The following table contains the Besselian elements for the Annular Solar Eclipse of 2042 Oct 14 .
The geographic coordinates of the eclipse path are in the Path Table . The global visibility of the eclipse is shown on an Orthographic Map . The features of this map are described in the Key to Solar Eclipse Path Tables. The path of the eclipse is displayed in greater detail on a Google Map .
Besselian Elements for the Annular Solar Eclipse of 2042 Oct 14
Equatorial Conjunction: 02:19:43.8 TDT J.D. = 2467171.597034 (Sun & Moon in R.A.) (=02:18:16.9 UT) Ecliptic Conjunction: 02:04:20.6 TDT J.D. = 2467171.586349 (Sun & Moon in Ec. Lo.) (=02:02:53.8 UT) Instant of 02:00:41.8 TDT J.D. = 2467171.583817 Greatest Eclipse: (=01:59:15.0 UT) --------------------------------------------------------------------------- Gamma = -0.3030 Ephemerides = VSOP87/ELP2000-82 Eclipse Magnitude = 0.9300 Lunation No. = 529 ΔT = 86.8 s Saros Series = 144 (18/70) Lunar Radius k1 = 0.272488 (Penumbra) Shift in Δb = 0.00" Constants: k2 = 0.272281 (Umbra) Lunar Position: Δl = 0.00" --------------------------------------------------------------------------- Geocentric Coordinates of Sun & Moon at Greatest Eclipse (VSOP87/ELP2000-82): Sun: R.A. = 13h17m05.8s Moon: R.A. = 13h16m35.0s Dec. =-08°08'35.2" Dec. =-08°23'00.1" Semi-Diameter = 16'01.9" Semi-Diameter = 14'41.9" Eq.Hor.Par. = 08.8" Eq.Hor.Par. = 0°53'56.6" --------------------------------------------------------------------------- Polynomial Besselian Elements for: 2042 Oct 14 02:00:00.0 TDT (=t0) n x y d l1 l2 μ 0 -0.146614 -0.265278 -8.14227 0.571246 0.024984 213.48589 1 0.4458606 -0.2352927 -0.014920 0.0000105 0.0000104 15.003528 2 0.0000262 0.0000524 0.000002 -0.0000098 -0.0000097 3 -0.0000049 0.0000027 Tan ƒ1 = 0.0046878 Tan ƒ2 = 0.0046644 At time t1 (decimal hours), each Besselian element is evaluated by: a = a0 + a1*t + a2*t^2 + a3*t^3 (or a = Σ [an*t^n]; n = 0 to 3) where: a = x, y, d, l1, l2, or μ t = t1 - t0 (decimal hours) and t0 = 2.000 TDT The Besselian elements were derived from a least-squares fit to elements calculated at five uniformly spaced times over a six hour period centered at t0. The Besselian elements are valid over the period -1.00 ≤ t0 ≤ 5.00 TDT. Note that all times are expressed in Terrestrial Dynamical Time (TDT). Saros Series 144: Member 18 of 70 eclipses in series.
Predictions for the Annular Solar Eclipse of 2042 Oct 14 were generated using the VSOP87/ELP2000-82 solar and lunar ephemerides and a value of ΔT = 86.8 seconds. The accuracy of the northern and southern edges of the eclipse path are limited to approximately 1-2 kilometers due to the lunar limb profile.
All eclipse calculations are by Fred Espenak, and he assumes full responsibility for their accuracy. 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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