An elementary introduction to the adiabatic invariants of the Kepler problem is proposed. Unlike the other didactical expositions already present in the literature, which are based on the Hamilton-Jacobi theory of mechanics, our derivation is suitable to be grasped even by first-year undergraduates. A central role in the present analysis is played by an elementary proof of the virial theorem for the Kepler problem which is based on the chain rule for derivatives. As a byproduct of our analysis, an interpretation of Keplerian orbit eccentricities in terms of the time average of the position vector direction is also provided
International audienceProceeding like Newton with a discrete time approach of motion and a geometric...
International audienceProceeding like Newton with a discrete time approach of motion and a geometric...
International audienceProceeding like Newton with a discrete time approach of motion and a geometric...
This article is a review of two related classical topics of Hamiltonian systems and celestial mechan...
International audienceThis article is a review of two related classical topics of Hamiltonian system...
International audienceThis article is a review of two related classical topics of Hamiltonian system...
In this paper, we present some learning objects for the study of Kepler’s laws that graphically show...
Abstract. Posing Kepler’s problem of motion around a fixed “sun ” requires the geometric mechanician...
Abstract: Kepler’s equations are considered as central to Celestial Mechanics since their solutions ...
AbstractCentral to Newton's solution of the Kepler problem in Proposition 11 of the Principia is the...
The classical Kepler Problem consists in the determination of the relative orbital motion of a secon...
The classical Kepler Problem consists in the determination of the relative orbital motion of a secon...
Celestial Mechanics and Dynamical Astronomy, 99, pp. 31-44, http://dx.doi.org./10.1007/s10569-007-90...
In this paper, we present some learning objects for the study of Kepler's laws that graphically...
International audienceProceeding like Newton with a discrete time approach of motion and a geometric...
International audienceProceeding like Newton with a discrete time approach of motion and a geometric...
International audienceProceeding like Newton with a discrete time approach of motion and a geometric...
International audienceProceeding like Newton with a discrete time approach of motion and a geometric...
This article is a review of two related classical topics of Hamiltonian systems and celestial mechan...
International audienceThis article is a review of two related classical topics of Hamiltonian system...
International audienceThis article is a review of two related classical topics of Hamiltonian system...
In this paper, we present some learning objects for the study of Kepler’s laws that graphically show...
Abstract. Posing Kepler’s problem of motion around a fixed “sun ” requires the geometric mechanician...
Abstract: Kepler’s equations are considered as central to Celestial Mechanics since their solutions ...
AbstractCentral to Newton's solution of the Kepler problem in Proposition 11 of the Principia is the...
The classical Kepler Problem consists in the determination of the relative orbital motion of a secon...
The classical Kepler Problem consists in the determination of the relative orbital motion of a secon...
Celestial Mechanics and Dynamical Astronomy, 99, pp. 31-44, http://dx.doi.org./10.1007/s10569-007-90...
In this paper, we present some learning objects for the study of Kepler's laws that graphically...
International audienceProceeding like Newton with a discrete time approach of motion and a geometric...
International audienceProceeding like Newton with a discrete time approach of motion and a geometric...
International audienceProceeding like Newton with a discrete time approach of motion and a geometric...
International audienceProceeding like Newton with a discrete time approach of motion and a geometric...