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  2. File:Hubble Tuning Fork diagram.svg - Wikipedia

    en.wikipedia.org/wiki/File:Hubble_Tuning_Fork...

    As one of the first steps towards a coherent theory of galaxy evolution, the American astronomer Edwin Hubble, developed a classification scheme of galaxies in 1926. Although this scheme, also known as the Hubble tuning fork diagram, is now considered somewhat too simple, the basic ideas still hold...

  3. Galaxy morphological classification - Wikipedia

    en.wikipedia.org/wiki/Galaxy_morphological...

    Tuning-fork-style diagram of the Hubble sequence Galaxy morphological classification is a system used by astronomers to divide galaxies into groups based on their visual appearance. There are several schemes in use by which galaxies can be classified according to their morphologies, the most famous being the Hubble sequence , devised by Edwin ...

  4. Hubble sequence - Wikipedia

    en.wikipedia.org/wiki/Hubble_sequence

    Tuning-fork style diagram of the Hubble sequence. The tuning fork scheme divided regular galaxies into three broad classes – ellipticals, lenticulars and spirals – based on their visual appearance (originally on photographic plates). A fourth class contains galaxies with an irregular appearance.

  5. File:Hubble classification scheme.svg - Wikipedia

    en.wikipedia.org/wiki/File:Hubble_classification...

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  6. Galaxy formation and evolution - Wikipedia

    en.wikipedia.org/wiki/Galaxy_formation_and_evolution

    Hubble tuning fork diagram of galaxy morphology. Because of the inability to conduct experiments in outer space, the only way to “test” theories and models of galaxy evolution is to compare them with observations. Explanations for how galaxies formed and evolved must be able to predict the observed properties and types of galaxies.

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  8. File:Hubble sequence.svg - Wikipedia

    en.wikipedia.org/wiki/File:Hubble_sequence.svg

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  9. Template:Dimensionless Hubble constant - Wikipedia

    en.wikipedia.org/wiki/Template:Dimensionless...

    Our best measurement, as of 2013, for the Hubble parameter is h = 0.6780 ± 0.0077 from the Planck mission. In early 2011 it was 0.704 +0.013 −0.014 from WMAP 7-year data. [1] See Hubble's law#Determining the Hubble constant for the most recent value of H 0.