theorem 29.29 Poinsot's construction

open in the book · parts/03-classical-mechanics/12-rigid-body-rotating-frames.tex:905 · p. 986

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theorem 29.29: Poinsot's construction29.29definition 29.19: Inertia ellipsoid29.19proposition 29.26: The two integrals of torque-free motion29.26remark 29.32: What the linearization is entitled to conclude29.32remark 29.30: Polhode and herpolhode29.30proof : ch:12-rigid-body-rotating-frames@proof-19proofdefinition 29.13: Inertia tensor, continuum form29.13proposition 29.15: Positivity29.15theorem 29.16: Principal axes29.16equation 29.12: eq:rigid-kinetic-energy29.12theorem 29.25: Euler's equations29.25proposition 29.33: Dissipation drives a free body to its largest moment29.33proposition 29.43: The three integrable heavy tops29.43remark 29.27: Euler's equations as a Lie–Poisson system29.27remark 24.42: The intermediate axis24.42proof : ch:12-rigid-body-rotating-frames@proof-17proofphenomenon 29.31: The intermediate-axis instability29.31

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typedirectionnode provenancewhere
cites Théorie nouvelle de la rotation des corps derived parts/03-classical-mechanics/12-rigid-body-rotating-frames.tex:910
depends_on Inertia ellipsoid declared parts/03-classical-mechanics/12-rigid-body-rotating-frames.tex:911
depends_on The two integrals of torque-free motion declared parts/03-classical-mechanics/12-rigid-body-rotating-frames.tex:911
depends_on What the linearization is entitled to conclude declared parts/03-classical-mechanics/12-rigid-body-rotating-frames.tex:1047
depends_on Polhode and herpolhode declared parts/03-classical-mechanics/12-rigid-body-rotating-frames.tex:957
proves ch:12-rigid-body-rotating-frames@proof-19 declared parts/03-classical-mechanics/12-rigid-body-rotating-frames.tex:914