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DC CONDITION ( NEED ONLY HANDWRITTEN SOLUTION PLEASE OTHERWISE DOWNVOTE).
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- Inductive Circuits Fill in all the missing values. Refer to the following formulas: XL=2fLL=XL2ff=XL2L Inductance (H) Frequency (Hz) Inductive Reactance ( ) 1.2 60 0.085 213.628 1000 4712.389 0.65 600 3.6 678.584 25 411.459 0.5 60 0.85 6408.849 20 201.062 0.45 400 4.8 2412.743 1000 40.841A capacitor uses air as a dielectric and has a capacitance of 3 F. A dielectric material is inserted between the plates without changing the spacing, and the capacitance becomes 15 F. What is the dielectric constant of this material?What is the value of the induced voltage of the self-inductance when the rate of current is from 200 uA to 20 uA and the total time interval is 5 uS?
- If C=47 microF Rl=1kohm Vs=90 cos2000t V, what is the diode current during the one-time charging time of the capacitance? reply:-8:39 sin(2000t-0.37 degrees) A-9:39 sin(2000t-0.30 degrees) A-7:49 sin(2000t-0.63 degrees) A-7:39 sin(2000t-0.53 degrees) A-8:49 sin(2000t- 0.60 degrees) Aone of the answers.(VD₂ = Determine the voltage across each capacitor in the circuit figure below. 0.68 V, VD₂ 0.56 V) = 240 V rms 50 Hz 1:1 ooooo elele C₁ H 1μF D₁ HE D₂ .C₂ 1 μF| - PHY196 24- A 3-nF capacitor with a 12-uC charge on it is discharged through a 3-kO resistor. What is the current after 9 us? O A) 0.39 A B) 0.19 A C) 0.49 A D) 0.59 A O E) 0.29 A
- Through a capacitor of capacitance 15 micro-farad with a frequency of 50 hz. Compute its reactance 212 ohms O 4,712 ohms O 0.0047 ohm O 0.0002 ohm58. || What are the charge on and the potential difference across each capacitor in FIGURE P26.58? + 9 V HE C₁ = 5 μF C₂ = 15 μF C3 = 30 μF FIGURE P26.58 + 12 V C FIGURE P26.59 с a CA 4.7 Micro-Farad capacitor is in series with a 470 K-Ohm resistor with a 12V power supply. How long will it take for the capacitor to fully charge? OA 4.7 sec O B. Cannot be determined O.11 sec O D.470 ms O E. very quickly, it cannot be seen
- -Prove that in Maxwell bridge can be used to measure inductanceby either with a variable Comparison Standard self-inductance or with Standard variable capacitance Ru= d R₂ R3 R. Lu= R₂R₂ C R₂ A R3 Lu152130 222 Ⓒ520° Fj² 7 Find voltage drop Mutual inductance Majt = + {1.2 V. on 12 resistance Nex (the same for all10 V sine 90 kHz 1 kQ C1 1 nF 2. Using a Square function with 90,000 Hz in your function-generator, a 1000-ohm resistor, and a 1 nano-Farad capacitor, determine the charging time for the capacitor. Show your calculations and show the charging-discharge curve with an oscilloscope in TINKERCAD.