The missing mass is given off as energy.
缺少的质量作为能源释放了。
单词 | Missing mass |
释义 |
Missing mass
原声例句
美国历史频道纪录片《宇宙》 The missing mass is given off as energy. 缺少的质量作为能源释放了。 科学60秒 听力 2014年9月合集 The best guess is that invisible particles called weakly interacting massive particles, or WIMPs, contribute all this missing mass. 暗物质是由肉眼看不见的粒子——大质量弱相互作用粒子,或称WIMP组成的。 经济学人 Science and technology But the missing mass has not disappeared; it has merely been transformed. 但是丢失的质量并没有消失;它只是被改造了。 TED演讲(音频版) 2021年8月合集 This missing mass is called dark matter, and we observe that it accounts for 23 percent of the universe. 这种缺失的质量被称为暗物质,我们观察到它占宇宙的 23%。 Crash Course 综合篇 That " missing mass" in the nucleus, known as its mass defect, is actually present in the form of energy. 原子核中的“缺失质量” ,称为质量缺陷, 实际上以能量的形式存在。 Crash Course 综合篇 To find out how much binding energy that missing mass amounts to, you can use it as the 'm' in Einstein's formula. 要找出丢失的质量相当于多少结合能, 您可以将其用作爱因斯坦公式中的“m” 。 Crash Course 综合篇 And since binding energy accounts for the missing mass, you can calculate it using – you guessed it! – e equals m c squared. 由于结合能解释了缺失的质量,您可以使用 - 您猜对了! – e 等于 m c 的平方。
中文百科
暗物质 Dark matter(重定向自Missing mass)
![]() ![]() ![]() ![]() 在宇宙学中,暗物质(dark matter),是指无法通过电磁波的观测进行研究,也就是不与电磁力产生作用的物质。人们目前只能透过重力产生的效应得知,而且已经发现宇宙中有大量暗物质的存在。 现代天文学经由重力透镜、宇宙中大尺度结构的形成、微波背景辐射等方法和理论来探测暗物质。而根据ΛCDM模型,由普朗克卫星探测的数据得到:整个宇宙的构成中,我们常说的物质占4.9%,而暗物质则占26.8%,还有68.3%是暗能量(质能等价)。暗物质的存在可以解决大爆炸理论中的不自洽性(inconsistency),对结构形成也非常关键。暗物质很有可能是一种(或几种)粒子物理标准模型以外的新粒子所构成。对暗物质(和暗能量)的研究是现代宇宙学和粒子物理的重要课题。
英语百科
Dark matter 暗物质(重定向自Missing mass)
![]() ![]() ![]() ![]() Dark matter is a hypothetical type of matter composing the approximately 27% of the mass and energy in the observable universe that is not accounted for by dark energy, baryonic matter, and neutrinos. The name refers to the fact that it does not emit or interact with electromagnetic radiation, such as light, and is thus invisible to the entire electromagnetic spectrum. Although dark matter cannot be directly observed with conventional electromagnetic telescopes, its existence and properties are inferred from its various gravitational effects such as the motions of visible matter, via gravitational lensing, its influence on the universe's large-scale structure, and its effects in the cosmic microwave background. Dark matter is transparent to electromagnetic radiation and/or is so dense and small that it fails to absorb or emit enough radiation to be detectable with current imaging technology. |
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