proposition 20.7 Terminal speed and the approach to it

open in the book · parts/03-classical-mechanics/03-exp-projectile-motion.tex:455 · p. 769

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proposition 20.7: Terminal speed and the approach to it20.7equation 20.10: eq:projectile-drag-eom20.10theorem 9.8: Picard–Lindelöf9.8example 20.8: A raindrop20.8proof : ch:03-exp-projectile-motion@proof-3proofproposition 20.10: The descending branch is the steeper, whatever the resistive law20.10proposition 20.9: Linear resistance: exact motion, and the lost range20.9definition 9.4: Lipschitz condition9.4equation 9.3: eq:slt-ode-system9.3lemma 9.6: Weierstrass M-test; uniform limits are continuous9.6corollary 32.5: Trajectories do not cross32.5corollary 9.9: Linear equations: existence on the whole interval9.9proposition 32.4: The flow is a one-parameter group32.4proposition 10.16: Cauchy's characteristic strips10.16proposition 9.11: Continuous dependence on the initial data9.11proposition 9.142: The differential equation of the sine amplitude9.142theorem A.74: Flow of a time-dependent vector fieldA.74theorem 13.125: Existence, uniqueness and smoothness of the flow13.125theorem 9.34: Poincaré–Bendixson; quoted9.34proof : ch:07-odes-sturm-liouville@proof-2proof

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typedirectionnode provenancewhere
depends_on eq:projectile-drag-eom declared parts/03-classical-mechanics/03-exp-projectile-motion.tex:474
depends_on Picard–Lindelöf declared parts/03-classical-mechanics/03-exp-projectile-motion.tex:474
depends_on A raindrop declared parts/03-classical-mechanics/03-exp-projectile-motion.tex:520
proves ch:03-exp-projectile-motion@proof-3 declared parts/03-classical-mechanics/03-exp-projectile-motion.tex:477