For the circuit shown below, find ) The total capacitance of the circuit ii) The total charged stored in the circuit 24 V CI 24
Q: . Find the equivalent capacitance for the combination of capacitances shown in fig, across which…
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Q: 2.) An uncharged capacitor in series with a 120-volt voltmeter of 12,000 ohms resistance is suddenly…
A: The solution is given below.
Q: 14. At what frequency will a 2-μH inductor have a reactance of 300ohm? 15. A 2.5-μH inductor has a…
A: L=2uHXL=300Ω
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A: Given figure,T
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A: Given Data: d = 10 cm l = 1000 m er = 4
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Q: Example: A 500 mH inductor is supplied from a 115 V source with a frequency of the 60 Hz. Calculate…
A: L=500 mHV supply Vs=115 v∠0∘frequency =60 HzInductive reactance =XL=(jwL)XL=j×(2π×60)×500×10-3…
Q: The capacitors are connected in a network as shown below. Compute the equivalent capacitance of the…
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Q: 1. A pure 20 mH inductor is connected to a 30 V, 50 Hz supply. Calculate (a) the reactance at this…
A: Given, L=20 mHf=50 Hz Reactance (X) =j 2×π×f×L X=j 2×π×f×L =j 2×π×50×20×10-3 Ω=j 6.28 Ω
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A: Since you have posted a question with multiple sub-parts, we will solve first three sub-parts for…
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A: We will apply KVL in loop and than solving equation gives indictor current.
Q: Three identical capacitors are connected in delta with 400 V. If the line current is 12 A determine…
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Q: . For the circuit shown, what is the reactance of the capacitor? (Ohms) 2. What is the real power…
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Q: 3.1 Evaluate the following circuit and determine the following: Given: C1=10uF, C2=20UF, C3= 13UF,…
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A: For the above given questions we need to derive the values of voltage and capacitance.
Q: (b) Determine the equivalent inductance for the circuit shown in the following Figure 2: 20 H
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Q: C2 C1 4 uF 1 uF C3 3 uF A- -B C4 2 uF C5 2 uF
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Q: For the circuit shown in Fig. 1, find (a) the equivalent capacitance of the circuit, (b) the voltage…
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Q: Consider the circuit shown in the figure below, where C, = 8.00 pF, C, = 6.00 µF, and AV = 18.0 V.…
A: the solution for the given problem is as fallows:
Q: C2 C1 4 uF 1 uF C3 3 uf A- C4 2 uF C5 2 uF
A: We need to find energy stored by each capacitor
Q: Assuming the dielectric of each capacitor is air and the network is connected to Vab = 30V supply,…
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Q: For the arrangement shown in Fig. 2 find (a) the equivalent circuit capacitance and (b) the voltage…
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Q: Three identical capacitors are connected in delta with 400 V. If the line current is 12 A:…
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Q: 3. For the arrangement shown in fig.,The values of the capacitances are C = 3 µF , C2= 8 µF and C3=…
A: The circuit can be made as: (1): The total capacitance of the circuit is: The parallel combination…
Q: Simplify the circuit below to determine the equivalent capacitance. Fill up the table of properties…
A: C3 and C4 are in series. Hence their equivalent-C'=C3C4C3+C4=6×126+12=4μFNow, C2 and C' are in…
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Q: C2 C3 V
A: As per bartleby expert policy, only first three subparts are to be answered. Kindly repost remaining…
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A: STORED ELECTROMAGNETIC ENERGY = ELECTROSTATIC ENERGY12Li2=12Cv2prospective voltage…
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A: We are authorized to answer three subparts at a time, since you have not mentioned which part you…
Q: PART -I Capacitors in the circuit have the capacitances C1 = 11 µF, C2 = 5.5 µF, C3 = 11 µF and C4 =…
A: As per Bartleby guidelines we are allowed to solve only maximum of three subparts, please ask the…
Q: 21) (30 points) For the system of capacitors shown in figure, determine (a) (10 Pts.) equivalent…
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Q: Three identical capacitors are connected in delta with 400 V. If the line current is 12 A…
A: The solution can be achieved as follows.
Q: Three capacitors whose capacitances are in the order (4 μF, 8 µμF, 12 µF, are connected in parallel,…
A: In this question, We need to determine the amount of the charge Q? If three capacitance C1, C2 and…
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A: The question is related to electric circuits.
Q: Problem 2: Given this network of capacitors: C2 C1 4 uF 1 uF C3 3 uF C4 2 uf C5 2 uF Assuming the…
A: Equivalent capacitance: This is the total capacitance of the capacitors in the circuit. Calculation…
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A: capacitance= (permitivity)(Area)/(distance between plates) TOTAL ENERGY STORED = 0.5* CAPACITANCE *…
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A: For the given circuits consist of capacitors C 1 = 3.00 μ F C 2 = 14.0 μ F C 3 = 1.00μF Equivalent…
Q: Problem 2: Given this network of capacitors: c2 4 uF 1 uF C3 3 uF C4 2 uf C5 2 uF Assuming the…
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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 40.841Given the capacitance of four capacitors Ca= 30 µF, Cb = 20 µF, Cc = 40 µF and Cd = 10 µF. If Cb and Cc are connected in parallel and the parallel combination is connected in series with Ca and the combination is further connected in parallel with Cd, calculate (a) the equivalent capacitance (b) the voltage across each capacitor if the circuit is supplied by 240 volts DC source (c) the charge on each capacitor.Q1 (True/False): A) The current through the capacitor is inversely proportional to the derivative of the voltage across it: Is it true or false? B) In a typical electronic circuit the capacitor blocks DC and couplest he AC to the next stage of the circuit: Is it true or false? C) The more the value of the stray capacitance , the better it is: Is it true or false?
- The voltage across a 75 mH inductor is described by the equation νL = (25 V) cos(60t), where t is in seconds.a. What is the voltage across the inductor at t = 0.10 s?b. What is the inductive reactance?c. What is the peak current?A LRC electric circuit is conected in series has a voltage source of E(t)=20sin(10t) Volts, and a resistance of 20 ohm, and a inductance of 0.05 Henrys and a capacitor of 0.01 Farads, if the current equal to 0, and the initial charge of the capacitor is 2 coulombs, Calculate the charge in the capacitor when t=0 and the current in the circuit when t > 0A 500 ohm resistor, an 1.5 F uncharged capacitor, and a 6.16-V emf are connected in series. (a) What is the initial current? (b) What is the time constant? (c) What is the final voltage on the capacitor? (d) what is the final charge on the capacitor? What is the final energy stored in the capacitor? (e) Express (i) Current in the circuit, (ii) Voltage on the capacitor, (iii) Charge accumulated on either plate of capacitor, (iv) energy stored in the capacitor as a function of time. (must include all the value calculated in the earlier part). (f) What is the i) current ii) charge on capacitor, iii) voltage on capacitor & iv) Energy stored in the capacitor after one time constant?
- You are provided with three capacitors of values 4μF, 6μF, 30μF and 220V power supply. Connect the 4μF and 6μF in parallel; and then connect the combination to the 30μF in series. Connect the 220V power supply across this arrangement and find (i) the equivalent capacitance of the circuit formed, (ii) the voltage across 30μF, (iii) the charge on each capacitor. (iv) If the circuitformed is switched ON for 3minutes, what will be the amount of current flowing through the circuit?a) You are provided with three capacitors of values 4µF, 6µF, 30µF and 220V power supply. Connect the 4µF and 6µF in parallel; and then connect the combination to the 30µF in series. Connect the 220V power supply across this arrangement and find (i) the equivalent capacitance of the circuit formed, (ii) the voltage across 30µF, (iii) the charge on each capacitor. (iv) If the circuit formed is switched ON for 3minutes, what will be the amount of current flowing through the circuit? (b) What is the accuracy of a measurement of 26.5gm taken as against 25gm? (c) State the types of resistor colour band in use and hence determine the colours of the following resistors: (i) K39±10%; (ii) M56±1%; (iii) 3K9±10%; (iv)120K±2% (v) 8R8±10%If a circuit is connected to a voltage source of 1sin(10t + 84 degrees) and Capacitance(C) = 2F, Resistance(R) = 6 Ohms and Inductance(L) = 5H. Find the instantaneous current flowing in the circuit at time t = 0.46 seconds. - Capacitor, Resistor and Inductor connected in series
- The following parameters are used in an EDM process, the supply voltage is 150V. The resistance and capacitance in the circuit are 50 Ohms and 15 microfarads respectively. The tool is made of brass and kerosene is used as the dielectric. A hole diameter of 20 mm is to be cut into a plate of thickness of 3mm. If the discharge takes place at maximum power conditions. The value of constant K4=0.18, calculate the MRR, and machining time.Pt A. Find the equivalent capacitance with respect to the terminals a,b for the circuit shown. Suppose that C2 = 20 μF . Pt B. Determine the the initial voltage drop for the equivalent capacitance with respect to the terminals aa, bb for the circuit showna. State the peak, angular frequency, ω, and phase values for voltage source, VS b. Express the voltage source, VS , as a phasor c. Calculate the reactance, XL1 , of the inductor, L1