6 V 10 Ω R₁ R3 15 Ω R₂ 52
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What is the equivalent resistance for each circuit?
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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 40.841What's 21 22 23Find 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
- Determine ZT for the circuit if inductive reactive is 10220 and resistance is 9850. Answer:Determine the total inductance. L1 L2 L3 10H 20H 30H L1 10H L2 20H L3 30HIf an electrical circuit draws 100W + J100VAR from a sinusoidal source, then what would the circuit be? Explain why. a) a pure resistor circuit b) a series or parallel R-L circuit c) a series or parallel R-C circuit d) a series L-C circuit
- Find the equivalent Inductance for the following circuit shown below. L 0000 2.5 H OH 2 H 6 H 0.5 H elle 2 2 H oooo elle 2 HTwo 10 uF capacitors have been connected in parallel across a 230 V 50 Hz AC supply. The current drawn from the supply will be approximately: Select one: a. 1.44 A b. 0.36 A c. 11.5 A O d. 23.0 AWhat's 23
- Power factor 90 to 100% 88 to <90% 85 to <88% 80 to <85% 75 to < 80% 70 to < 75% 65 to < 70% 60 to <65% 55 to <60% 50 to <55% Less than 50% Surcharge None 2% 4% 9% 16% 24% 34% 44% 57% 72% 80% Use the table given for the following. A house with inductive loads has an avg consumption of 40kW and 26kVAR is supplied 230 Vrms source. We want to make the surcharge 0% by adding a capacitor. a. What is the smallest kVar of the capacitor that would reduce the surcharge to 0%?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 ohm2. Convert the following values from microfarads to picofarads: a. 0.1 μF b. 0.0025 μF