The physics of space and time I: The description of rulers and clocks in uniform translational motion by Galilean or Lorentz transformations
J. H. Field
Abstract
A calculus based on pointer-mark coincidences is proposed to define, in a mathematically rigorous way, measurements of space and time intervals. The connection between such measurements in different inertial frames according to the Galilean or Lorentz transformations is then studied using new, simple, and practical clock synchronisation procedures. It is found that measured length intervals are Lorentz invariant, whereas moving clocks show a universal time dilatation effect. The `relativistic length contraction' and `relativity of simultaneity' effects of conventional special relativity theory are shown to be the consequence of calculational error. Two derivations of the Lorentz transformation from simple postulates, without reference to electrodynamics or any other dynamical theory, are reviewed in an appendix.
Create a lesson
Related papers
Model dependent analytic spin torsion corrections to Blandford Znajek energy extraction in Einstein Cartan gravity
Jingxu Wu, Liangyu Luo, Zhenzhou Lei et al.
Relational GNS Fusion and an Idempotent Gauge-Gravity Fixed Point
G. J. Verbiest
Testing the running vacuum model in light of DESI-DR2 Measurements
Lamiae Kardaddech, Safae Dahmani, Amine Bouali et al.
Reheating after the Higgs Inflation
Manda Malekpour, Kourosh Nozari
Observational viability of Herglotz f(R,T) gravity: A multi-probe Bayesian analysis
Vishal M C, Sankarsan Tarai
Coherent Oscillations of Protons in Hydrogen-loaded Metals
G. Modanese