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- W1867838254 abstract "An effective means of incorporating the time dilation effect into relativity theory is toassume that the unit of time is directly proportional to γ (u) = (1-u 2 /c 2 ) -0.5 on an object such asa light source that has been accelerated to speed u relative to the laboratory. In recent work ithas been shown that a similar theoretical approach can be applied to other physical quantitiessuch as length and inertial mass, and as a result, to all other mechanical properties in the mkssystem. This concept of uniform scaling can also be applied successfully for gravitationalinteractions. The question as to how the units of electromagnetic quantities such as electriccharge and magnetic induction change with both acceleration and varying position in agravitational field is therefore of considerable interest. Since the unit of electric charge can bechosen independently of the value of the permittivity of free space e 0 , it is shown that allelectromagnetic quantities can also be assigned units directly in the mks system, therebymaking it a trivial matter to deduce their kinetic and gravitational scaling behavior. Forexample, the unit of electric charge can be 1 J as long as e 0 has units of 1 N. A table is given that makes a comprehensive comparison of the standard units in the Giorgi system with thosein two such direct mks schemes. A simple procedure is also described for changing thenumerical values of the units in a systematic manner by dividing the various electromagneticquantities into five distinct classes. This allows one to equate the value of e 0 to 1/4π, forexample, similarly as for the Gaussian system of units, while still retaining the same formulasas in the Giorgi system." @default.
- W1867838254 created "2016-06-24" @default.
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- W1867838254 date "2018-01-22" @default.
- W1867838254 modified "2023-09-23" @default.
- W1867838254 title "The Kinetic and Gravitational Scaling of the Units of Electricity and Magnetism" @default.
- W1867838254 hasPublicationYear "2018" @default.
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