The capacitive network shown in the figure is assembled with initially uncharged capacitors. A potential difference, Vab = +100V, is applied across the network. The switch S in the network is initially open but is then closed. Assume that all the capacitances shown are accurate to two significant figures. What is the equivalent capacitance between ab a) With the switch S open? b) With the switch S closed? A) (a) 14 micro-Farad; (b) 17 micro-Farad B) (a) 11 micro-Farad; (b) 17 micro-Farad
The capacitive network shown in the figure is assembled with initially uncharged capacitors. A potential difference, Vab = +100V, is applied across the network. The switch S in the network is initially open but is then closed. Assume that all the capacitances shown are accurate to two significant figures. What is the equivalent capacitance between ab a) With the switch S open? b) With the switch S closed? A) (a) 14 micro-Farad; (b) 17 micro-Farad B) (a) 11 micro-Farad; (b) 17 micro-Farad
Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter15: Fluids
Section: Chapter Questions
Problem 1PQ
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The capacitive network shown in the figure is assembled with initially uncharged capacitors. A potential difference, Vab = +100V, is applied across the network. The switch S in the network is initially open but is then closed. Assume that all the capacitances shown are accurate to two significant figures. What is the equivalent capacitance between ab
a) With the switch S open?
b) With the switch S closed?
A) (a) 14 micro-Farad; (b) 17 micro-Farad
B) (a) 11 micro-Farad; (b) 17 micro-Farad
C) (a) 8 micro-Farad; (b) 71 micro-Farad
D) (a) 99 micro-Farad; (b) 67 micro-Farad
E) (a) 4 micro-Farad; (b) 7 micro-Farad
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