Q4 Considering electrical circuit shown in Figure Q4, determine 3 V VI V2 2A (1 Figure Q4 (a) Determine the node voltages, Vi and V2. (b) Calculate the power absorbed by the 2 Q resistor.
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- (a) Identify the type of circuit in Figure 4. Determine its functionalities and find the appropriate mathematical equation. Sig_1 Sig_2 Sig_3+ Sig_4 Iin. Iin. Iin Iin GND www.5 R5 www R4 www R3 ww R2 ww R1 Feedback Resistor ลบ Figure 4 Iout VOUT ◆ BUThe figure is shown a circuit consisting of a resistor Rị in series with two resistors R2 and R3 in parallel. The circuit is connected across a constant 100 V supply. When switch S is open, the ammeter A, reads 8 amperes. When switch S is closed A1 reads 10 amperes and A2 reads 4 A. determine (a) ohms of resistors R1, R2 and R3. (b) Voltage across R,& R2 when S is open. (c) Voltage across R1 & R2 when S is closed. R1 {A1 -v A2 S1 100V R2 R3Problem 452 16V for circuit shown in figure, find the current in each resistor. Itas ce
- Assume a 30-ko load resistor is added to the circuit as shown. Calculate the loaded voltage Via. Record the calculated value in the table below. R1 100kO 12V R2 300kO RL Vu 30KO Construct the circuit using MultiSim. Energize the circuit and measure Vi.. Record the measured value in the table below. De-energize the circult. Calculated (V) Measured (V) Parameter VNLI V: Using measured values, calculate the percent voltage regulation for this circuit. VNL1 - VL1 %(VR), = x 100% Calculate the ratio R/R; for this circuit. RL R2For the circuit shown in Figure B16ii, calculate, i. Ir2 ii. V out Ge V1 R1 Vout 4 kQ IR2 R2 12V 22.2kQ V2 2V Figure B16iiFor the circuit of shown in Figure, find the following quantities: a The circuit current, L b. The total resistance of the circuit, RT. c. The value of the unknown resistance, R. d. The voltage drop across all resistors in the circuit 3 k0 4 k0 +E- 130 V P- 100 mW1 ka R إجابتك
- Lrocedure A- Kirchhoff's voltage law: The circuit in Figure 2 will be used o test the valdity of Kirchhoffs voltage law, Figure (2) Construct the circuit as shown in the figure (2). Measure the power supply output voltage and the potential drops across each of the thrae resistors. Record these measurements in your lab notebook as in the following table: University of Ti-Qar/ Departmnt of Elctricl aad Fectronlc Enginearing / Prepared by M 5¢ Al Karvem Soes 1+ Stage: Fundamentals of Flectrical Engineering | Lob 3 - Kirchhoff's Laws. 201520, Table 1; data collected for testing the validity of Kirchhot?s voltage law. 3)From your experimental data (table 2), calculate the total current into the node point P. Now calculate the total current out of the node point P along with its uncertainty. Does the current into the node agree with the current out of the node within experimental uncertainty?) Three resistors are connected in series a cross a 12-V battery. The first resistor has a value of 12, second has a voltage drop of 4V and the third has a power dissipation of 12W. Calculate the of the circuit current?consider the following circuit composed of four resistors and an ideal battery. each resistor has a resistance of 2.00 ohms. the battery has a terminal voltage of 30.0V. a.) what is the equivalent resistance of this circuit? b.) what is the equivalent current passing through this circuit? c.) what is the voltage drop across R1? d.) what is the current passing through R2?
- 1.2 An electrical load consists of three resistances connected in series-parallel. The series resistor has a value of 1.6 ohms and the two parallel connected resistors are rated at 4 and 6 ohms respectively. A 12 volt battery (ideal) is used to supply this load. 1.2.1 Calculate the current and power supplied from the battery to the load. 1.2.2 Calculate the current carried by each of the load resistors. 1.2.3 Calculate the power consumed by each of the load resistors. 1.2.4 Calculate the voltage drop across each of the load resistors. 1.2.5 Check that the power consumed by the load equals the power supplied by the battery.... V1 R1 R2 A resistor is an electronic component that determines the amount of electric current in the circuit. In the given circuit wherein a 7- Volt dc voltage source V1 is connected in series with 461-Ohm resistor R1 and resistor R2. Calculate what should be the value of resistor R2 to set the electric current in the circuit to 7.85 milliampere. R2 = Ohm Round your answer to 2 decimal places.The circuit shown below is an example of a simple voltage regulator. Determine the current through R1 in mA. Assume the following values for the resistors: R1 = 11 kQ, R2 = 20 kQ. Express your answer using three decimal places. Assume the opamp is ideal and Q1's B is infinity. Q1 VCC Vref NPN U1 OUT 20V 1.2V R1 R2 wW WWD