belos no aj toe art sriw na nolaiveled isbigys 18. The switch has been in position a for a long time. it is changed to position b at leani t=0 s. What are the charge Q on the capacitor and the current I through the resistor immediately after the switch is closed? [ANS: 180 mA] 9.0 V Isbom sin a beilgyt 2.0 μF b 58 550 Ω 9763

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how would u do question 18? this is a non 

17. What potential difference would be required across the same two capacitors connected in series in order for the
combination to store the same energy as in the first part? [ANS: 395.5 V.]
(1/18 + 1/2.8) = 2.423 MF 0.18954=2.423110% (1)²
9.0 V
251 od betennoo ei tee eri meri N=1 al tea noizivele atin
18. The switch has been in position a for a long time. it is changed to position b at lead
t = 0 s. What are the charge Q on the capacitor and the current I through the
resistor immediately after the switch is closed? [ANS: 180 mA] D
MAL
jods even
fu 25m
Nus
el
19. Find the current through and the potential difference across each resistor.
[ANS: ????]
Isoigy a beilton
a b
24 V
ww
ne 4.0 medi
8.0 Ω
2.0 μF
ww
6.0
o 9768
24 Ω
24 Ω
50 Ω
ww
Transcribed Image Text:17. What potential difference would be required across the same two capacitors connected in series in order for the combination to store the same energy as in the first part? [ANS: 395.5 V.] (1/18 + 1/2.8) = 2.423 MF 0.18954=2.423110% (1)² 9.0 V 251 od betennoo ei tee eri meri N=1 al tea noizivele atin 18. The switch has been in position a for a long time. it is changed to position b at lead t = 0 s. What are the charge Q on the capacitor and the current I through the resistor immediately after the switch is closed? [ANS: 180 mA] D MAL jods even fu 25m Nus el 19. Find the current through and the potential difference across each resistor. [ANS: ????] Isoigy a beilton a b 24 V ww ne 4.0 medi 8.0 Ω 2.0 μF ww 6.0 o 9768 24 Ω 24 Ω 50 Ω ww
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