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Gravitation

Escape Velocity Limits and Black Holes

Description

Escape velocity helps explain how black holes and event horizons form. It is the minimum speed a projectile needs to leave the surface of an object and eventually escape its gravitational field. In this context, escape velocity does not depend on the mass of the object being launched.

The key ide...

Transcript

从太阳表面发射的假想抛射体需要达到 618 km/s 的速度才能逃离太阳的引力场。

现在,假设太阳的半径缩小为原来的一半,而质量保持不变,则其逃逸速度将增加至 873 km/s。如果半径进一步减小,最终达到 2.9 km,逃逸速度将等于光速。

请记住,抛射物的逃逸速度取决于其发射源物体的质量和半径。

通常,任何物体的逃逸速度等于光速时所对应的半径称为史瓦西半径。因此,史瓦西半径等于引力常数与物体质量乘积的两倍除以光速的平方。

任何半径小于其史瓦西半径且不旋转的球形物体被称为黑洞。 

围绕黑洞、位于史瓦西半径处的球形表面 被称为事件视界,其内部的逃逸速度大于光速。

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