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Zeitschrift für Naturforschung A
Least-action Principle Applied to the Kepler Problem
Physical and Theoretical Chemistry
General Physics and Astronomy
Mathematical Physics
author_sort olszewski, s.
spelling Olszewski, S. 1865-7109 0932-0784 Walter de Gruyter GmbH Physical and Theoretical Chemistry General Physics and Astronomy Mathematical Physics http://dx.doi.org/10.1515/zna-2004-0611 <jats:p>The least-action principle is examined for the two-body Kepler problem. This examination allows one to couple the eccentricity parameter of the Kepler orbit with the size of the major semiaxis of that orbit. The obtained formula is applied to an estimate of eccentricities characteristic for a set of the planetary and satellitary tracks.</jats:p> Least-action Principle Applied to the Kepler Problem Zeitschrift für Naturforschung A
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title Least-action Principle Applied to the Kepler Problem
title_unstemmed Least-action Principle Applied to the Kepler Problem
title_full Least-action Principle Applied to the Kepler Problem
title_fullStr Least-action Principle Applied to the Kepler Problem
title_full_unstemmed Least-action Principle Applied to the Kepler Problem
title_short Least-action Principle Applied to the Kepler Problem
title_sort least-action principle applied to the kepler problem
topic Physical and Theoretical Chemistry
General Physics and Astronomy
Mathematical Physics
url http://dx.doi.org/10.1515/zna-2004-0611
publishDate 2004
physical 375-381
description <jats:p>The least-action principle is examined for the two-body Kepler problem. This examination allows one to couple the eccentricity parameter of the Kepler orbit with the size of the major semiaxis of that orbit. The obtained formula is applied to an estimate of eccentricities characteristic for a set of the planetary and satellitary tracks.</jats:p>
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description <jats:p>The least-action principle is examined for the two-body Kepler problem. This examination allows one to couple the eccentricity parameter of the Kepler orbit with the size of the major semiaxis of that orbit. The obtained formula is applied to an estimate of eccentricities characteristic for a set of the planetary and satellitary tracks.</jats:p>
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spelling Olszewski, S. 1865-7109 0932-0784 Walter de Gruyter GmbH Physical and Theoretical Chemistry General Physics and Astronomy Mathematical Physics http://dx.doi.org/10.1515/zna-2004-0611 <jats:p>The least-action principle is examined for the two-body Kepler problem. This examination allows one to couple the eccentricity parameter of the Kepler orbit with the size of the major semiaxis of that orbit. The obtained formula is applied to an estimate of eccentricities characteristic for a set of the planetary and satellitary tracks.</jats:p> Least-action Principle Applied to the Kepler Problem Zeitschrift für Naturforschung A
spellingShingle Olszewski, S., Zeitschrift für Naturforschung A, Least-action Principle Applied to the Kepler Problem, Physical and Theoretical Chemistry, General Physics and Astronomy, Mathematical Physics
title Least-action Principle Applied to the Kepler Problem
title_full Least-action Principle Applied to the Kepler Problem
title_fullStr Least-action Principle Applied to the Kepler Problem
title_full_unstemmed Least-action Principle Applied to the Kepler Problem
title_short Least-action Principle Applied to the Kepler Problem
title_sort least-action principle applied to the kepler problem
title_unstemmed Least-action Principle Applied to the Kepler Problem
topic Physical and Theoretical Chemistry, General Physics and Astronomy, Mathematical Physics
url http://dx.doi.org/10.1515/zna-2004-0611