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Please solve the problem below. Please solve using matrix method. Thank you so much!!
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- Find the equivalent capacitance in the circuit above, where C=1 F. Group of answer choices 0.67 F 1.5 F 3.0 F 1.0 F 0.33 FCalculate the voltage Vi and the current Ii for the following two cases where the resistance is R1,2,3,=8, 2, and 3 Ω, Vo=82 VDetermine (a) the capacitance and (b) the maximum voltagethat can be applied to a Teflon-filled parallel-plate capacitorhaving a plate area of 175 cm2 and an insulation thickness of0.040 0 mm.
- In Figure at the right the ideal batteries have emfs ℰ1 = 6.00 V and ℰ2 = 10.0 V, the resistances are each 3.0 Ω, and the potential is defined to be zero at the grounded point of the circuit. What are potentials (a) V1 and (b) V2 at the indicated points?it says the answer is 14m/s=v on the computer but i cant get this answer, solution steps would be apperciated.Given a 10 uF capacitor and a 14 uF capacitor, what are all of the equivalentcapacitances that you can create by connecting them together?Now for each configuration that you have above, imagine that you connect 12V across the full circuit. What is the energy for the 10 uF and 14 uF capacitor in each configuration that you determined above?
- Considering the circuit below, determine the equivalent capacitance of the capacitorsFor each of the capacitors below, calculate the following:(a) The equivalent capacitance for this circuit. (b) The potential drop across each capacitor. (c)Thecharge stored in each capacitor. Here, ?1 = 10 ??, ?2 = 10??, ?3 = 10?? . (Hint: You don’t need to docomplicated math here).a) _______________b) _______________c) _______________For the circuit shown in the figure, R1 = 2552, R2 = 5052, R3 = 3352 R4 = 6052. Rs = 105, I1 = 376.6m.A, I2 = 335.1m A, and the batteries are ideal. Determine the battery voltage V2 (in V) Could you look at correct answer show all work
- Note: Need an answer in number 2 1. Three capacitors with individual capacitances of 2 μF, 5 μF, and 10 μF respectively are connected in series with a 12V battery. What are the total capacitance and total charge in the network? 2. Same capacitors in number 1 connected in the parallel. If the combined charged in the network is 50 μC, what are the total voltage and total capacitance in the network?Find the equivalent capacitance between points a and b in the combination of capacitors shown.2. Suppose the space between the plates of the capacitor in sample problems 2.6 item number 2 is filled with equal thickness of the same dielectrics but arranged as shown. What is its capacitance?