proposition 18.23 Transformation of velocity and acceleration

open in the book · parts/03-classical-mechanics/01-kinematics.tex:694 · p. 726

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proposition 18.23: Transformation of velocity and acceleration18.23definition 18.11: Acceleration18.11definition 18.18: Galilean transformation18.18definition 18.10: Velocity18.10phenomenon 18.26: Composition of velocities, and its limit18.26proof : ch:01-kinematics@proof-6proofdefinition 7.26: Derivative of a function at a point7.26definition 18.27: Angular position, velocity and acceleration18.27lemma 27.15: Velocity and acceleration in plane polar coordinates27.15phenomenon 18.31: Uniform circular motion is accelerated motion18.31phenomenon 18.12: Uniformly accelerated motion18.12proposition 18.33: Intrinsic decomposition of the acceleration18.33definition 18.8: Inertial frame of reference18.8postulate 18.14: Absolute time18.14postulate 18.16: Principle of Galilean relativity18.16proposition 18.20: The Galilean group18.20proposition 18.21: Galilean invariants18.21proposition 19.13: Which forces are admissible19.13remark 18.19: Why the map is affine, and what is assumed to make it so18.19remark 19.11: Mass is a Galilean scalar19.11theorem 19.12: Galilean covariance of the second law19.12theorem 19.25: Galilean covariance of the rotational second law19.25definition 18.9: Position18.9definition 13.9: Tangent vector to a curve13.9definition 18.29: Angular velocity vector18.29definition 19.29: Kinetic energy19.29definition 19.5: Linear momentum19.5corollary 18.24: Galilean composition of velocities18.24proof : ch:01-kinematics@proof-8proof

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typedirectionnode provenancewhere
depends_on Acceleration declared parts/03-classical-mechanics/01-kinematics.tex:709
depends_on Galilean transformation declared parts/03-classical-mechanics/01-kinematics.tex:709
depends_on Velocity declared parts/03-classical-mechanics/01-kinematics.tex:709
depends_on Composition of velocities, and its limit declared parts/03-classical-mechanics/01-kinematics.tex:780
proves ch:01-kinematics@proof-6 declared parts/03-classical-mechanics/01-kinematics.tex:713