Consider the following circuit under DC conditions. What is the amount %3D of energy stored in C, and C2? Assume C, = C2 = 1F. 10 2 50 Ω 20 Ω C¡ + v1 C2 70 Ω +) 60 V + S I
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- Application: Construct the circuit in figure. R= 2,2KN, L = 1 mH, and C= 10 nF. L Necesssary Formulae: 1 Xc 2.π.f.C X.-2. π.f. L By using the formulea perform the calculations of Xc and XL then fill the table. f (Hz) Xc XL 50000 60000 70000 80000 90000 100000 110000 120000 130000 140000for the circuit shown below If v_in=5 sin2m10t then corner frequency will be ......Hz 1 UF 2 k Ohm 1 k Ohim 050 060 070 080 vin2) a)For the following circuit find the total capacitance and inductance and hence find the total impedance of the circuit. V1 230V/50Hz E R1 350 C1 4700pF HE C2 10nF HH C3 47nF C4 220nF HH L1 72mH L2 32mH All Resistance in Ohms
- The picture shows three LC circuits, two of them with capacitors of capacitance C and the three with coils of inductance L, the three circuits are coupled by means of two capacitors Cc capacitors.L inductance coils, the three circuits are coupled by means of two capacitors of capacitance Cc. The currentscirculating through each mesh are those indicated in the figure: I1, I2 and I3. Using Kirchhoff's law for voltagesand taking into account the definition of current I = -dQ/dt, find the system of coupled equations for the systemand then find the angular normal frequencies of the system.Problem 2: Determine the voltages across the wo capacitors and the currents through the two inductors under dc conditions. 55 32H C1 =2pF R1 w 1000 R2 www 500 C2 HI 1μF R3 www 300 Den L2 5H R4 900Calculate values of asked physical quantities of the circuit in the figure. What is the capacitance of system 23? C23 C₁ = 3.0 F What is the capacitance of system 123? C123 = F C₁ = 2.0 F What is the capacitance of system 45? C45 = F Your last answer was interpreted as follows: 1 Your last answer was interpreted as follows: 1 What is the charge in the capacitor system? C Your last answer was interpreted as follows: 1 What is the total capacitance of the system? F Value 8.8500 x 10 EO Quantity permittivity of free space capacitance capacitance capacitance capacitance capacitance Your last answer was interpreted as follows: 1 capacitance of system 23 capacitance of system 123 capacitance of system 45 Your last answer was interpreted as follows: 1 Do not leave any fields blank. If you don't know the answer, insert 1 for example. Insert the answer with 3 significant digits without rounding the answer. Constant U = 7.0 V Unit E Symbol €0 C₁ = 3.0 F C1 C₂ C3 C4 C5 C23 C₂ = 9.0 F C₂ = 3.0 F…
- siven: C1-1uF, C2»2uF, C3= 3uF, C4= SuF. C5= 9uF, V»50 v C2 C1 C3 CS VDC1 a) The total capacitance of the circuit b) The total charge delivered by the source, c)The potential difference across C3Find the voltage across the capacitors in the given circuit under dc conditions, where R₁ = 67 Q and R₂ = 17 Q. 1092 R₁ www C₁ +51 - www 50 92 R₂ 60 V The voltage across the capacitors are v₁ = 1 + 22 HH C₂ V and v25 V.Find the voltage across the capacitors in the given circuit under dc conditions, where R₁ = 66 and R₂ = 19 0. R₁ www C₁ +51 1092 www ww 50 92 www R₂ 60 V 3-4 C₂ The voltage across the capacitors are v₁ = 15 + HH V and v2= V.
- Calculate values of asked physical quantities of the circuit in the figure. What is the capacitance of system 23? C23 F = = C₁ = 4.0 F What is the capacitance of system 123? C123 F C₁ = 4.0 F What is the capacitance of system 45? C45 F = €0 What is the total capacitance of the system? C = F What is the charge in the capacitor system? Q C Quantity permittivity of free space capacitance capacitance + Unit 8.8500 × 10-12 F m Insert the answer with 3 significant digits without rounding the answer. Constant Value Symbol €0 C₁ C₂ U = 7.0 V C₂ = 3.0 F Unit C₂ = 10.0 F SEG F C = 3.0 F HH Input instruction epsilon - C1 C2Ministry of Manpower Directorate General of Technological Education Salalah College of Technology Zlectrical Inginearina Problem - 8 Refer to the circuit below and -25V C2 N. compute the following: i) Total capacitance ii) Voltage across C, iii)Charge across C, iv)Voltage across C5 5 uF C1 5 uF 5 uF C4 5 uF C6 5 uF -16-65V. C5 5 uF (Take V, as 25V) 8-35V VT 25V152130 222 Ⓒ520° Fj² 7 Find voltage drop Mutual inductance Majt = + {1.2 V. on 12 resistance Nex (the same for all