theorem 21.43 Conservation of energy

open in the book · parts/03-classical-mechanics/04-lagrangian-mechanics.tex:1157 · p. 788

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theorem 21.43: Conservation of energy21.43equation 21.51: eq:lag-energy-dot-cons21.51equation 21.46: eq:lag-energy-h21.46theorem 19.32: Conservation of energy19.32proposition 29.36: Three first integrals29.36theorem 27.10: Lagrange–Dirichlet27.10proof : ch:04-lagrangian-mechanics@proof-11proofproposition 21.41: Time derivative of the Jacobi integral21.41definition 19.31: Energy19.31equation 19.19: eq:newt-conservative19.19equation 19.4: eq:newt-fma19.4phenomenon 50.6: No material surface50.6phenomenon 19.33: Mechanical energy is conserved19.33proof : ch:02-newtonian-dynamics@proof-9proofequation 29.35: eq:rigid-top-lagrangian29.35theorem 21.36: Conservation of the conjugate momentum21.36phenomenon 29.38: Nutation of a released top29.38proposition 29.43: The three integrable heavy tops29.43proposition 29.40: The sleeping top29.40theorem 29.37: Reduction to one degree of freedom29.37proof : ch:12-rigid-body-rotating-frames@proof-23proofequation 27.9: eq:cfs-stationary-potential27.9equation 19.21: eq:newt-energy19.21proof : ch:10-central-forces-statics@proof-6proof

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typedirectionnode provenancewhere
depends_on eq:lag-energy-dot-cons declared parts/03-classical-mechanics/04-lagrangian-mechanics.tex:1175
depends_on eq:lag-energy-h declared parts/03-classical-mechanics/04-lagrangian-mechanics.tex:1175
depends_on Conservation of energy declared parts/03-classical-mechanics/04-lagrangian-mechanics.tex:1175
depends_on Three first integrals declared parts/03-classical-mechanics/12-rigid-body-rotating-frames.tex:1276
depends_on Lagrange–Dirichlet declared parts/03-classical-mechanics/10-central-forces-statics.tex:304
proves ch:04-lagrangian-mechanics@proof-11 declared parts/03-classical-mechanics/04-lagrangian-mechanics.tex:1179