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Velocity and absurdity in modern physics

机译:现代物理中的速度和荒谬

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When physicists write the variable v, they usually mean the velocity of an object in an inertial coordinate system, otherwise known as a reference frame. This is the most common velocity concept in modern physics. The velocity of an object in this sense depends on which inertial coordinate system one is working with. For example, an airplane in flight has a velocity of about 500 miles per hour in a coordinate system anchored in a nearby mountain, a velocity of more than 60 000 miles per hour in a coordinate system anchored in the sun, and a velocity of 0 in a coordinate system anchored in the airplane itself. The widely accepted idea that the ticking rate of a clock is a function of this type of clock velocity is absurd. It implies that a human analyst can control the ticking rates of physical clocks through the mental act of selecting a coordinate system. This is a nonsensical mingling of imagination with reality that is akin to believing that a movie character can jump out of your television set and take a seat in your living room. Despite this absurdity, the idea that a clock's ticking rate depends on its velocity in an inertial coordinate system is a staple of modern physics. It is a pillar of Einstein's special theory of relativity. It is central to the standard analysis of the so-called twin paradox. It underlies the predictions of Hafele and Keating concerning the ticking rates of clocks that travel in airplanes. Velocity absurdity of this sort flourishes today, and it may well continue to flourish for many years to come. (C) 2020 Physics Essays Publication.
机译:当物理学家编写变量v时,它们通常意味着惯性坐标系中的对象的速度,否则称为参考帧。这是现代物理中最常见的速度概念。此意义上的对象的速度取决于哪个惯性坐标系正在使用。例如,飞行中的飞机在坐在附近的山区锚定的坐标系中每小时大约500英里的速度,在阳光下锚定的坐标系中每小时60 000英里的速度,以及0的速度在飞机本身锚定的坐标系中。广泛接受的想法是,时钟的滴答率是这种类型的时钟速度的函数是荒谬的。它意味着人类分析师可以通过选择坐标系的心理行为来控制物理时钟的滴答度速率。这是一种荒谬的想象力与现实的想象力,类似于相信电影角色可以跳出电视机并坐在你的客厅里。尽管这种荒谬,时钟滴答度率取决于惯性坐标系中的速度是现代物理学的一系列的想法。这是爱因斯坦特殊的相对论理论的支柱。它是所谓的双悖论的标准分析的核心。它提出了关于在飞机中旅行的时钟的滴定率的Hafele和Keating的预测。今天这种排序的速度荒谬蓬勃发展,很多年都可能会蓬勃发展。 (c)2020物理散文出版物。

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