• 阿尔伯特·爱因斯坦1905年预测到了一点,当时狭义相对论引入相对时间概念

    Albert Einstein predicted this in 1905, when he introduced the concept of relative time as part of his special theory of relativity.

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  • 似乎违背了爱因斯坦狭义相对论

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

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  • 狭义相对论物理极限相关

    Special relativity deals with physical extremes.

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  • 物理学不得不修改狭义相对论吗?

    Will Physicists Have to Rewrite The Special Theory of Relativity?

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  • 狭义相对论推导解析,大家讨论

    I deduce and analyze to the special theory of Relativity and discuss with everyone!

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  • 根据爱因斯坦狭义相对论当然不可能

    According to Albert Einstein's special theory of relativity, this is impossible.

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  • 狭义相对论光速爱因斯坦运动物体观测

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

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  • 我们能否绕过爱因斯坦狭义相对论理论使得移动速度超越光速

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

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  • 麦克斯韦方程组矢量形式重新表示,利用狭义相对论你的对称性

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

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  • 接着爱因斯坦提出狭义相对论一种更简明公式体现了对称性。

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

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  • 根据狭义相对论如果有什么东西光速旅行得更快就会时间向后推移。

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

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  • 首先发布狭义相对论,它的基础对于任何一个人来说光速恒定不变的。

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

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  • 很少有人知道爱因斯坦著名狭义相对论受到16一个思想实验的启发。

    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.

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  • 自从爱因斯坦提出狭义相对论以来,这个理论其把特殊地位了光速,已经铁证如山。

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

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  • 此外简要介绍相对论动力学及其成就这些成就也是狭义相对论检验

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

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  • 不会无聊整天研究哲学讨论狭义相对论人类能否移居火星过分担忧

    But it will not be bored to the study of philosophical discussion of the day special theory of relativity or the human ability to settle on Mars and be too worried.

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  • 理论上可行的,应为按照狭义相对论旅行者在接近光速,时间会变慢,距离也会缩短

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

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  • 结论支持狭义相对论基本原理并且低速近似下,自然回归经典物理公式

    The conclusion supports the basic principle of the special theory of relativity, and regresses to the formula of classical theory naturally in low speed approximation.

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  • 首次麦斯威尔爱因斯坦狭义相对论中描述。现代物理学基本上依赖光速被超越这一假设

    Outlined first by James Clerk Maxwell and then by Albert Einstein in his theory of special relativity, much of modern physics relies on the idea that nothing can travel faster than light.

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  • 尽管有人猜测可能狭义相对论有未被承认贡献本人从来没有做过这样声明

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

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  • 爱因斯坦曾经幻想宇宙中乘着一道光线飞驰,这个思想实验狭义相对论奠定了基础。

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

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  • 爱因斯坦曾经理想宇宙中乘着一道光芒飞奔,这个头脑实行狭义相对论奠基了底子。

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

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  • 1905年,爱因斯坦研究狭义相对论时所用唯一一部计算机就是装在脑袋里的部。

    THE ONLY COMPUTER that Einstein used to work out his special theory of relativity in 1905 was the one inside his skull.

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  • EPR实验迫使我们修改物理学基础建立统一狭义相对论量子力学理论

    EPR experiments require us to revise the foundation of physics, i. e. to establish a new theory to reconcile SR and QM.

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  • 迄今为止,我们谈论一直狭义相对论这种理论适用于速度不变的情况下移动物体

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

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  • 大多数介绍狭义相对论文章中,导出变换公式的依据都是相对性原理光速不变原理。

    In this paper, authors present a derivation of the Lorents transformation by invoking the principle of relativity alone, without the principle of invariance of light speed.

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  • 本文首先加速度进行了狭义相对论变换然后研究了加速度和力在不同惯性坐标系中的性质

    We, in this paper, first of all, transformed acceleration and force of special relativity, then further studied acceleration and force property under different inertial ordinate system.

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  • 本文首先加速度进行了狭义相对论变换然后研究了加速度和力在不同惯性坐标系中的性质

    We, in this paper, first of all, transformed acceleration and force of special relativity, then further studied acceleration and force property under different inertial ordinate system.

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