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Lorentz Transformation Leads to Invariance of the Difference between the Electric and Magnetic Field Intensity

Lorentz Transformation Leads to Invariance of the Difference between the Electric and Magnetic Field Intensity
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摘要 In course of a direct calculation we demonstrate the activity of parameters of the Lorentz transformation entering the original electric and magnetic field vectors E and H. The validity of the transformation is shown with the aid of the relation E <sup>2</sup>- H<sup>2</sup> = E'<sup>2</sup>- H'<sup>2 </sup>which holds for any suitable pair of the vectors E, H and E', H'. No special geometry of the vector pairs entering (E, H) and (E ', H') is assumed. The only limit applied in the paper concerns the velocity ratio betweeen v and c which should be smaller than unity. In course of a direct calculation we demonstrate the activity of parameters of the Lorentz transformation entering the original electric and magnetic field vectors E and H. The validity of the transformation is shown with the aid of the relation E <sup>2</sup>- H<sup>2</sup> = E'<sup>2</sup>- H'<sup>2 </sup>which holds for any suitable pair of the vectors E, H and E', H'. No special geometry of the vector pairs entering (E, H) and (E ', H') is assumed. The only limit applied in the paper concerns the velocity ratio betweeen v and c which should be smaller than unity.
作者 Stanislaw Olszewski Stanislaw Olszewski(Institute of Physical Chemistry, Polish Academy of Sciences, Warsaw, Poland)
出处 《Journal of Modern Physics》 CAS 2022年第8期1212-1215,共4页 现代物理(英文)
关键词 Electric and Magnetic Intensity Pairs v Denotes the Velocity Ratio be-tween Two Vector Systems Electric and Magnetic Intensity Pairs v Denotes the Velocity Ratio be-tween Two Vector Systems
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