Physics:Free motion equation

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A free motion equation is a differential equation that describes a mechanical system in the absence of external forces, but in the presence only of an inertial force depending on the choice of a reference frame. In non-autonomous mechanics on a configuration space Q→ℝ, a free motion equation is defined as a second order non-autonomous dynamic equation on Q→ℝ which is brought into the form

q‾tti=0

with respect to some reference frame (t,q‾i) on Q→ℝ. Given an arbitrary reference frame (t,qi) on Q→ℝ, a free motion equation reads

qtti=dtΓi+∂jΓi(qtj−Γj)−∂qi∂q‾m∂q‾m∂qj∂qk(qtj−Γj)(qtk−Γk),

where Γi=∂tqi(t,q‾j) is a connection on Q→ℝ associates with the initial reference frame (t,q‾i). The right-hand side of this equation is treated as an inertial force.

A free motion equation need not exist in general. It can be defined if and only if a configuration bundle Q→ℝ of a mechanical system is a toroidal cylinder Tm×ℝk.

See also

References

  • De Leon, M., Rodrigues, P., Methods of Differential Geometry in Analytical Mechanics (North Holland, 1989).
  • Giachetta, G., Mangiarotti, L., Sardanashvily, G., Geometric Formulation of Classical and Quantum Mechanics (World Scientific, 2010) ISBN 981-4313-72-6 (arXiv:0911.0411).