File:The_Sun_in_white_light.jpg · Wikimedia Commons · See Wikimedia Commons
star
Sign in to saveAlso known as celestial star, stars, celestial stars, the stars, stellar
A star is a luminous spheroid of plasma held together by self-gravity. The nearest star to Earth is the Sun. Many other stars are visible to the naked eye at night; their immense distances from Earth make them appear as fixed points of light. The most prominent stars have been categorised into constellations and asterisms, and many of the brightest stars have proper names. Astronomers have assembled star catalogues that identify the known stars and provide standardized stellar designations. The observable universe contains an estimated to stars. Only about 4,000 of these stars are visible to t
A star is a massive ball of hot plasma held together by gravity that produces its own light, with the Sun being the closest example to Earth. Stars matter because they are the fundamental building blocks of galaxies and the universe, and many are visible to us as points of light in the night sky, which humans have organized into patterns called constellations and given individual names.
AI-generated from the Wikipedia summary — may contain errors.
Research
55,529 papers- Supramolecular Synthesis of Star Polymers.ReviewChemPlusChem · 2024Haino T, Nitta NDOI: 10.1002/cplu.202400014
- Clinical spectrum of human STAR variants and their genotype-phenotype correlation.ReviewThe Journal of endocrinology · 2024Altinkilic EM, Augsburger P, Pandey AV et al.DOI: 10.1530/JOE-24-0078
- Impact of star ratings on Medicare health plan enrollment: A systematic literature review.Journal of the American Pharmacists Association : JAPhA · 2023Borrelli EP, Park MA, Leslie RSDOI: 10.1016/j.japh.2023.03.009
- A STAR for the ages: a 30-year historical perspective of the role of transcription factors in the regulation of steroidogenic acute regulatory gene expression.ReviewThe Journal of endocrinology · 2024Viger RS, Bouchard MF, Tremblay JJDOI: 10.1530/JOE-24-0087
- Star polymer-based unimolecular micelles and their application in bio-imaging and diagnosis.ReviewBiomaterials · 2018Jin X, Sun P, Tong G et al.DOI: 10.1016/j.biomaterials.2018.01.051
- StAR protein and the regulation of steroid hormone biosynthesis.ReviewAnnual review of physiology · 2001Stocco DMDOI: 10.1146/annurev.physiol.63.1.193
- Star Atoms.The journal of physical chemistry. A · 2018Blümel RDOI: 10.1021/acs.jpca.8b07358
- The multifaceted landscape of the StAR protein in steroid biosynthesis: from development to degeneration.ReviewThe Journal of endocrinology · 2025Manna PRDOI: 10.1530/JOE-24-0380
via PubMed
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- Image
- The Sun by the Atmospheric Imaging Assembly of NASA's Solar Dynamics Observatory - 20100819.jpg
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- Unicode character
- ⭐
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Sources (6)
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~66 min read
Article
31 sectionsContents
- Etymology
- Observation history
- Designations
- Units of measurement
- Formation and evolution
- Star formation
- Main sequence
- Post–main sequence
- Massive stars
- Collapse
- Binary stars
- Distribution
- Characteristics
- Age
- Chemical composition
- Diameter
- Kinematics
- Magnetic field
- Mass
- Rotation
- Temperature
- Radiation
- Luminosity
- Magnitude
- Classification
- Variable stars
- Structure
- Nuclear fusion reaction pathways
- See also
- References
- External links
A star is a luminous spheroid of plasma held together by self-gravity. The nearest star to Earth is the Sun. Many other stars are visible to the naked eye at night; their immense distances from Earth make them appear as fixed points of light. The most prominent stars have been categorised into constellations and asterisms, and many of the brightest stars have proper names. Astronomers have assembled star catalogues that identify the known stars and provide standardized stellar designations. The observable universe contains an estimated to stars. Only about 4,000 of these stars are visible to the naked eye—all within the Milky Way galaxy.
A star's life begins with the gravitational collapse of a gaseous nebula of material largely comprising hydrogen, helium, and traces of heavier elements. Its total mass mainly determines its evolution and eventual fate. A star shines for most of its active life due to the thermonuclear fusion of hydrogen into helium in its core. This process releases energy that traverses the star's interior and radiates into outer space. At the end of a star's lifetime, fusion ceases and its core becomes a stellar remnant: a white dwarf, a neutron star, or—if it is sufficiently massive—a black hole.
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