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Gravity between Spherical Bodies01:27

Gravity between Spherical Bodies

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Newton's law of gravitation describes the gravitational force between any two point masses. However, for extended spherical objects like the Earth, the Moon, and other planets, the law holds with an assumption that masses of spherical objects are concentrated at their respective centers.
This assumption can be proved easily by showing that the expression for gravitational potential energy between a hollow sphere of mass (M) and a point mass (m) is the same as it would be for a pair of extended...
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Schwarzschild Radius and Event Horizon01:21

Schwarzschild Radius and Event Horizon

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No object with a finite mass can travel faster than the speed of light in a vacuum. This fact has an interesting consequence in the domain of extremely high gravitational fields.
The minimum speed required to launch a projectile from the surface of an object to which it is gravitationally bound so that it eventually escapes the object’s gravitational field is called the escape velocity. The escape velocity is independent of the mass of the object. Merging the idea of escape...
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Detection of Black Holes01:10

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Although black holes were theoretically postulated in the 1920s, they remained outside the domain of observational astronomy until the 1970s.
Their closest cousins are neutron stars, which are composed almost entirely of neutrons packed against each other, making them extremely dense. A neutron star has the same mass as the Sun but its diameter is only a few kilometers. Therefore, the escape velocity from their surface is close to the speed of light.
Not until the 1960s, when the first neutron...
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Newton's Law of Gravitational Attraction01:24

Newton's Law of Gravitational Attraction

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Sir Isaac Newton established the universality of the law of gravitational attraction based on empirical evidence and inductive reasoning. He published his work in Philosophiae Naturalis Principia Mathematica ("the Principia") on July 5, 1687.
Newton's law of gravitational attraction is a fundamental law of physics that governs the attraction between objects. It states that the magnitude of the gravitational force between any two objects is proportional to their masses and inversely...
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Gravitation Between Spherically Symmetric Masses01:14

Gravitation Between Spherically Symmetric Masses

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The gravitational potential energy between two spherically symmetric bodies can be calculated from the masses and the distance between the bodies, assuming that the center of mass is concentrated at the respective centers of the bodies.
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The Principle of Superposition and the Gravitational Field01:17

The Principle of Superposition and the Gravitational Field

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The principle of superposition applies to gravitational forces of objects that are sufficiently far apart. It states that the net gravitational force on a point object is the vector sum of the gravitational forces on it due to various objects. The principle helps calculate the force by listing the individual forces and then vectorially summing them up. However, it should be noted that the principle of superposition is not always apparent. In the presence of a second force, the first force could...
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Setting Limits on Supersymmetry Using Simplified Models
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超銀河系超星雲は重力によって閉じ込められている.

J L Turner1, S C Beck, L P Crosthwaite

  • 1Department of Physics and Astronomy, UCLA, Los Angeles, California 90095-1562, USA. turner@astro.ucla.edu

Nature
|June 6, 2003
PubMed
まとめ

球状星団の起源は謎のままである. 研究者はNGC5253の若い星団を研究し,重力が恒星風にもかかわらずガスを閉じ込めることができ,星団形成のヒントを提供することを発見しました.

科学分野:

  • 天文学 天文学
  • 天体物理学 天体物理学
  • 宇宙進化の宇宙進化について

背景:

  • 球状星団は密度の高い恒星系ですが,その形成メカニズムは十分に理解されていません.
  • 若くて巨大な恒星は,放射圧と恒星風によってガスを散らばり,星団形成を妨げると予想されます.
  • 私たちの銀河系にある古代の球状星団は,初期の形成プロセスに関する限られた洞察を提供します.

研究 の 目的:

  • 若くて巨大な恒星群の形成を調査する.
  • 誕生した星団内のガス収束における重力と恒星風の役割を理解する.
  • 近くのスターバースト銀河の観測を用いて球状星団の起源を探求する.

主な方法:

  • NGC5253.3の超恒星群から測定された赤外線水素再結合線.
  • 分析されたガスの加熱は,約100万の恒星に起因し,その中には4,000~6,000の巨大な"O"星が含まれています.
  • ガスと塵により光学的視界を遮る星団の覆われた状態を観測した.

主要な成果:

  • 巨大な若い星群によって加熱されたガスを示す水素再結合線が検出されました.
  • この星団には,推定100万の恒星があり,大量の"O"型恒星が大量に存在する.

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  • 証拠によると,重力により,星団内のガスが閉じ込められ,恒星風に対抗しています.
  • 結論:

    • 重力による閉じ込めは,恒星群が,若い,巨大な恒星の分散効果にどのように生き残るのかを説明するかもしれない.
    • NGC5253で観測された現象は,若い,隠された星群の形成のための潜在的なモデルを提供します.
    • この研究は,星空爆発銀河における球状星団の進化の初期段階についての洞察を提供します.