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- Fill in all the missing values. Refer to the formulas that follow. Resistance Capacitance Time constant Total time 150 k 100 F 350 k 35 s 350 pF 10 s 0.05 F 1.2 M 0.47 F 12F 0.05 s 86 k 1.5 s 120 k 470 pF 250 nF 100 ms 8 F 150 s 100 k 150 ms 33 k 4 F =RCR=CC=R Totaltime=5Circuits 1 HW 7 Q6What is the total equivalent (total) inductance Lr of this circuit? 000 30mH L2 R 000 60mH 1 kQ 10 V L3 100mH 000 500mH 43 mH 720 mH O 173 mH o 日 点四RUA 36% DE 40°F PriSc Impr. Écr. F12 F10 F11 F7 F8 F9 F4 F5 F6 * & 3 0 1/4 1/2 4. 5 6. 7 8 2 R Y K L
- Find the charge across the capacitor C3 CT C3 E 50μ | 80μF 100μ F 150V O 15000 µC O 15000C 15 μC O NONE9. Find the total capacitance across A and B. C210 µF C3 10 µF C1 12 µF C5 15 µF C4 15 µF 20 µF C21 C1 10 µF C3 10 uF A- 12 µF 30LF C5 15 pF C4 15 µF B-Find equivalent capacitance for the following: a) C1 AHHHH C2 C3 C4 1µF 2µF 3uF 4µF b) C5 C9 1pF C6 2µF C10 3µF C7 4uF C11 5uF C8 6uF C12 A 7uF 8uF C29 с30 С35 C36 С37 С38 HHHH A С39 C32 42µF 42µF 1µF 2uF 3µF 4uF SuF 10μF C40 C31 C33 6pF 9uF C41 C34 ZuF 10μF C42 C43 8pF 8pF B. HHHHH
- A circuit consists of a battery with an EMF of 2.5 V and three capacitors in parallel, where C₁ = 2.0 μF, C₂ =4.0 μF, and C3 = 6.0 μF. What charge is stored in the capacitors? Ο 2.7 μ C Ο 10 μ C Ο 15 μC Ο 30μ C Ο 5.0 μ C Parallel Connection Q2 Q3 + C₁ C₂ C3 HH VConsider the circuit below. The frequency of oscillation is: www OF R₂ 1,0 ΚΩ C₁ 0.015 μF R₁ 1.0 ΚΩ 11 L Q₁ 2N5458 C₂ 0.015 μF 10.6 kHz 1.94 kHz 19.4 kHz 15.9 kHz www R₁ 10 ΚΩ R3 820 02 ww R₁ 10 ΚΩ ovour D₁ IN914 C3 1.0 μεCalculate the voltage at 1.5¹ (milliseconds) for the following RC Circuit. Assume switch is closed and capacitor is in a charge state. t=0 LE -10 V oto R1 1kQ C1 1uF
- Find the charge across the capacitor C3 CT C1 C2 C; E- 25μF 90μF 60μ 200V Ο 12 μC O 12mC O 1200mC O NONEFind the total capacitance for all 5 circuits. Do not forget units. C21 C1 1µF 1µF C3 C4 C5 1µF 1µF 1µF C6 C7 C2 1µF 1µF 1µF Figure 2 C8 Figure 1 1µF Figure 3 HE HE HE HE HH2MF Ci -4μF 24v 2μF 1. TOTAL CAPACITANCE = 2. TOTAL CHARGE = 3. TOTAL VOLTAGE 4. TOTAL ENERGY - s. 1 Q3 = 2 Cz 2mF C4 2mF -||06 4μF