At t = 0, the open switch in Figure P31.46 is thrown closed. We wish to find a symbolic expression for the current in the inductor for time t> 0. Let this current be called i and choose it to be downward in the inductor in Figure P31.46. Identify i, as the current to the right through R, and iz as the current downward through R. (a) Use Kirchhoff's junction rule to find a relation among the three currents. (b) Use Kirchhoff's loop rule around the left loop to find another relationship. (c) Use Kirchhoff's loop rule around the outer loop to find a third relationship. (d) Eliminate i, and i, among the three equations to find an equation involving only the current i. (e) Compare the equation in part (d) with Equation 31.6 in the text. Use this comparison R Figure P31.46 to rewrite Equation 31.7 in the text for the situation in this problem and show that i(t) R, where R' = R,R,/(R, + R,).

College Physics
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ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
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At t = 0, the open switch in Figure P31.46 is thrown closed.
We wish to find a symbolic expression for the current in
the inductor for time t> 0. Let this current be called i and
choose it to be downward in the inductor in Figure P31.46.
Identify i, as the current to the right through R, and iz
as the current downward through R. (a) Use Kirchhoff's
junction rule to find a relation among the three currents.
(b) Use Kirchhoff's loop rule around the left loop to find
another relationship. (c) Use Kirchhoff's loop rule around
the outer loop to find a third relationship. (d) Eliminate
i, and i, among the three equations to find an equation
involving only the current i. (e) Compare the equation in
part (d) with Equation 31.6 in the text. Use this comparison
R
Figure P31.46
to rewrite Equation 31.7 in the text for the situation in this
problem and show that
i(t)
R,
where R' = R,R,/(R, + R,).
Transcribed Image Text:At t = 0, the open switch in Figure P31.46 is thrown closed. We wish to find a symbolic expression for the current in the inductor for time t> 0. Let this current be called i and choose it to be downward in the inductor in Figure P31.46. Identify i, as the current to the right through R, and iz as the current downward through R. (a) Use Kirchhoff's junction rule to find a relation among the three currents. (b) Use Kirchhoff's loop rule around the left loop to find another relationship. (c) Use Kirchhoff's loop rule around the outer loop to find a third relationship. (d) Eliminate i, and i, among the three equations to find an equation involving only the current i. (e) Compare the equation in part (d) with Equation 31.6 in the text. Use this comparison R Figure P31.46 to rewrite Equation 31.7 in the text for the situation in this problem and show that i(t) R, where R' = R,R,/(R, + R,).
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