equation 19.14 eq:newt-torque

open in the book · parts/03-classical-mechanics/02-newtonian-dynamics.tex:597

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equation 19.14: eq:newt-torque19.14definition 27.3: Rotational equilibrium27.3phenomenon 19.23: The lever arm19.23phenomenon 29.46: A fast spinning top does not fall29.46proposition 27.18: Conservation of angular momentum27.18proposition 20.13: Eastward deflection of a body dropped from rest20.13theorem 19.25: Galilean covariance of the rotational second law19.25theorem 19.62: Rotational second law for a system19.62equation 29.21: eq:rigid-euler-vector29.21definition 19.18: Angular momentum19.18equation 19.15: eq:newt-torque-force19.15proof : ch:02-newtonian-dynamics@proof-7prooftheorem 29.25: Euler's equations29.25phenomenon 29.49: Precession of the equinoxes29.49proof : ch:12-rigid-body-rotating-frames@proof-30proofequation 27.13: eq:cfs-central-force27.13phenomenon 27.19: Kepler's second law: equal areas in equal times27.19proof : ch:10-central-forces-statics@proof-9proofequation 20.7: eq:free-fall-law20.7postulate 19.19: Newton's first law, rotational case19.19remark 20.14: Why the elementary argument gives three halves of this20.14proof : ch:03-exp-projectile-motion@proof-7proofdefinition 18.18: Galilean transformation18.18theorem 19.12: Galilean covariance of the second law19.12proof : ch:02-newtonian-dynamics@proof-8proofequation 19.2: eq:newt-second-law19.2postulate 19.61: Newton's third law, strong form19.61theorem 19.68: Conservation of angular momentum19.68proof : ch:02-newtonian-dynamics@proof-21proofequation 29.4: eq:rigid-transport29.4

Edges

typedirectionnode provenancewhere
depends_on Rotational equilibrium declared parts/03-classical-mechanics/10-central-forces-statics.tex:75
depends_on The lever arm declared parts/03-classical-mechanics/02-newtonian-dynamics.tex:638
depends_on A fast spinning top does not fall declared parts/03-classical-mechanics/12-rigid-body-rotating-frames.tex:1729
depends_on Conservation of angular momentum declared parts/03-classical-mechanics/10-central-forces-statics.tex:519
depends_on Eastward deflection of a body dropped from rest declared parts/03-classical-mechanics/03-exp-projectile-motion.tex:743
depends_on Galilean covariance of the rotational second law declared parts/03-classical-mechanics/02-newtonian-dynamics.tex:712
depends_on Rotational second law for a system declared parts/03-classical-mechanics/02-newtonian-dynamics.tex:1849
step_from eq:rigid-euler-vector declared — transporting the inertial rotational law into the body frame, where the inertia tensor is constant parts/03-classical-mechanics/12-rigid-body-rotating-frames.tex:767