:35 Tm 97 -0.053 2.760 1.793 106m 50m 13.9 13.84 -11.5 1074 Oct 07 21:23 T- 102 0.019 2.890 1.786 117m 53m 1.5 1.25 8.0 1075 Apr 03 23:28 P 107 -0.793 1.417 0.419 68m - 13.2 13.17 -8.3 1075 Sep 27 02:06 P 112 0.731 1.557 0.508 77m - 0.7 0.54 4.3 1076 Feb 22 19:27 N 79 1.250 0.626 -0.467 - - 10.5 10.78 9.0 1076 Aug 17 05:33 N 84 -1.186 0.681 -0.289 - - 22.1 22.17 -12.6 1076 Sep 15 14:08 N 122 1.393 0.314 -0.680 - - 0.0 23.87 0.7 1077 Feb 10 19:43 P 89 0.568 1.890 0.771 97m - 9.8 10.05 12.5 1077 Aug 06 22:26 T 94 -0.478 1.982 1.008 95m 7m 21.4 21.49 -15.4 1078 Jan 30 20:22 T+ 99 -0.140 2.662 1.570 114m 50m 9.0 9.30 15.7
1078 Jul 27 12:30 T- 104 0.271 2.384 1.367 107m 42m 20.7 20.79 -17.7 1079 Jan 20 03:33 P 109 -0.829 1.370 0.333 63m - 8.3 8.55 18.1 1079 Jul 16 20:00 N 114 1.077 0.933 -0.137 - - 20.0 20.05 -19.5 1079 Dec 11 06:26 N 81 1.216 0.638 -0.353 - - 5.7 5.66 24.7 1080 Jan 09 17:03 N 119 -1.455 0.201 -0.793 - - 7.6 7.79 19.8 1080 Jun 05 06:38 P 86 -0.990 1.100 0.016 16m - 17.3 17.28 -24.1 1080 Nov 29 21:28 P 91 0.577 1.822 0.807 89m - 5.0 4.87 23.2 1081 May 25 11:03 Tm 96 -0.192 2.541 1.502 111m 48m 16.6 16.52 -22.2 1081 Nov 19 07:50 T+ 101 -0.113 2.702 1.632 112m 50m 4.3 4.09 20.8 1082 May 14 22:40 P 106 0.575 1.810 0.824 90m - 15.9 15.80 -19.5
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Lunar Eclipses: 1001 to 1100

( 1001 CE to 1100 CE )

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         Local Circumstances at Greatest Eclipse:   1001 to   1100

                U.T.
             Greatest    Saros          Pen.   Umb. S.D. S.D.  GST    Moon  Moon
      Date    Eclipse Type #    Gamma   Mag.   Mag. Par  Tot  (0 UT)   RA    Dec
                                                                 h     h      °

1082 Nov 08 10:56 P 111 -0.831 1.407 0.290 64m - 3.5 3.32 17.6 1083 Apr 05 07:40 N 78 -1.245 0.575 -0.398 - - 13.3 13.25 -9.4 1083 May 04 15:02 N 116 1.279 0.507 -0.455 - - 15.2 15.12 -16.3 1083 Sep 28 16:58 N 83 1.455 0.249 -0.840 - - 0.9 0.64 5.6 1083 Oct 28 10:08 N 121 -1.505 0.170 -0.947 - - 2.8 2.57 13.8 1084 Mar 24 22:26 P 88 -0.560 1.853 0.839 92m - 12.6 12.63 -4.7 1084 Sep 16 23:54 P 93 0.676 1.648 0.619 82m - 0.1 23.99 0.7 1085 Mar 14 06:55 T- 98 0.180 2.581 1.506 113m 48m 11.9 11.99 0.3 1085 Sep 06 13:38 T+ 103 -0.067 2.741 1.760 106m 50m 23.4 23.36 -4.2 1086 Mar 03 08:24 P 108 0.919 1.244 0.132 44m - 11.1 11.32 5.3
1086 Aug 27 06:16 P 113 -0.773 1.441 0.468 70m - 22.7 22.74 -8.9 1087 Jan 21 16:26 N 80 -1.325 0.482 -0.597 - - 8.4 8.66 17.2 1087 Jul 18 10:54 N 85 1.113 0.847 -0.184 - - 20.1 20.18 -19.1 1087 Aug 16 21:08 Nb 123 -1.535 0.061 -0.947 - - 22.0 22.10 -13.4 1088 Jan 11 01:37 P 90 -0.574 1.831 0.809 90m - 7.7 7.91 20.4 1088 Jul 06 16:26 T 95 0.376 2.224 1.144 109m 30m 19.4 19.44 -21.7 1088 Dec 30 16:10 T- 100 0.114 2.659 1.668 105m 48m 7.0 7.15 22.7 1089 Jun 25 17:08 T 105 -0.387 2.208 1.120 109m 28m 18.6 18.68 -23.6 1089 Dec 20 07:39 P 110 0.786 1.433 0.428 68m - 6.3 6.36 24.3 1090 May 16 09:12 Ne 77 1.550 0.042 -0.982 - - 16.0 15.93 -19.0
1090 Jun 14 20:15 N 115 -1.130 0.825 -0.225 - - 17.9 17.90 -24.6 1090 Nov 10 04:10 N 82 -1.360 0.422 -0.664 - - 3.7 3.46 17.7 1090 Dec 09 19:26 N 120 1.522 0.109 -0.948 - - 5.6 5.56 24.9 1091 May 05 22:28 P 87 0.746 1.493 0.517 74m - 15.3 15.21 -17.2 1091 Oct 30 05:35 P 92 -0.706 1.640 0.518 82m - 2.9 2.69 15.1 1092 Apr 24 15:19 T- 97 0.009 2.839 1.874 106m 50m 14.6 14.52 -15.0 1092 Oct 18 05:08 T+ 102 -0.008 2.911 1.806 117m 53m 2.2 1.94 12.0 1093 Apr 14 07:08 P 107 -0.739 1.516 0.519 75m - 13.9 13.84 -12.2 1093 Oct 07 10:06 P 112 0.699 1.616 0.567 81m - 1.5 1.22 8.5 1094 Mar 05 03:02 N 79 1.290 0.553 -0.539 - - 11.2 11.46 4.8
1094 Apr 03 17:29 Nb 117 -1.544 0.069 -0.987 - - 13.2 13.16 -9.0 1094 Aug 28 13:27 N 84 -1.236 0.591 -0.381 - - 22.8 22.85 -8.8 1094 Sep 26 22:19 N 122 1.356 0.382 -0.612 - - 0.8 0.54 5.0 1095 Feb 22 03:16 P 89 0.600 1.831 0.716 94m - 10.5 10.75 8.6 1095 Aug 18 06:09 P 94 -0.538 1.875 0.896 91m - 22.1 22.18 -11.9 1096 Feb 11 04:18 T+ 99 -0.118 2.700 1.613 114m 50m 9.8 10.02 12.1 1096 Aug 06 19:48 T- 104 0.205 2.508 1.486 109m 46m 21.4 21.49 -14.7 1097 Jan 30 11:59 P 109 -0.814 1.396 0.365 65m - 9.0 9.29 15.0 1097 Jul 27 02:46 N 114 1.003 1.071 -0.004 - - 20.7 20.77 -17.1 1097 Dec 21 15:20 N 81 1.219 0.632 -0.359 - - 6.4 6.48 24.6
1098 Jan 20 01:48 N 119 -1.444 0.219 -0.773 - - 8.3 8.55 17.4 1098 Jun 16 13:07 N 86 -1.073 0.946 -0.136 - - 18.0 18.04 -24.5 1098 Dec 11 06:14 P 91 0.582 1.815 0.797 88m - 5.7 5.68 24.1 1099 Jun 05 17:59 T+ 96 -0.270 2.395 1.361 109m 43m 17.3 17.27 -23.4 1099 Nov 30 16:14 Tm 101 -0.108 2.713 1.639 112m 50m 5.0 4.88 22.6 1100 May 25 06:01 P 106 0.501 1.945 0.963 94m - 16.6 16.53 -21.5 1100 Nov 18 18:56 P 111 -0.821 1.427 0.306 65m - 4.3 4.09 20.2

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Calendar Dates

The Julian calendar is used for all dates up to 1582 Oct 04. After that date, the Gregorian calendar is used. Due to the Gregorian Calendar reform, the day after 1582 Oct 04 (Julian calendar) is 1582 Oct 15 (Gregorian calendar). Note that Great Britian did not adopt the Gregorian calendar until 1752. For more information, see Calendars.

The Julian calendar does not include the year 0, so the year 1 BCE is followed by the year 1 CE. This is awkward for arithmetic calculations. In this catalog, dates are counted using the astronomical numbering system which recognizes the year 0. Historians should note the numerical difference of one year between astronomical dates and BCE dates. Thus, the year 0 corresponds to 1 BCE, and the year -100 corresponds to 101 BCE, etc.. (See: Year Dating Conventions )

There is some historical uncertainty as to which years from 43 BCE to 8 CE were counted as leap years. For the purposes of this catalog, we will assume that all Julian years divisible by 4 will be counted as leap years.

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Predictions

Eclipse predictions presented here are based on j=2 ephemerides for the Sun (Newcomb, 1895) and Moon (Brown, 1919, and Eckert, Jones and Clark, 1954). A revised value used for the Moon's secular acceleration is n-dot = -26 arc-sec/cy*cy, as deduced by Morrison and Ward (1975) from 250 years of Mercury transit observations.

The largest uncertainty in the eclipse predictions is caused by fluctuations in Earth's rotation due primarily to tidal friction of the Moon. The resultant drift in apparent clock time is expressed as delta-T. The value for delta-T was determined as follows:

1) pre-1600: delta T was calculated from empirical fits to historical records derived by Stephenson (1997)
2) 1600-present: delta T was obtained from published observations
3) future: delta-T was extrapolated from current values and a model of tidal effects

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Acknowledgments

All eclipse calculations are by Fred Espenak, and he assumes full responsibility for their accuracy. Some of the information presented in these tables is based on Fifty Year Canon of Lunar Eclipses: 1986 - 2035.

Permission is freely granted to reproduce this data when accompanied by an acknowledgment:

"Eclipse Predictions by Fred Espenak, NASA's GSFC"


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Key to Catalog Lunar Eclipse

Index to Catalog of Lunar Eclipses

NASA Lunar Eclipse Page

NASA Eclipse Web Site

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NASA logo
Eclipse Predictions & WebMaster: Fred Espenak
e-mail: fred.espenak@nasa.gov

Planetary Systems Branch - Code 693
NASA's Goddard Space Flight Center, Greenbelt, Maryland 20771 USA


Last revised: 2003 Sep 11 - F. Espenak