In the given circuit All resistor is connected directely parallel to the voltage supply, So voltage across R5 is equal to supply voltage.
i.e V_R5 = 220 V.
Current passing through R5
I5 = V_R5/ R5
I5 = 220/200 = 1.1 A.
Power dissipiated by R5
P_R5 = (I5)^2*R5 = (1.1)^2*200 = 242 W.
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14. In the following electrical circuit, if the voltage supply Vs 220 V (Calculate voltage across...
Use the technique of simplifying this circuit using equivalent resistances into smaller, simpler circuits Given the following circuit: R1 R2 R3 R4 Vs E R5 If RI-36 Ω, R2 : 12 Ω, R3-12 Ω, R4 24 Ω, R5-12 Ω and Vs-9 Volts, determine the circuit equivalent resistance (REQ) and the circuit current (). Also calculate the branch currents through R2, R3, R4, and R5, and the voltage drops across R I, R2, R3, R4 and RS.
PART A Use the technique o simplifying his circat using equivalent resistances into smaller, simpler circuits. Given the following circuit: R1 If Ri . 39 Ω, R2 12 Ω, R3 12 Ω, and Vs 9 Volts, determine the circuit equivalent resistance (REQ) and the circuit current (I). Also calculate the branch currents through R2 and R3, and the voltage drops across RI, R2, and R3. PART B Use the technique of simplifýying this circut using equivalent resistances into smaller, simpler...
Consider the circuit beloW consisting of a single power source and five resistors. 5 The values in the circuit are as follows: RI-17.5 Ω R2 27.6 Q R3-96.5 Ω R4-144.6 Ω R5 63.4 Calculate the current (l0) supplied by the power source. Use units of "A" or Starting with your result for lo from the previous question, calculate the voltage drop across R5 (use units of "V" or "Volts"). Calculate the power dissipated in resistor R4 (use units of "W"...
Voltage and Current Division For the circuit shown, calculate V. V and Vs when V. = 7 V, R; = 18 2. R2 = 66 2. R3 = 57 2. R4 = 37 and Rs = 332 Express your answer to two significant figures, with appropriate units View Available Hint(s) @? R-180 R2 = 660 + V + 12 0.597 V = 7 V R3 - 570 V 1.89 V R$ = 33 R = 37 Vs + - V4...
Consider the circuit with
R1 = 4 Ω, R2 = 10 Ω, R3 = 9 Ω,
R4 = 6 Ω, and R5 = 7 Ω as above with a
battery of 10 volt.
(a) Calculate the equivalent resistant of the entire
circuit.
(b) Calculate the total current in the circuit.
(c) Calculate the voltage drop across the R5
resistor.
(d) Calculate the current through the R5
resistor.
(e) Calculate the dissipated power across the R5
resistor.
Introduction to Electrical Systems and Chapter 1 1. What is voltage? A. The force that causes a circuit to energize. B. The force that works against resistance. C. The force that pushes electrons through the circuit. D. The force that causes heating and movement in electrical equipment. 2. What can cause death when a person is electrocuted? A. The electric shock stops the lungs from working B. The electric shock stops brain functions. C. Stops the heart or creates an...
Calculate the current through and voltage across each circuit
element using Mesh Analysis
Determine the current through and voltage across each circuit
element using Nodal Analysis
Find the Thevenin equivalent circuit for the network external
to the resistor R5 and use it to calculate the voltage
across as well as the current through the resistor
R5
Find the Norton equivalent circuit for the network external to
the resistor R5 and employ it to compute the voltage
across as well as...
R1 R3 300 300 R4 900 LE1 22. For the following circuit: a) Show the voltage polarities across each resistor? b) Find the voltage drop across each resistor? c) For each resistor select an appropriate current direction and find the current? d) Calculate the current for each voltage source? e) Calculate the total dissipated power by the circuit? f) Calculate the total produced power by the circuit? E3 45 V 30 V
explain clearly and step by step using to study for final exam.
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Problem 1: Consider the electrical circuit below and assume R1 = 12Ω, 10Ω, R3-9 Ω, R4-8 Ω, i,-3A,...
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