phenomenon 28.13 Universality of small oscillations

open in the book · parts/03-classical-mechanics/11-oscillations-waves.tex:393 · p. 949

Rests on

Supports

Nothing declares a dependency on this node yet.

Neighborhood

Every logical edge within two steps of this node.

phenomenon 28.13: Universality of small oscillations28.13equation 28.2: eq:osc-sho28.2theorem 7.38: Taylor's theorem with Lagrange remainder7.38proof : ch:11-oscillations-waves@proof-7proofexperiment : Coulomb: the torsion pendulumexperime…definition 28.17: Damped oscillator28.17example 28.8: A laboratory spring, in SI28.8phenomenon 28.9: Isochronism of the small-amplitude pendulum28.9proposition 28.4: General solution and isochronism28.4proposition 28.54: The Helmholtz resonator28.54proposition 28.11: The physical pendulum and its centre of oscillation28.11proposition 28.71: Naive perturbation theory produces a secular term28.71proposition 28.12: Huygens' cycloidal pendulum is exactly isochronous28.12proposition 28.31: The two modes of a pair of coupled pendulums28.31proposition 7.30: Leibniz rule7.30theorem 7.34: Rolle7.34definition 32.57: The Hénon–Heiles Hamiltonian32.57definition 32.12: Linearization32.12lemma A.754: Exact depth expansionA.754lemma A.187: ExponentiationA.187lemma A.138: The flat exponentialA.138lemma A.452: Young and HölderA.452lemma A.212: Second-order flatnessA.212lemma A.209: Uniform third-order remainderA.209proposition 16.50: The second variation16.50proposition 17.67: Holomorphy17.67proposition 9.88: The model problem, and the error of the composite9.88theorem 7.106: Taylor's theorem in several variables7.106theorem 17.20: Overshoot at a jump17.20proof : ch:05-real-analysis@proof-22proof

Edges

typedirectionnode provenancewhere
cites Classical Mechanics derived parts/03-classical-mechanics/11-oscillations-waves.tex:405
cites Mechanics derived parts/03-classical-mechanics/11-oscillations-waves.tex:405
depends_on eq:osc-sho declared parts/03-classical-mechanics/11-oscillations-waves.tex:406
depends_on Taylor's theorem with Lagrange remainder declared parts/03-classical-mechanics/11-oscillations-waves.tex:406
proves ch:11-oscillations-waves@proof-7 declared parts/03-classical-mechanics/11-oscillations-waves.tex:409