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- A capacitor with capacitance 5.75 μF is connected to a(n) 5.75-V battery. (a) Find the charge on the capacitor in coulombs. 3.30-5 С (b) What voltage battery would be required to store 8.00 x 10-5 C on the capacitor? 6.95 X Your response differs from the correct answer by more than 10%. Double check your calculations. VSOIve 1. Three capacitors with individual capacitance of 2 µF, 5 µF, and 10 pF respectively are connected in series with a 12V battery. What are the total capacitance and total charge in the network? Note: series po ito so be careful sa kung anung formula ang gagamitin niu. answer for total capacitance should be 1.25µF.. for the total charge just multiply it with the voltage. 2. Same capacitors in number 1 connected in a parallel. What will be the total capacitance in the network? If the combined charge in the network is 50 µC, what is the total voltage? For the total capacitance, use the formula for parallel capacitors whereas for the total voltage, use 50 µC as the value of Qt in order to solve for the unknown which is V. Total voltage should be approx. 2.9x10-6 (or 2.9 µC)Check Your Understanding How would the strategy change to calculate the at a point a distance z above of the finite line segment?
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- A 0.052-farad capacitor is discharging through a 100-ohm resistor. Calculate the current through the circuit, in amperes, after 346 ms if the initial current is 1.00 A. Use three decimals in your answer.In an integrated circuit, a capacitor is formed by growing silicon dioxide layer of thickness 1 [um] with E,-4 over the conducting silicon substrate and covering it with a metal electrode with area S. Determine the size of the capacitor if a capacitance of 2 [nF] is needed. -Use numbers when answering, rouding to the hundredths in the format 0.00 -Input your answers in units of [cm²] X 5.65Ex. 60 : A potentiometer wire of length 10 m and resistance 9 Q is connected to a battery of e,m.f. 2.1 volt having internal resistance 1.5 Find the potential gradient along the length of wire and the balancing lengih for a cell of e.m.f. 1.08 volt.