KnowraSpecial relativityLinked fromLinked fromThe 94 pages that link to Special relativity, each with the reason it gives.All 94Broader topic 6Related 37Narrower topic 32Compared with 19General relativityNarrower topic: General relativity extends its spacetime framework to include gravity and accelerated frames.Quantum field theoryNarrower topic: Quantum field theory is constructed to respect relativistic spacetime and causal structure.Doppler effectNarrower topic: Its treatment of light and time produces the relativistic version of the effect.Speed of lightNarrower topic: Its postulates make the vacuum speed of light identical for all inertial observers.Dirac equationNarrower topic: The equation is built to respect relativistic energy and momentum.Mass–energy equivalenceNarrower topic: Mass–energy equivalence follows from the relativistic structure of energy and momentum.Proper timeNarrower topic: Proper time first appears as an invariant measure of elapsed time in this theory.Minkowski spacetimeNarrower topic: Minkowski spacetime is the geometric formulation of this theory.Stress–energy tensorNarrower topic: It establishes the spacetime framework in which energy and momentum combine.Relativistic chemistryNarrower topic: Heavy atoms’ inner electrons move fast enough for its corrections to affect chemical structure.Four-momentumNarrower topic: Four-momentum is the energy–momentum quantity formulated to obey special relativity.Inverse Compton scatteringNarrower topic: Relativistic transformations explain why a photon’s energy depends on direction in the electron’s rest frame.Relativity of simultaneityNarrower topic: Relativity of simultaneity is one of the theory’s central consequences.Klein–Gordon equationNarrower topic: Its relativistic energy and momentum motivate the equation’s spacetime form.Lorentz factorNarrower topic: The Lorentz factor is a central quantity in this theory's transformations and dynamics.Electromagnetic field tensorNarrower topic: Its Lorentz transformations mix the tensor’s electric and magnetic components.Length contractionNarrower topic: Length contraction is one of its predictions about measurements across moving frames.Photon momentumNarrower topic: Its energy–momentum relation permits nonzero momentum for particles with zero rest mass.Twin paradoxNarrower topic: The standard twin-paradox analysis follows from its treatment of inertial motion and clock readings.Cherenkov detectorNarrower topic: Relativistic particle speeds determine whether Cherenkov emission occurs and how its angle varies.Lorentz covarianceNarrower topic: Lorentz covariance is the mathematical expression of special relativity’s frame symmetry.Relativistic Doppler effectNarrower topic: The effect is a direct consequence of special relativity applied to light and moving clocks.Energy–momentum relationNarrower topic: Its spacetime symmetries make the energy–momentum relation frame-independent in form.Electromagnetic four-potentialNarrower topic: The four-potential is defined to transform consistently under its Lorentz symmetry.Poincaré groupNarrower topic: Its inertial-frame symmetries are represented by the Poincaré group.Relativistic mechanicsNarrower topic: Relativistic mechanics is the theory's description of motion and forces.TachyonNarrower topic: The invariant light speed and causal structure of this theory define the tachyon hypothesis.Massless particleNarrower topic: It supplies the relation between invariant mass, energy, momentum, and light-speed motion.History of general relativityNarrower topic: General relativity extends its account of spacetime beyond inertial frames and incorporates gravity.Ladder paradoxNarrower topic: The paradox follows from special relativity’s rules for space and time.Lorenz gauge conditionNarrower topic: The condition is naturally expressed using relativistic four-vectors.Relativistic quantum mechanicsNarrower topic: Its invariant speed and Lorentz symmetry constrain the form of relativistic quantum equations.
KnowraSpecial relativityLinked fromLinked fromThe 94 pages that link to Special relativity, each with the reason it gives.All 94Broader topic 6Related 37Narrower topic 32Compared with 19General relativityNarrower topic: General relativity extends its spacetime framework to include gravity and accelerated frames.Quantum field theoryNarrower topic: Quantum field theory is constructed to respect relativistic spacetime and causal structure.Doppler effectNarrower topic: Its treatment of light and time produces the relativistic version of the effect.Speed of lightNarrower topic: Its postulates make the vacuum speed of light identical for all inertial observers.Dirac equationNarrower topic: The equation is built to respect relativistic energy and momentum.Mass–energy equivalenceNarrower topic: Mass–energy equivalence follows from the relativistic structure of energy and momentum.Proper timeNarrower topic: Proper time first appears as an invariant measure of elapsed time in this theory.Minkowski spacetimeNarrower topic: Minkowski spacetime is the geometric formulation of this theory.Stress–energy tensorNarrower topic: It establishes the spacetime framework in which energy and momentum combine.Relativistic chemistryNarrower topic: Heavy atoms’ inner electrons move fast enough for its corrections to affect chemical structure.Four-momentumNarrower topic: Four-momentum is the energy–momentum quantity formulated to obey special relativity.Inverse Compton scatteringNarrower topic: Relativistic transformations explain why a photon’s energy depends on direction in the electron’s rest frame.Relativity of simultaneityNarrower topic: Relativity of simultaneity is one of the theory’s central consequences.Klein–Gordon equationNarrower topic: Its relativistic energy and momentum motivate the equation’s spacetime form.Lorentz factorNarrower topic: The Lorentz factor is a central quantity in this theory's transformations and dynamics.Electromagnetic field tensorNarrower topic: Its Lorentz transformations mix the tensor’s electric and magnetic components.Length contractionNarrower topic: Length contraction is one of its predictions about measurements across moving frames.Photon momentumNarrower topic: Its energy–momentum relation permits nonzero momentum for particles with zero rest mass.Twin paradoxNarrower topic: The standard twin-paradox analysis follows from its treatment of inertial motion and clock readings.Cherenkov detectorNarrower topic: Relativistic particle speeds determine whether Cherenkov emission occurs and how its angle varies.Lorentz covarianceNarrower topic: Lorentz covariance is the mathematical expression of special relativity’s frame symmetry.Relativistic Doppler effectNarrower topic: The effect is a direct consequence of special relativity applied to light and moving clocks.Energy–momentum relationNarrower topic: Its spacetime symmetries make the energy–momentum relation frame-independent in form.Electromagnetic four-potentialNarrower topic: The four-potential is defined to transform consistently under its Lorentz symmetry.Poincaré groupNarrower topic: Its inertial-frame symmetries are represented by the Poincaré group.Relativistic mechanicsNarrower topic: Relativistic mechanics is the theory's description of motion and forces.TachyonNarrower topic: The invariant light speed and causal structure of this theory define the tachyon hypothesis.Massless particleNarrower topic: It supplies the relation between invariant mass, energy, momentum, and light-speed motion.History of general relativityNarrower topic: General relativity extends its account of spacetime beyond inertial frames and incorporates gravity.Ladder paradoxNarrower topic: The paradox follows from special relativity’s rules for space and time.Lorenz gauge conditionNarrower topic: The condition is naturally expressed using relativistic four-vectors.Relativistic quantum mechanicsNarrower topic: Its invariant speed and Lorentz symmetry constrain the form of relativistic quantum equations.