Consider the circuit in the figure and assume the battery has no internal resistance. Just after the switch is closed, what is the current in the battery? (a) 0 (b) ε/2R (c) 2ɛ/R (d) ɛ/R (e) impossible to determine (c) E + R www R

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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in this question, the answer should be C because wwe need to take the total voltage over the total resistance. However, for C to be the correct answer, that means we need to assume that the resistors are in parallel to calculate the total resistance. However, it appears to me that R1 is not parallel to R2 since they do not share the same two nodes? Can you explain why that is?
Consider the circuit in the figure and assume the battery
has no internal resistance. Just after the switch is closed,
what is the current in the battery?
(a) 0
(b) ε/2R
(c) 2ɛ/R
(d) ɛ/R
(e) impossible to determine
(c)
E
+
WWW
R
www
R
Transcribed Image Text:Consider the circuit in the figure and assume the battery has no internal resistance. Just after the switch is closed, what is the current in the battery? (a) 0 (b) ε/2R (c) 2ɛ/R (d) ɛ/R (e) impossible to determine (c) E + WWW R www R
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