When We Knew Physics · How we revealed the Universe

Antiquity–Present · A living chronology

Physics in motion.

Follow the chain from ideas and predictions to observation and evidence.

T Theory / model P Prediction O Observation / discovery C Confirmation I Concept

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Physics

Einstein's path

Follow the chain from ideas and predictions to observation and evidence.

  1. 1900

    Planck's quantum hypothesis

    Max Planck

    To reproduce the spectrum of glowing matter, Planck treated energy exchange as occurring in discrete packets. He initially regarded this as a mathematical device, not a complete picture of nature.

  2. 1905

    Special relativity

    Albert Einstein

    Einstein reformulated space and time so that the laws of physics—and the measured speed of light—are the same for all inertial observers.

  3. 1905

    Light quanta and the photoelectric effect

    Albert Einstein

    Einstein proposed that light itself sometimes behaves as localized energy quanta, explaining why light below a threshold frequency cannot eject electrons from a material.

  4. 1905

    Mass–energy equivalence

    Albert Einstein

    Einstein showed that mass and energy are equivalent, a result now commonly written as E = mc²: a small decrease in mass can correspond to a large release of energy.

  5. 1908

    Minkowski spacetime

    Hermann Minkowski

    Minkowski showed that special relativity is most naturally described as a four-dimensional geometry combining three dimensions of space with time.

  6. 1915

    General relativity

    Albert Einstein

    Einstein completed general relativity in 1915. It described gravity through a changing geometry of spacetime shaped by matter and energy.

  7. 1916

    Schwarzschild solution

    Karl Schwarzschild

    The first exact solution of Einstein's field equations described spacetime outside a spherical mass and contained a critical radius later understood through black-hole theory.

  8. 1917

    Relativistic cosmology and Λ

    Albert Einstein

    Einstein applied general relativity to the entire Universe and introduced the cosmological constant, Λ, to obtain a static model.

  9. 1910s onward

    The block-universe interpretation

    Hermann Minkowski · philosophers of time

    One influential interpretation treats past, present, and future events as parts of a four-dimensional spacetime whole. It is a philosophical consequence drawn from relativity, not an astronomical observation.

  10. 1919

    Eclipse tests of light bending

    Arthur Eddington · Frank Dyson · Andrew Crommelin

    Expeditions observed star positions near the eclipsed Sun to test the deflection of light predicted by general relativity. The results favored Einstein's value, though early precision was limited.

  11. 1922–1924

    Friedmann's expanding solutions

    Alexander Friedmann

    Friedmann found mathematical solutions of general relativity in which the scale of the Universe changes with time. These were theoretical possibilities, not yet observational discoveries.

  12. 1925–1927

    Quantum mechanics takes shape

    Werner Heisenberg · Erwin Schrödinger · Max Born · Paul Dirac

    Matrix mechanics, wave mechanics, the probabilistic interpretation, and a unifying formalism appeared across several years. Quantum mechanics was a collective development, not a one-day invention.

  13. 1927

    The uncertainty principle

    Werner Heisenberg

    In a quantum state, certain paired quantities, such as position and momentum, cannot both have arbitrarily precise values. This limit is inherent in the state, not merely a problem with imperfect instruments.

  14. 1927

    Solvay debates on quantum meaning

    Niels Bohr · Albert Einstein · Werner Heisenberg · Erwin Schrödinger

    At the fifth Solvay Conference, leading physicists debated measurement, probability, completeness, and the meaning of the new quantum theory.

  15. 1927

    Lemaître connects an expanding model with observations

    Georges Lemaître

    In 1927 Lemaître published an expanding-universe solution to Einstein's equations and estimated a velocity–distance relation from published redshifts and galaxy distances.

  16. 1929

    The 1929 distance–velocity relation

    Edwin Hubble · Milton Humason · Vesto Slipher

    In 1929 Hubble published a correlation between galaxy distance estimates and velocities derived from redshifts. This observational result is distinct from Slipher's earlier spectroscopy and Lemaître's 1927 expansion analysis.

  17. 1998

    Accelerating expansion of the Universe

    Supernova Cosmology Project · High-Z Supernova Search Team

    Two teams using distant Type Ia supernovae found that cosmic expansion has accelerated rather than steadily slowed under gravity.

  18. 2015–2016

    First direct detection of gravitational waves

    LIGO Scientific Collaboration · Virgo Collaboration

    Advanced LIGO recorded GW150914 on 14 September 2015: a characteristic spacetime strain from two merging stellar-mass black holes. The detection was announced after extensive checks in 2016.

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