Determine the ideal voltage source needed by three resistors connected in series R₁ = 6 ohms, R₂ ohms, and R3 = 10 ohms if a required current of 0.5 A flows in the circuit.
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- 4.-For-labeled currents, draw an arrow to show the direction of the actual positive current. For labeled voltages, circle the node that is at the actual highest potential. Note that the positive and negative signs of the voltage represent the polarity of the probes of a voltmeter connected to the device. The value shown is the reading on the voltmeter. (segment of wire) 2A -2A -5A 2.de 3A TA Cov E 5V 12V + 3V -10V -201Part 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 NUsing the rules for parallel circuits and Ohmslaw, solve for the missing values. ETE1E2E3E4ITl1I2l33.2AI4RT3.582R116R210R3R420PTP1P2P3P4
- Can you please give 5 examples of Kirchhoff's Voltage Law(KVL) with figure and complete solution each?(I need it for review)For the circuit below, determine the resistor voltage. The source is 5 volts, the Zener potential is 5.2 volts and the resistor is 1k ohms.a) Calculate the equivalent resistancein the following Figure.b) Find the potential difference andcurrent across each resistor.
- 150 100 + VA- a -4V AVA -7V 81. B b Figure 2 shows a simplified model of a gas-discharge lamp. One characteristic of these lamps is that they exhibit negative resistance; in other words, as current increases the voltage drops further, making such lamps inherently unstable. As such, a current-limiting ballast is required. For the connection shown in the figure: 1. Find the equivalent Thevenin circuit of the lamp. 2. Find the ballast resistance needed to limit the current drawn from a 24-volt source to 6 amperes.Determine the voltage V1 in Volts for the following circuit with component values ISRC = 1.5 mA, VSRC = 7 V, R1 = 2.2 kQ, R2 = 3.4 k2, and R3 = 1.0 kQ. 11 Vsrc Isrc + V1 + R1 m R2 R3 m 12 13Step 5: Calculate the voltage across resistor R6 (VR6) [mV]. Use the resistance values from step 3 as follow R5 = 211.51ohm andR6 = 1420.86ohm. For the calculation of VR5 close Switch 1 and leave Switch 2 open. For the calculation of VR6 close Switch 2 and leave Switch 1 open. Use the circuit diagram of figure 1. Step 6: Calculate the maximum power absorbed by resistor R5 (PR5)[μW] and the maximum power absorbed by resistor R6 (PR6) [μW]. Use the resistance values from step 3 as follow R5= RTh(a,b) and R6 = RTh(b,c). Vs = 1.5V R1 = 4700ohm R2 = 2200ohm R3 = 6800ohm R4 = 2700ohm VR2 = 0.253V VR4 = 0.311V VR5 = 254mV
- ANSWER IN ESSAY FORM What is the purpose of Multisim in terms of circuit creation in relation to Ohms law, and what is the significance of Ohms law in our daily lives?what is the equivalent resistance Rab2. Examine the circuits in Figures. While performing the inspections, connect a 1 k2 resistor in series with the circuits. Feed the circuit with 10 V. Measure the current and voltage flowing through capacitors and inductors in the circuit and explain your results. 100mH 100uF m m HE Figure 1 100mH 100uF Figure 2 100mH 10k Ohm Figure 3 100mH 10k Ohm 100uF Figure 4 100mH 100uF 10k Ohm Figure 5