definition 18.7 Frame of reference
open in the book ·
parts/03-classical-mechanics/01-kinematics.tex:149
· p. 719
- ground object -- no derivation owed
Rests on
Supports
-
depends_on
definition 18.8
Inertial frame of reference
¶
- depends_on definition 27.16 Areal velocity ¶
-
depends_on
definition 18.18
Galilean transformation
¶
-
depends_on
proposition 18.20
The Galilean group
¶
-
depends_on
corollary 18.24
Galilean composition of velocities
¶
- depends_on phenomenon 18.26 Composition of velocities, and its limit ¶
- depends_on remark 18.25 Where the additivity goes ¶
- depends_on remark 18.22 Superseded, and in exactly what sense ¶
-
depends_on
corollary 18.24
Galilean composition of velocities
¶
-
depends_on
proposition 18.21
Galilean invariants
¶
- depends_on remark 18.22 Superseded, and in exactly what sense ¶ ↺
-
depends_on
proposition 18.23
Transformation of velocity and acceleration
¶
- depends_on phenomenon 18.26 Composition of velocities, and its limit ¶ ↺
-
depends_on
proposition 19.13
Which forces are admissible
¶
-
depends_on
corollary 19.14
Central pair forces are admissible
¶
- depends_on postulate 19.61 Newton's third law, strong form ¶
-
depends_on
corollary 19.14
Central pair forces are admissible
¶
- depends_on remark 18.19 Why the map is affine, and what is assumed to make it so ¶
- depends_on remark 19.11 Mass is a Galilean scalar ¶
-
depends_on
theorem 19.12
Galilean covariance of the second law
¶
- depends_on proposition 19.13 Which forces are admissible ¶ ↺
- depends_on theorem 19.25 Galilean covariance of the rotational second law ¶
- depends_on theorem 19.25 Galilean covariance of the rotational second law ¶ ↺
-
depends_on
proposition 18.20
The Galilean group
¶
-
depends_on
phenomenon 18.17
Uniform motion is undetectable from within
¶
- depends_on remark 18.13 Absolute space is stated here, and not adopted ¶
-
depends_on
postulate 19.6
Newton's first law
¶
- depends_on phenomenon 19.7 Persistence of uniform motion ¶
-
depends_on
postulate 19.19
Newton's first law, rotational case
¶
- depends_on phenomenon 19.21 Equal areas in equal times ¶
-
depends_on
proposition 20.13
Eastward deflection of a body dropped from rest
¶
- depends_on remark 20.14 Why the elementary argument gives three halves of this ¶
-
depends_on
postulate 19.8
Newton's second law
¶
-
depends_on
definition 19.30
Conservative force and potential energy
¶
- depends_on definition 27.13 Central force ¶
- depends_on definition 19.31 Energy ¶
- depends_on proposition 19.71 The Newtonian closed system is a Lagrangian system ¶
-
depends_on
definition 19.34
Work
¶
- depends_on definition 19.35 Power ¶
- depends_on proposition 19.36 Work of a torque ¶
- depends_on theorem 19.38 Work–energy theorem ¶
- depends_on phenomenon 49.16 Pulsars: clocks at nuclear density ¶
-
depends_on
phenomenon 42.1
Universality of free fall
¶
- depends_on phenomenon 53.5 Universality of free fall, as measured ¶
- depends_on phenomenon 42.4 The lunar orbit is not polarized toward the Sun ¶
- depends_on phenomenon 19.10 Force, mass and acceleration ¶
-
depends_on
postulate 19.22
Newton's second law, rotational case
¶
- depends_on theorem 29.25 Euler's equations ¶
-
depends_on
postulate 19.48
Newton's third law
¶
- depends_on phenomenon 19.50 Recoil and the conservation of momentum ¶
- depends_on postulate 19.49 Net internal force ¶
- depends_on postulate 19.61 Newton's third law, strong form ¶ ↺
- depends_on theorem 27.30 Reduction of the two-body problem ¶
- depends_on theorem 19.52 The centre of mass moves as a particle ¶
-
depends_on
theorem 20.2
Parabolic trajectory
¶
- depends_on corollary 20.3 Range, apex, time of flight ¶
- depends_on phenomenon 20.6 Air drag ¶
- depends_on remark 20.5 rem:projectile-idealisation ¶
-
depends_on
theorem 29.51
Equation of motion in a rotating frame
¶
- depends_on phenomenon 42.4 The lunar orbit is not polarized toward the Sun ¶ ↺
-
depends_on
definition 19.30
Conservative force and potential energy
¶
- depends_on proposition 19.20 For one particle the rotational first law is not independent ¶
-
depends_on
postulate 19.1
Inertia
¶
-
depends_on
definition 19.2
Interaction
¶
- depends_on postulate 19.48 Newton's third law ¶ ↺
-
depends_on
definition 19.3
Mass
¶
-
depends_on
definition 19.39
Body
¶
- depends_on definition 19.47 Position of the centre of mass ¶
- depends_on definition 19.41 Moment of inertia about an axis ¶
- depends_on definition 19.40 Total mass ¶
- depends_on definition 29.1 Rigid body ¶
-
depends_on
definition 19.29
Kinetic energy
¶
- depends_on definition 19.31 Energy ¶ ↺
- depends_on theorem 19.38 Work–energy theorem ¶ ↺
- depends_on definition 19.41 Moment of inertia about an axis ¶ ↺
-
depends_on
definition 19.5
Linear momentum
¶
- depends_on definition 27.2 Translational equilibrium ¶
- depends_on definition 19.18 Angular momentum ¶
- depends_on definition 19.51 Linear momentum of the centre of mass ¶
- depends_on postulate 19.6 Newton's first law ¶ ↺
- depends_on postulate 19.8 Newton's second law ¶ ↺
- depends_on definition 19.40 Total mass ¶ ↺
- depends_on remark 19.11 Mass is a Galilean scalar ¶ ↺
-
depends_on
definition 19.39
Body
¶
-
depends_on
definition 19.2
Interaction
¶
- depends_on definition 18.1 Motion and rest ¶
-
depends_on
definition 18.9
Position
¶
-
depends_on
definition 18.27
Angular position, velocity and acceleration
¶
-
depends_on
definition 18.29
Angular velocity vector
¶
- depends_on remark 18.30 The angular velocity is an element of $\mathfrak{so}(3)$ ¶
-
depends_on
phenomenon 18.31
Uniform circular motion is accelerated motion
¶
- depends_on proposition 18.32 Tangential and centripetal components ¶
- depends_on proposition 18.32 Tangential and centripetal components ¶ ↺
- depends_on remark 18.28 The radian carries no dimension ¶
-
depends_on
definition 18.29
Angular velocity vector
¶
- depends_on definition 18.1 Motion and rest ¶ ↺
-
depends_on
definition 18.10
Velocity
¶
-
depends_on
definition 18.11
Acceleration
¶
- depends_on definition 18.27 Angular position, velocity and acceleration ¶ ↺
- depends_on lemma 27.15 Velocity and acceleration in plane polar coordinates ¶
- depends_on phenomenon 18.31 Uniform circular motion is accelerated motion ¶ ↺
-
depends_on
phenomenon 18.12
Uniformly accelerated motion
¶
- depends_on phenomenon 20.1 phen:parabolic-trajectory ¶
-
depends_on
proposition 18.33
Intrinsic decomposition of the acceleration
¶
- depends_on remark 18.34 The two ways an acceleration can be zero ¶
- depends_on proposition 18.23 Transformation of velocity and acceleration ¶ ↺
- depends_on definition 18.27 Angular position, velocity and acceleration ¶ ↺
- depends_on definition 18.29 Angular velocity vector ¶ ↺
- depends_on definition 19.29 Kinetic energy ¶ ↺
- depends_on definition 19.5 Linear momentum ¶ ↺
- depends_on lemma 27.15 Velocity and acceleration in plane polar coordinates ¶ ↺
- depends_on proposition 18.23 Transformation of velocity and acceleration ¶ ↺
-
depends_on
definition 18.11
Acceleration
¶
-
depends_on
definition 18.27
Angular position, velocity and acceleration
¶
Neighborhood
Every logical edge within two steps of this node.
- declared and complete
- partly declared
- a check failed
- not graded
- declared in the source
- inferred from structure
Edges
| type | direction | node | provenance | where |
|---|---|---|---|---|
depends_on |
→ | Particle | declared | parts/03-classical-mechanics/01-kinematics.tex:152 |
depends_on |
← | Inertial frame of reference | declared | parts/03-classical-mechanics/01-kinematics.tex:174 |
depends_on |
← | Motion and rest | declared | parts/03-classical-mechanics/01-kinematics.tex:47 |
depends_on |
← | Position | declared | parts/03-classical-mechanics/01-kinematics.tex:193 |