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相关概念视频

Detection of Black Holes01:10

Detection of Black Holes

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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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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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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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X-ray Imaging01:24

X-ray Imaging

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German physicist Wilhelm Röntgen (1845–1923) was experimenting with electrical current when he discovered that a mysterious and invisible "ray" would pass through his flesh but leave an outline of his bones on a screen coated with a metal compound. In 1895, Röntgen made the first durable record of the internal parts of a living human: an "X-ray" image (as it came to be called) of his wife’s hand. Scientists worldwide quickly began their own experiments with...
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Focusing of Light in the Eye01:16

Focusing of Light in the Eye

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Light rays enter the eye through the cornea, a transparent dome-shaped tissue that is the eye's outermost layer. The cornea bends or refracts, light rays traveling to the pupil. The shape of the cornea determines how much of the light is bent and whether the image will be focused correctly on the retina at the back of the eye. Once the light has passed through both refraction layers, it converges into a single focal point onto a small area. This is where photoreceptors start transforming...
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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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相关实验视频

Updated: Mar 31, 2026

Author Spotlight: In-Depth Morphometric Examination and Quantification of Native Lens Structure Using Whole Mount Imaging
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Author Spotlight: In-Depth Morphometric Examination and Quantification of Native Lens Structure Using Whole Mount Imaging

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一个引力透镜类星体的中心图像.

Joshua N Winn1, David Rusin, Christopher S Kochanek

  • 1Harvard-Smithsonian Center for Astrophysics, Cambridge, Massachusetts 02138, USA. jwinn@cfa.harvard.edu

Nature
|February 13, 2004
PubMed
概括

科学家们已经确定了一个失踪者.

科学领域:

  • 天文学和天体物理学
  • 宇宙学的宇宙学是什么?

背景情况:

  • 星系可以作为引力透镜,创建背景天体的多个图像.
  • 理论预测镜头图像的奇数,但大多数观察到的情况显示两个或四个图像.
  • 难以捉摸的"中心"图像,预计是微弱的,靠近透镜银河系的核心,对于研究遥远的银河系中心至关重要.

研究的目的:

  • 为了安全地识别以前未被检测到的"中心"引力图像.
  • 利用已识别的中心图像对透镜星系核心属性的详细分析.

主要方法:

  • 在一个候选引力透镜系统上进行了无线电观测.
  • 镜头建模是通过结合新识别的中央图像进行的.

主要成果:

  • 通过无线电观测确定了一个明确的中央图像.
  • 镜头银河系中心的超大质量黑洞的质量被限制在2×10^8太阳质量以下.
  • 透镜星系内的表面密度被确定为大于20,000个太阳质量/parsec平方.

结论:

  • 中心图像的安全识别为探测银河系核心提供了一个新的工具.
  • 结果与理论预期和对附近星系的观测一致,验证了这些发现.

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