Figure 1Ω ww 350 Ω 40 www v < 1 of 1 Part A Use the node-voltage method to find how much power the current source extracts from the circuit(Eigure 1)if i = 2.9 A and v= 59 V. Express your answer with the appropriate units. P2.9A= Submit Provide Feedback μA 4 Value Request Answer → (C) ? Units
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- (b) Determine the voltage, və(f) in the circuit of Figure Q1(b). 30 2F 20 sint2t A 5H Figure Q1(b)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 = 14 k0, R2 = 12 k0. Express your answer using three decimal places. Assume the opamp is ideal and Q1's ß is infinity. Q1 VCC Vref NPN U1 OUT 20V 1.2V R1 R2 wwThe 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
- Using Kirchhoff's rules, find the following. (E, = 70.4 V, E₂ = 60.8 V, and 8 = 79.6 V.) JAS 1R2 +100% P 143 a 8₁ 2.00 k www R₁ E₂ Ⓡ (a) the current (in mA) in each resistor shown in the figure above mA 4.00 kn www Rs R₂3.00 kn mA MA a Es (b) the potential difference between points c and f (Give the magnitude of your answer in volts and select the point of highest potential.) magnitude of potential difference point at higher potential This answer has not been graded yet -Select-- (c) What If? If all of the resistors in the circuit were decreased in value by a factor of 1,000, would the current in each resistor simply increase by a factor of 1,000? Explain your answer.Part A What must the emf E in the figure (Figure 1) be in order for the current through the 7.00 N resistor to be 1.65 A ? Each emf source has negligible internal resistance. Express your answer with the appropriate units. E = Value Units Submit Request Answer Figure Provide Feedback Next > 24.0 V Ţ §7.00 $2.00 3.00 NA PMMC instrument has a three-resistor Ayrton shunt connected across it to make an ammeter as in Figure 2. The resistance values are R1 = 4.52, R2=0.452 and R3= 0.052. The meter has Rm = 1k2 and Ifs.d = 50µA. Calculate the three ranges of the ammeter. [10.05mA, 100.05mA, 1.005A] Rm=1k2 B R3 R R, Selector Figure 2 수
- (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 ◆ BUE Figure 1. R₁ L₁ M 1.Calculate coefficient of coupling k. R₂ L₂ 1₂ R₁ E = 230V 20°, R₁ = 100, R₂ = 0.50, R₂ = 2002, L₁= 10 H, L₂ = 26 mH, M = 0.5 H, f= 50HzGiven n2 = 510, what is n₁? 5415° V 3060 85 1530 O 170 +21 000 ell n₁: N₂ + 30415° V
- The circuit shown below is an example of a simple voltage regulator. Determine the outpit voltage Vout (unit in V). Assume the following values for the resistors: R1 = answer using three decimal places. Assume the opamp is ideal and Q1's B is infinity. 13 kQ, R2 = 16 kQ. Express your Q1 VCC Vref NPN U1 OUT 20V 1.2V R1 R2Lrocedure 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?The circuit below(left) displays a schematic diagram of a battery. The voltage measured by U1 is called the terminal voltage given R1 = 1 ohm. In the circuit below(right), the terminal voltage of each of the battery-resistor combination is VT = 1.5 volts. Find the voltage across R1 & voltage of the battery.