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相关概念视频

Conversion of Units01:36

Conversion of Units

Sometimes, there is a need to convert from one unit to another one. For instance, reading a cookbook in which quantities are expressed in units of liters or ounces may require conversion of quantities to cups. Or, when looking up directions on how to get to a location, we may be interested to know how many miles we are going to walk. In this case, we would have to convert units of feet or meters to miles.
The first step in the unit conversion is to list the given units and the units required...
Kepler's First Law of Planetary Motion01:10

Kepler's First Law of Planetary Motion

In the early 17th century, German astronomer and mathematician Johannes Kepler postulated three laws for the motion of planets in the solar system. He formulated his first two laws based on the observations of his forebears, Nikolaus Copernicus and Tycho Brahe.
Polish astronomer Nikolaus Copernicus put forth a theory that stated a heliocentric model for the solar system. According to this heliocentric theory, all the planets, including Earth, orbit the Sun in circular orbits.
On the other hand,...
Kepler's Second Law of Planetary Motion01:29

Kepler's Second Law of Planetary Motion

In the early 17th century, German astronomer and mathematician Johannes Kepler postulated three laws for the motion of planets in the solar system. His first law states that all planets orbit the Sun in an elliptical orbit, with the Sun at one of the ellipse's foci. Therefore, the distance of a planet from the Sun varies throughout its revolution around the Sun.
While in an elliptical orbit, the total energy of the planet is conserved. Therefore, the planet slows down when it is at apogee and...
Doppler Effect - II01:05

Doppler Effect - II

The Doppler effect has several practical, real-world applications. For instance, meteorologists use Doppler radars to interpret weather events based on the Doppler effect. Typically, a transmitter emits radio waves at a specific frequency toward the sky from a weather station. The radio waves bounce off the clouds and precipitation and travel back to the weather station. The radio frequency of the waves reflected back to the station appears to decrease if the clouds or precipitation are moving...
Reduced Mass Coordinates: Isolated Two-body Problem01:12

Reduced Mass Coordinates: Isolated Two-body Problem

In classical mechanics, the two-body problem is one of the fundamental problems describing the motion of two interacting bodies under gravity or any other central force. When considering the motion of two bodies, one of the most important concepts is the reduced mass coordinates, a quantity that allows the two-body problem to be solved like a single-body problem. In these circumstances, it is assumed that a single body with reduced mass revolves around another body fixed in a position with an...
Pole and System Stability01:24

Pole and System Stability

The transfer function is a fundamental concept representing the ratio of two polynomials. The numerator and denominator encapsulate the system's dynamics. The zeros and poles of this transfer function are critical in determining the system's behavior and stability.
Simple poles are unique roots of the denominator polynomial. Each simple pole corresponds to a distinct solution to the system's characteristic equation, typically resulting in exponential decay terms in the system's response.

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相关实验视频

Updated: Jun 14, 2026

Bringing the Visible Universe into Focus with Robo-AO
10:35

Bringing the Visible Universe into Focus with Robo-AO

Published on: February 12, 2013

改善了冥王星-哈伦系统的轨道和物理参数.

D J Tholen, M W Buie, R P Binzel

    Science (New York, N.Y.)
    |July 31, 1987
    PubMed
    概括

    对冥王星-沙龙隐蔽事件的新分析揭示了系统尺寸和组成. 冥王星-沙龙系统的总半径为1786公里,平均密度表明有大量的岩石材料.

    科学领域:

    • 天文学和天体物理学.
    • 星球科学 星球科学
    • 太阳系研究研究太阳系研究.

    背景情况:

    • 冥王星-沙龙系统是一个具有重大科学兴趣的二进制物体.
    • 之前的观测提供了关于该系统精确尺寸和组成的有限数据.

    研究的目的:

    • 改进对冥王星 - 哈伦星系物理特征的理解.
    • 为了确定冥王星和哈伦的半径,密度和表面特性.

    主要方法:

    • 分析了1985年和1986年冥王星-沙龙遮蔽和穿越事件的观测数据.
    • 几何计算以确定半径和体积.
    • 密度计算基于估计的质量和体积.

    主要成果:

    • 冥王星和沙龙的半径的总和是1786±19公里.
    • 个体半径:冥王星 1145 ± 46 公里,夏龙 642 ± 34 公里.
    • 平均系统密度为1.84 ± 0.19 g/cm3,表明主要的岩石组成.

    结论:

    • 冥王星-哈龙星系的尺寸和密度已经得到了更精确的确定.
    • 该系统的密度表明其成分超过50%的岩石.

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    Optimization, Test and Diagnostics of Miniaturized Hall Thrusters
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  • 哈伦在其与冥王星相对的半球和相反的半球之间表现出明显的表面色彩.