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Precession of the Orbit of Mercury

机译:汞轨道轨道

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The influence of the planets of the Solar System on the precession of the orbit of Mercury is investigated in the framework of classical mechanics. The influence of each planet on the motion of Mercury is calculated in the context of a restricted problem of three bodies: the Sun, the planet in question, and Mercury. It is demonstrated that the average shift of the perihelion of the orbit of Mercury determined in the context of a planar circular restricted three-body problem is 556.5 '' per century and agrees with the observed shift (570 '') with a relative accuracy of 2.5%. It is also demonstrated that the observed perihelion shift of Mercury features oscillatory components with a total amplitude up to 20 '' and periods from several years to several decades. Owing to the presence of these components, the perihelion shift rate calculated based on observations conducted for several tens or even hundreds of years may differ considerably from the true average rate. This is likely the reason why the calculated average perihelion shift rate is not completely consistent with observational data.
机译:在经典力学框架中,研究了太阳系的行星对汞轨道轨道的动态的影响。每个行星对汞运动的影响是在三个身体的限制问题的背景下计算的:太阳,有问题的星球和汞。结果证明,在平面循环限制的三体问题的背景下确定的汞轨道轨道的平均转变为每世纪556.5'',并同意观察到的班次(570'')具有相对准确性的2.5%。还表明,汞的观察到的季节性偏移具有振荡组件,总幅度高达20''和几十年的时间。由于这些组分的存在,基于几十个或甚至数百年进行的观察结果计算的季度升降率可能与真正的平均速率大大不同。这可能是为什么计算的平均临时移位率与观察数据完全一致的原因。

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    《Doklady. Physics》 |2019年第12期|共5页
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  • 正文语种 eng
  • 中图分类 物理学;
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  • 入库时间 2022-08-20 08:25:08

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