月球激光测距计划的数据与爱因斯坦的天才时空理论相矛盾

H. Deyssenroth
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引用次数: 0

摘要

当火车高速行驶时,从静止的火车底部指向车顶某一点的激光束会发生什么?梁还是会碰到这个点,还是会碰到这个点后面的天花板?在1900年左右,科学家们确信光子在运动方向上有横向动量,因为它们是粒子。但R. Feynman得出结论,镜子会发射新的光子,因此是光源,再加上爱因斯坦的第二个str假设,激光束应该在这一点后面击中天花板。这可以用月球上镜子反射的光子的返回率来测试。结果清楚地表明,光子没有得到横向动量,而是到达了2.55秒前地球所在的位置,误差概率< 10-80。除了探测到宇宙中地球的额外速度外,这篇文章还证明了爱因斯坦的几何时空思想是错误的,因为它的物理基础是错误的
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The Data from the Lunar Laser Ranging Project Contradict Einstein’s Genius Spacetime Idea
What happens to a laser beam that points from the bottom of a train (at rest) to a point in the ceiling when the train is moving very fast. Will the beam still hit this point, or will it hit the ceiling behind this point? In the years around 1900 scientists were convinced that photons get a lateral momentum in the direction of movement, because they are particles. But R. Feynman concluded that a mirror emits new photons and is therefore a light source and together with Einstein’s second STR-postulate the laser beam should hit the ceiling behind this point. This can be tested with the return rates of photons from a mirror on the Moon. The results show clearly with an error of probability < 10-80 that photons do not get a lateral momentum but arrive at that location where the Earth was 2.55 seconds before. Besides the detection of an additional velocity of Earth in the Universe this article proves that Einstein’s geometric spacetime idea is wrong because the physical basis for that is wrong
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