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Showing papers in "Monthly Notices of the Royal Astronomical Society in 1981"




















Journal ArticleDOI
TL;DR: In this article, the orbital motion of the comet Halley is numerically integrated back to 1404 BC with full planetary perturbations and nongravitational forces taken into account at each 0.5 day time-step.
Abstract: The orbital motion of comet Halley is numerically integrated back to 1404 BC. Starting with an orbit based on the 1759, 1682, and 1607 observations of the comet, the integration was run back in time with full planetary perturbations and nongravitational forces taken into account at each 0.5 day time-step. Small empirical corrections were made to the computed perihelion passage time in 837 and to the osculating orbital eccentricity in 800. In nine cases, the perihelion passage times calculated by Kiang (1971) from Chinese observations have been redetermined, and osculating orbital elements are given at each apparition from 1910 back to 1404 BC.