Black Holes

1440 Findings

Hours of research by our editors, distilled into minutes of clarity.

  • Pinned

    String theory replaces black hole singularities with fuzzballs of tangled strings

    Black holes contain singularities where information about the material that fell in is lost, violating quantum mechanics. Instead, modeled as a bundle of strings, information is stored and slowly released as the black hole evaporates.

  • The Event Horizon Telescope captured the first photo of a black hole in 2019

    Predicted by Einstein in 1916, these invisible objects can be indirectly seen through their accretion discs and X-ray bursts. Over 40 million trillion black holes may be scattered throughout the universe.

  • Black holes form from the collapse of massive stellar cores due to gravity

    Over time, less energy is released from the cores of massive stars as heavier elements are created through fusion. Once iron has been fused, energy is consumed rather than created, and runaway collapse creates a dense enough region where the stellar core existed to warp spacetime into a black hole.

  • General relativity redefined gravity as the curvature of spacetime

    The breakthrough came when Albert Einstein realized that freely falling is indistinguishable from weightlessness, leading him to the principle of equivalence between gravity and acceleration. His prediction that gravity bends light was confirmed in 1919 during a solar eclipse.

  • There may be as many as four types of black holes, categorized by their mass

    Three types are known to exist: stellar mass black holes, supermassive black holes, and intermediate black holes. A fourth type—micro black holes—is theoretical and would have the same mass as Mount Everest in a space the size of an atom.

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