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Mach’s Principle of Inertia Is Supported by Recent Astronomical Evidence

机译:马赫惯性原理得到最近天文学证据的支持

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Inertial mass is detected on Earth only when matter is accelerated or decelerated. Recently evidence has been reported for a low-level velocity oscillation with a period of 39 ± 1 Mpc (127 ± 3 Myr) superimposed on the Hubble flow. Like the Hubble flow, this oscillation is assumed to be an expansion and contraction of space itself. If space is oscillating as it expands and the Hubble flow contains a superimposed velocity ripple, matter on Earth will experience alternating accelerations and decelerations relative to the rest of the matter in the Universe. The acceleration curve can be obtained from the velocity oscillation curve simply by taking the magnitude of the derivative of the velocity curve and the acceleration curve is found here to have a period of 63.5 ± 1.5 Myr. Evidence has also been claimed recently for a ubiquitous ~62 ± 3 Myr periodic fluctuation superimposed on general trends in the fossil biodiversity on Earth. The periods of the acceleration curve oscillation and fossil biodiversity fluctuations are thus identical within the errors. A second, weaker fluctuation is also detected in both the Hubble flow and fossil biodiversity trends. They too have identical periods of ~140 Myr. From this excellent agreement, it is argued here that it is the oscillation in the Hubble flow, through an inertia-like phenomenon involving all the matter in the universe that has produced the fluctuations in the fossil biodiversity on Earth. This may represent the first instance where observational evidence supporting Mach’s Principle of Inertia has been found.
机译:仅当物质加速或减速时,才在地球上检测到惯性质量。最近的证据表明,在哈勃流上叠加了39±1 Mpc(127±3 Myr)周期的低水平速度振荡。像哈勃流一样,这种振荡被认为是空间本身的膨胀和收缩。如果空间随着扩展而振荡,并且哈勃流包含叠加的速度脉动,那么地球上的物质将相对于宇宙中其余物质经历交替的加速和减速。仅通过取速度曲线的导数的大小就可以从速度振荡曲线获得加速度曲线,并且这里发现加速度曲线的周期为63.5±1.5Myr。最近也有证据表明,普遍存在的〜62±3 Myr周期性波动叠加在地球上化石生物多样性的总体趋势上。因此,在误差范围内,加速曲线振荡和化石生物多样性波动的周期是相同的。在哈勃流量和化石生物多样性趋势中也发现了第二个较小的波动。它们也具有相同的〜140 Myr周期。根据这一极好的协议,在这里论证的是哈勃流的振荡,是由于涉及宇宙中所有物质的类似惯性的现象在地球上产生了化石生物多样性的波动。这可能是首次发现支持马赫惯性原理的观察证据。

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