• Special relativity deals with physical extremes.

    狭义相对论同物理极限相关。

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  • It is a meaningless question in special relativity.

    对狭义相对论来说,这个问题毫无意义。

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  • That seemed to violate Einstein's theory of special relativity.

    这似乎违背了爱因斯坦的狭义相对论。

    youdao

  • What thought picture did Einstein use for special relativity?

    爱因斯坦用于考虑狭义相对论时的思维图像是什么?

    youdao

  • Special relativity; Light speed; Einstein; Moving object; Observation.

    狭义相对论;光速;爱因斯坦;运动物体;观测。

    youdao

  • Special relativity itself came from trying to fix a big anomaly more than 100 years ago.

    相对相对论本身就是在试着解释100年前一个异常现象中诞生的。

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  • Can we skirt Einstein's theory of special relativity and travel faster than a beam of light?

    我们能否绕过爱因斯坦狭义相对论的理论使得移动速度超越光速?

    youdao

  • Special relativity came first and is based on the speed of light being constant for everyone.

    首先发布的是狭义相对论,它的基础是对于任何一个人来说,光速是恒定不变的。

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  • Under Einstein's 1905 theory of special relativity, nothing can travel faster than light.

    在爱因斯坦的1905年的的特别相对论的理论下,没有任何东西可以传播超过光。

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  • Under special relativity, if something travels faster than the speed of light, it goes backwards in time.

    根据狭义相对论,如果有什么东西比光速旅行得更快,它就会把时间向后推移。

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  • So far we've been talking about special relativity, which applies to objects moving at constant speed.

    但迄今为止,我们谈论的一直是狭义相对论,这种理论适用于在速度不变的情况下移动的物体。

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  • Furthermore, the relativistic dynamics and its achievements are introduced, which are also tests of special relativity.

    此外,简要介绍了相对论动力学及其成就,这些成就也是对狭义相对论的检验。

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  • Slide-shows original equations, then equations re-written as vector analysis, then using the symmetry of special relativity.

    麦克斯韦方程组用矢量的形式重新表示,并利用狭义相对论你的对称性。

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  • Based on the theorem of momentum, the mass equation of special relativity is derived using a simple thought experiment.

    设计了一个简单的思想实验,用动量定理对洛伦兹变换成立的条件导出了相对论质量公式。

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  • Albert Einstein once imagined riding on a light beam, and his thought experiment led him to the theory of special relativity.

    爱因斯坦曾经幻想在宇宙中乘着一道光线飞驰,这个思想实验为他的狭义相对论奠定了基础。

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  • Albert Einstein once imagined riding on a light beam, and his thought experiment led him to the theory of special relativity.

    爱因斯坦曾经理想在宇宙中乘着一道光芒飞奔,这个头脑实行为他的狭义相对论奠基了底子。

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  • Despite speculation about her possible unacknowledged contributions to special relativity, she herself never made such claims.

    尽管有人猜测她可能对狭义相对论有未被承认的贡献,她本人则从来没有做过这样的声明。

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  • Since Einstein introduced special relativity, the theory and the special status it gives to the speed of light have appeared iron-clad.

    自从爱因斯坦提出狭义相对论以来,这个理论和其把特殊地位赋给了光速,已经铁证如山。

    youdao

  • That's doable in theory, because special relativity states that time slows down and distances shrink for travelers approaching light speed.

    这在理论上是可行的,应为按照狭义相对论,旅行者在接近光速时,时间会变慢,距离也会缩短。

    youdao

  • Special relativity has been passing tests with flying colors for over 100 years now. That is why this result is so surprising and unexpected.

    到现在为止,狭义相对论已经出色地通过了100多年的测试,这就是为什么OPERA的实验结果会如此地令人吃惊和使人感到意外。

    youdao

  • Albert Einstein’s original paper on special relativity, for example, had no references at all, even though it drew heavily on previous work.

    比如爱因斯坦关于相对论的原始论文就完全没有附上任何参考书目,尽管它也从 先前的著作中摘录甚多【使用了很多前人的工作】 。

    youdao

  • Albert Einstein's original paper on special relativity, for example, had no references at all, even though it drew heavily on previous work.

    例如,阿尔伯特·爱因斯坦的相对论原文根本无据可参,但文章还是大量引用早期作品中的论述。

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  • Then Einstein, with his special theory of relativity, looked at a whole set of symmetries of Maxwell's equations, which are called special relativity.

    接着爱因斯坦提出了狭义相对论—一种更简明的公式,它更体现了对称性。

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  • The field produced by the electric charge moving relatively to the rest system of reference is discussed from the viewpoint of Special relativity.

    根据狭义相对论,讨论相对于静止参照系运动的源电荷在空间产生的电场。

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  • According to the arrangement of s and s' systems, beginning with the two basic hypotheses of special relativity, Lorentz transformation is deduced strictly.

    并根据约定,从狭义相对论的两条基本假设出发,严格地推导出了洛伦兹变换式。

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  • It's a little known fact that Albert Einstein's famous work on special relativity was spurred by a thought experiment he conducted when he was only 16 years old.

    很少有人知道爱因斯坦著名的狭义相对论是受到他16岁时一个思想实验的启发。

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  • In this paper the author analyzes that Time Dilation Effect and Length Contraction Effect in special relativity have no relations with acceleration but velocity.

    分析了狭义相对论中的钟慢效应和尺缩效应只与速度有关而与加速度无关。

    youdao

  • In this paper the author analyzes that Time Dilation Effect and Length Contraction Effect in special relativity have no relations with acceleration but velocity.

    分析了狭义相对论中的钟慢效应和尺缩效应只与速度有关而与加速度无关。

    youdao

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