Part A Two capacitor plates with area A are separated by a distance d. The space between the plates is filled with diele

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Part A Two capacitor plates with area A are separated by a distance d. The space between the plates is filled with diele

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Part A Two Capacitor Plates With Area A Are Separated By A Distance D The Space Between The Plates Is Filled With Diele 1
Part A Two Capacitor Plates With Area A Are Separated By A Distance D The Space Between The Plates Is Filled With Diele 1 (87.54 KiB) Viewed 16 times
Part A Two capacitor plates with area A are separated by a distance d. The space between the plates is filled with dielectric material with dielectric constant K and resistivity p. This capacitor is attached to a battery that supplies a constant potential E, as shown in (Figure 1) and is fully charged. At time t = 0 the switch S is opened. Owing to the nonzero value of r, this capacitor discharges by leaking. We can model this device as a capacitor and a resistor in parallel Analyze this circuit and determine the time constant, characterizing the discharge in terms of the parameters given above. Now assume the capacitor has plates with area 5.00 cm² separated by a distance 60.0 um and is filled with a ceramic of dielectric constant 8.20 and resistivity 3.10 1011 22.m. Express your answer with the appropriate units. 20 IF HA ho ? TE Value Units Submit Request Answer Part B If € = 5.00 V, what is the charge on the capacitor at t = 0? Express your answer with the appropriate units. HA ? Figure < 1 of 1 Qo = Value Units Submit Request Answer S А E Part C d At what time will the capacitor have half of its original charge? Express your answer with the appropriate units. Dielectric fill, constant K. resistivity p HA ? ? t = Value Units
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