example 28.8 A laboratory spring, in SI

open in the book · parts/03-classical-mechanics/11-oscillations-waves.tex:206 · p. 947

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example 28.8: A laboratory spring, in SI28.8equation 28.5: eq:osc-energy28.5equation 28.2: eq:osc-sho28.2proposition 28.6: Phase-space area and the action variable28.6proposition 28.20: Q counts stored energy against energy lost28.20experiment : Coulomb: the torsion pendulumexperime…definition 28.17: Damped oscillator28.17phenomenon 28.9: Isochronism of the small-amplitude pendulum28.9phenomenon 28.13: Universality of small oscillations28.13proposition 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 pendulums28.31

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depends_on eq:osc-energy declared parts/03-classical-mechanics/11-oscillations-waves.tex:219
depends_on eq:osc-sho declared parts/03-classical-mechanics/11-oscillations-waves.tex:219