Solving Circuits: Fig. 27-65 Analysis

  • Thread starter Thread starter KTiaam
  • Start date Start date
  • Tags Tags
    Analysis Circuits
Join the discussion
Ask a follow-up here, or get your own question answered by working scientists, mathematicians and engineers — people, not an autocomplete.
Real named experts · corrections over time · the nuance an AI answer skips
1 reply · 7K views
KTiaam
Messages
53
Reaction score
1

Homework Statement

In the circuit of Fig. 27-65, = 1.2 kV, C = 6.5 μF, R1 = R2 = R3 = 0.73 MΩ. With C completely uncharged, switch S is suddenly closed (at t 0). At t = 0, what are (a) current i1 in resistor 1, (b) current i2 in resistor 2, and (c) current i3 in resistor 3? At t = ∞ (that is, after many time constants), what are (d) i1, (e) i2, and (f) i3? What is the potential difference V2 across resistor 2 at (g) t = 0 and (h) t = ∞? (i) Sketch V2 versus t between these two extreme times.

The Attempt at a Solution


i have loop equations down as:
i1 = i2 + i3
E - i1R -i2R = 0
i2R - i3Ri don't understand how they get the answer
i1 = 2/3(v/r)

Ive also attached the steps shown from the solution manual:
thanks for all you help
 

Attachments

  • Screen Shot 2014-04-20 at 11.57.12 AM.png
    Screen Shot 2014-04-20 at 11.57.12 AM.png
    18.6 KB · Views: 1,683
  • Screen Shot 2014-04-20 at 12.06.15 PM.png
    Screen Shot 2014-04-20 at 12.06.15 PM.png
    11 KB · Views: 1,678
  • Like
Likes   Reactions: ilker29
Physics news on Phys.org
I don't know why they went so far as to solve simultaneous equations for this problem. Really, since the at the times of interest the capacitor either looks like a short circuit or an open circuit, the result is a simple voltage dividers to find the potential at the switch. With that potential in hand the currents in the resistors is straightforward Ohm's law.

If you take the voltage divider approach you should find their expression for i1 quite easily.