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Big Bang

Big Bang

Physical theory of the cosmos

2 min read

Why this is trending

Interest in “Big Bang” spiked on Wikipedia on 2026-02-25.

Categorised under Science & Nature, this article fits a familiar pattern. Science and technology topics tend to trend after breakthroughs, space missions, health announcements, or widely shared research findings.

GlyphSignal tracks these patterns daily, turning raw Wikipedia traffic data into a curated feed of what the world is curious about. Every spike tells a story.

2026-01-27Peak: 15,0142026-02-25
30-day total: 118,943

Key Takeaways

  • The Big Bang is a physical theory that describes how the universe expanded from an initial state of high density and temperature.
  • The uniformity of the universe, known as the horizon and flatness problems, is explained through cosmic inflation: a phase of accelerated expansion during the earliest stages.
  • 02 billion years ago, which is considered the age of the universe.
  • Extrapolating this cosmic expansion backward in time using the known laws of physics, the models describe an extraordinarily hot and dense primordial universe.
  • As the universe expanded, it cooled sufficiently to allow the formation of subatomic particles, and later atoms.

The Big Bang is a physical theory that describes how the universe expanded from an initial state of high density and temperature. Various cosmological models based on the Big Bang concept explain a broad range of phenomena, including the abundance of light elements, the cosmic microwave background (CMB) radiation, the redshift of galaxies and the large-scale structure of the Universe. The uniformity of the universe, known as the horizon and flatness problems, is explained through cosmic inflation: a phase of accelerated expansion during the earliest stages. Detailed measurements of the expansion rate of the universe place the initial singularity at an estimated 13.787±0.02 billion years ago, which is considered the age of the universe. A wide range of empirical evidence strongly favors the Big Bang event, which is now widely accepted.

Extrapolating this cosmic expansion backward in time using the known laws of physics, the models describe an extraordinarily hot and dense primordial universe. Physics lacks a widely accepted theory that can model the earliest conditions of the Big Bang. As the universe expanded, it cooled sufficiently to allow the formation of subatomic particles, and later atoms. These primordial elements—mostly hydrogen, with some helium and lithium—then coalesced under the force of gravity aided by dark matter, forming early stars and galaxies. Measurements of the redshifts of supernovae indicate that the expansion of the universe is accelerating, an observation attributed to a concept called dark energy.

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