2- Use mesh analysis to find current io(t) in the figure below. ( 1 µF HH 10 cos 10% V 2 kf2 io 0.4 H 20 sin 10% V
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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 40.841Fill 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=5O 3G l. 3:09 moodle.najah.edu a МOODLE Recent - P Flag question The capacitors in figure, are initially uncharged. The capacitances are C1 = 4 µF, C2 = 8 µF, and C3 = 12 µF, and the battery's potential difference is V = 12 V. When switch S is closed, how many electrons travel throght point c S а C2 C1 C3 d Select one: a. 3 x 1014 b. 3 x 10-14 O c. 1.5 x 1014 O d. 48 O e. 13 x 1014 Next page
- Find the maximum charged value of the capacitor of the circuit below during the positive half cycle. V3 c1 15 Silicon R1 V1 Vout 35 75 V2A 70 capacitor is connected in series with a coil with an ohmic (effective) resistance of 4 Q and an inductive reactance of 10 Q. A voltage of volts was applied to the circuit . What is the effective (active) power of the circuit? v 250v2. sin 27 ft %3D 10 kW O 1000W O 5 kW O 100000W O 10 MWQ1 (a) For the circuit in Figure Q1(a), the total charge, Q. is 0.0018 C. (i) Find the value of capacitance, C2 (ii) Calculate the voltage, Vị across capacitor Cj. (iii) Determine the charge, Q4 stored in capacitor C4 C1 Qt +V- 40µF C3 CA 90 V C2 10F 10uF Figure Q1(a)
- Take eo=1.6×10-19JV, k=1.381×10-23JK Question 4: A solar cell (photovoltaic cell) has an open circuit voltage value of 0.5 V with a reverse saturation current density of J0=1.9×10-9Am2. The temperature of the cell is 25℃, the load voltage is 0.55 V. The solar irradiation is 900 Wm2, determine (a) The current output density, Js. (b) The current output density, Js if we were to find the maximum power condition at the load voltage. (c) The power output of the cell per unit area considering this load voltage 0.55 V, and the current output density of (b), and (d) The efficiency of the solar cell.Take eo=1.6×10-19JV, k=1.381×10-23JK Question 4 : A solar cell (photovoltaic cell) has an open circuit voltage value of 0.5 V with a reverse saturation current density of J0=1.9×10-9Am2. The temperature of the cell is 25℃, the load voltage is 0.55 V. The solar irradiation is 900 Wm2, determine (c) The power output of the cell per unit area considering this load voltage 0.55 V, and the current output density of (b), and (d) The efficiency of the solar cell.Q1 (a) For the circuit in Figure Q1(a), the total charge, Q. is 0.0018 C. (i) Find the value of capacitance, C2 (ii) Calculate the voltage, Vi across capacitor C. (iii) Determine the charge, Qa stored in capacitor C4 C1 Qt +V- 40μF C3 C2 10F 10uF C4 90 V Figure Q1(a)
- Find the maximum charged value of the capacitor of the circuit below during the negative half cycle. V3 C1 10 Silicon R1 V1 Vout V2 50 20Compute the capacitance of the circuit if its capacitive reactance is equal to 800 ohms and a frequency of 60 hertz. O 0.0003 F 3.32 micro-Farad O 0.0033 F O 331.57 nano-FaradSMTH 00 References Mailings Review View Help AaBbCcD AaBbCcDe AaE D- A - I Normal T No Spac. Head Paragraph 2. Find the equivalent inductance of the circuit if L= 20H 25 H 20 H 20 H 60 H 10 H 30H acer