a) Find the capacitor voltage as a function of time and sketch its graph. b) Assume that ve(t) is periodic, calculate the average value and the rms value of the capacitor voltage.
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- In the circuit in the figure, the capacitance of each C1 capacitor is 5.7 μF, and the capacitance of each C2 capacitor is 3.8 μF. Part A: Calculate the equivalent capacity of the circuit between points a and b.Express your answer using two meaningful numbers.(Ceq=...F) Part B: Calculate the loads on the three capacitors closest to points a and b for Vab = 500 V.Express your answer using two meaningful numbers.(Q1=...V) Part C : Q2 (Q2=....V) Part D : The potential difference between a and b is given as 500 V, calculate Vcd.Express your answer using two meaningful numbers.( Vcd=......V)a variable dielectric capacitive sensor consists of 2 square plates, sides 5cm, separated by an air gap of 1 mm. A sheet of dielectric material 1 mm thick is slid between the plates. Given that the dielectric constant of air is 1 and that of the dielectric material is 4, calculate the capacitance of the transducer when the input displacement is (i) 0 (ii) 2.5 cm (iii) 5 cm solve giving detailed explanations using a formula and explain the different constants involved.Capacitor A was measured to have a capacitance of 80 nF. If the charge it could hold is 30 mC and the plates have a distance of 0.5 cm,(a) find the voltage that the capacitor was run through and(b) find the electric field between the plates.(c) If the circuit diagram below only used a capacitor with the same capacitance as capacitor A, find the total capacitance of the circuit