Pages that link to "Item:Q758358"
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The following pages link to Rotational dynamics of deformable celestial bodies. I: Tidal deformations (Q758358):
Displaying 19 items.
- Tides and angular momentum redistribution inside low-mass stars hosting planets: a first dynamical model (Q333844) (← links)
- Rotation of a rigid satellite with a fluid component: a new light onto Titan's obliquity (Q680985) (← links)
- The spacetime gravitational field of a deformable body (Q697189) (← links)
- Dynamics of an isolated, viscoelastic, self-gravitating body (Q748263) (← links)
- Rotational dynamics of deformable celestial bodies. II: Tidal friction and axial rotation. III: Effects of viscosity on the dynamics of the Earth-Moon system (Q758359) (← links)
- Post-Newtonian perturbed theory of elastic astronomical bodies in rotating spherical coordinates (Q866372) (← links)
- The flattenings of the layers of rotating planets and satellites deformed by a tidal potential (Q891172) (← links)
- Rotational dynamics of a deformable medium: Further generalization (Q1143923) (← links)
- Derivation of a condition on the motion of two deformable bodies (Q1216970) (← links)
- Angular momentum and kinetic energy of rotating deformable bodies (Q1219166) (← links)
- Rotational dynamics of a deformable medium (Q1249879) (← links)
- Motion of a rigid body in a tidal field. An application to elliptical galaxies in clusters (Q1270703) (← links)
- On the fluid and viscoelastic deformations of the planets (Q1311636) (← links)
- On the dynamics of a deformable satellite in the gravitational field of a spherical rigid body (Q1419417) (← links)
- The effect of rotation on the flattening of celestial bodies: a journey through four centuries (Q1641174) (← links)
- The effects of deformation inertia (kinetic energy) in the orbital and spin evolution of close-in bodies (Q1785895) (← links)
- Ellipsoidal equilibrium figure and Cassini states of rotating planets and satellites deformed by a tidal potential in the spatial case (Q2073331) (← links)
- Dynamics of extended celestial bodies and rings. Papers based on the presentations at the thematic winter school of astronomy, Lanslevillard, France, March 2003. (Q2503437) (← links)
- (Q3481231) (← links)