AP Free Response Question
2006 C2 E&M
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The circuit below contains a capacitor of capacitance
C
, a power supply of emf
, two resistors of resistances
R
1
and
R
2
, and two switches,
S
1
and
S
2
.
Initially, the capacitor is uncharged and both switches are open. Switch S
1
then gets closed at time t = 0.
(a) Write a differential equation that can be solved to obtain the charge on the capacitor as a function of time
t
.
(b) Solve the differential equation in part (a) to determine the charge on the capacitor as a function of time
t
.
Numerical values for the components are given as follows:
= 12 V
C = 0.060 F
R
1
= R
2
= 4700
(c) Determine the time at which the capacitor has a voltage 4.0 V across it.
After switch S
1
has been closed for a long time, switch S
2
gets closed at a new time t = 0.
(d) On the axes below, sketch graphs of the current I
1
in R
1
versus time and of the current I
2
in R
2
versus time, beginning when switch S
2
is closed at new time t = 0. Clearly label which graph is I
1
and which is I
2
.
Topic Formulas
Description
Published Formula
Ampere's Law
Biot-Savat Law
capacitance
capacitance (dielectric)
capacitors in parallel
capacitors in series
Coulomb's Law
current density
electric current
electric field
electric field strength
electric potential energy
energy stored in a capacitor
energy stored in an inductor
Faraday's Law
force ona current-carrying wire
Gauss' Law
induced emf (inductor)
induced emf (magnetism)
Joule's Law
magnetic field around a current-carrying wire
magnetic field of a solenoid
magnetic flux
magnetic force on a moving charge
motional emf
Ohm's Law
potential due to a collection of point charges
resistance in parallel
resistance in series
resistivity
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