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" The strength of the current is equal to the electro-motive force divided by the resistance... "
A Text-book on Chemistry: For the Use of Schools and Colleges - Seite 133
von John William Draper - 1852 - 417 Seiten
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Annual Report of the Board of Regents of the Smithsonian Institution

Smithsonian Institution. Board of Regents - 1896 - 968 Seiten
...the resistance in ohms, and the current in amperes, the law is expressed very simply by saying that the "current is equal to the electro-motive force divided by the resistance." Thus, if the electro-motive force be 1 volt and the resistance of the circuit be 1 ohm the current...
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The Atlantic Monthly, Band 73

1894 - 926 Seiten
...the resistance in ohms, and the current in amperes, the law is expressed very simply by saying that the " current is equal to the electro-motive force divided by the resistance." Thus, if the electro-motive force be one volt, and the resistance of the circuit be one ohm, the current...
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Harvey's Electrical Code Field Guide

Harvey N. Holzman - 2005 - 186 Seiten
...force (voltage), and resistance in an electric circuit is expressed in Ohm's Law: The rate of flow of the current is equal to the electromotive force divided by the resistance. The formulas are: or / = § or R=y r? I Where: / = Current = Amperes (A) E = Voltage = Volts (V) R...
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Nature, Band 16

Sir Norman Lockyer - 1877 - 598 Seiten
...theoretical division " is not concise the following quotation will suffice to show .- — "The strength of the current is equal to the electromotive force divided by the resistance ; this is known as Ohm's law ; it is directly proportional to the electromotive force, and inversely...
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The Dental Review, Band 3

1883 - 598 Seiten
...electric force to a system, laid down this celebrated law which bears his name, that — " The strength of the current is equal to the electromotive force divided by the resistance," and it is thus expressed C"=-. The AMP£RE, or Weber (io-1 CGS units of current), is the practical...
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THE OPERATION, CARE AND REPAIR OF AUTOMOBILES

ALBERT L. GLOUGH - 1910 - 390 Seiten
...resistance of the circuit. In other words, if all three factors are expressed in units of the same system, the current is equal to the electromotive force divided by the resistance. Ohm's law is generally written as follows: EMF Current = Resistance. There are two variations of this...
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The Cleveland Medical and Surgical Reporter, Band 14

1906 - 692 Seiten
...expressed by the formula : IE (electro-motive force). C (current) = - • [R (resistance). or that the current is equal to the electro-motive force divided by the resistance. The human skin offers quite a high resistance to the passage of electricity but is not the same on...
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North Carolina Medical Journal, Bände 31-32

1893 - 628 Seiten
...But if what I have said has been made at all comprehensive, it will be no effort to understand that the current is equal to the electro-motive force divided by the resistance, or, as it is often E written, C=TT which is Ohm's law. (We will take into consideration the different...
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The Atlantic Monthly, Band 73

1894 - 908 Seiten
...the resistance in ohms, and the current in amperes, the law is expressed very simply by saying that the " current is equal to the electro-motive force divided by the resistance." Thus, if the electro-motive force be one volt, and the resistance of the circuit be one ohm, the current...
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