A manual of practical medical electricity : the Röntgen rays and Finsen light . parallel, and thenthese two groups in series ; that would be equivalent toconnecting two cells, each five times as large as a singlecell, in series. The E. M. F. would therefore be that of twocells, viz., four volts, and the internal resistance that of oneohm divided by five + one ohm divided by five. Thus: E ^ 4 volts 4 o o = C. —^ =^ . r— = -T^ = 88 amperes. R-hr ? 0-05-I-0*2+ 0*2 ohms 0-45 Six cells so connected are shown in Fig. 34. A battery of a given number of cells will send the strongestcurrent through a g

GLIX-115-2AJ5WF3

A manual of practical medical electricity : the Röntgen rays and Finsen light . parallel, and thenthese two groups in series ; that would be equivalent toconnecting two cells, each five times as large as a singlecell, in series. The E. M. F. would therefore be that of twocells, viz., four volts, and the internal resistance that of oneohm divided by five + one ohm divided by five. Thus: E ^ 4 volts 4 o o = C. —^ =^ . r— = -T^ = 88 amperes. R-hr ? 0-05-I-0*2+ 0*2 ohms 0-45 Six cells so connected are shown in Fig. 34. A battery of a given number of cells will send the strongestcurrent through a g
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A manual of practical medical electricity : the Röntgen rays and Finsen light . parallel, and thenthese two groups in series ; that would be equivalent toconnecting two cells, each five times as large as a singlecell, in series. The E. M. F. would therefore be that of twocells, viz., four volts, and the internal resistance that of oneohm divided by five + one ohm divided by five. Thus: E ^ 4 volts 4 o o = C. —^ =^ . r— = -T^ = 88 amperes. R-hr ? 0-05-I-0*2+ 0*2 ohms 0-45 Six cells so connected are shown in Fig. 34. A battery of a given number of cells will send the strongestcurrent through a g

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