PLEASE do NOT answer using mesh analysis. Just follow the questions steps and use KCL and KVL. This question specifically wants no mesh analysis.
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PLEASE do NOT answer using mesh analysis. Just follow the questions steps and use KCL and...
From the circuit shown below,
(a) use KCL and KVL to solve for the three currents.
(b) With the given data below and the two currents flowing
clockwise, determine both currents using mesh analysis and the
voltages across each resistor.
r1= 3 Ohms
r2= 7 Ohms
r3= 2 Ohms
r4= 8 Ohms
a M 10 V 30 il 222 i2 722 892 i3 12 V W
Using Mesh Analysis in the circuit of figure P3.3, find the
voltage V across the .25-ohm resistance.
0.5 Ω 3Α 1Ω 2 A ν<0.25 Ω 0.33Ω Figure P3.3
Please help with electrical
circuits!!!!!!!!!!!!!!
A single pdf file showing ALL work must be received by instructor by 12:00pm, April 15, 2020. The two problems below constitute Test 2 for this semester: Q1 (50 pts): Modified version of Problem 6.21 (d) Solve for the voltage across the 50 resistor in Figure 6.48 (d) using i) Mesh Analysis, ii) Nodal Analysis, AND iii) Superposition. iv) Confirm that all three approaches produce the same answer. Be sure to indicate polarity wherever/whenever appropriate...
Please do parts b-d.
2. Consider the circuit shown below. 0.2i 7 2 4Ω 1Ω 4Ω 0.1 va (a) By hand, use any method (node voltage, mesh currents, etc.) tosolve for the currentix b) Using Spice, solve for ix and compare with your hand calculation. (c) Plot Va vs. Vs, where Vs replaces the 9 V voltage source (and has the same polarity) and varies from -20 to 20 volts. At what value of Vs does the direction of the...
Please show all work and to follow directions. Only answer Problem
14
14)(4 points) Analyze the circuit in problem 9-12 using PSPICE as follows: Use a Bias Point analysis to find Ix, Iy, VA, VB and Vc in problem 12 above. Be sure to add text to the schematic as indicated in the Sample Report. Only show the result of Ix, ly, VA, VB and Ve on the schematic. Adjust the placement of each value on the schematic so that...
PLEASE SHOW ALL WORK AND TO FOLLOW ALL DIRECTIONS. PLEASE USE
PSPICE.
Assignment 1. Using a DC Sweep analysis to analyze a circuit: Use the circuit below. A. Analyze the circuit by hand (find Va and is only). B. Analyze the circuit using PSPICE as follows: Use a DC Sweep analysis to find the quantities found in part A above. Include a voltage printer and a current printer to measure the quantities specified. Do not use a Bias Point analysis...
Accuracy is important. Do not round intermediates and check the
answer range to make sure you are correct.
Values:
[01] 2.08 [02]
68.47 [03] 0.239 [04] 1173.7 [05] 1403. [06] 53.8
THE CORRECT ANSWERS WILL BE IN THE FOLLOWING RANGES:
8-1a. 140, 220 Hz
8-1b. 40:0, 62:0 mA
8-2a. 70:0, 99:0 V
8-2b. 140:0, 160:0 V
8-2c. 60:0, 99:0 V
8-2d. 60:0, 90:0 V
8-3a. 40:0; 99:0 pF
8-3b. 100; 400 mV
8-3c. 1:00; 3:00 mV
8-4a. 100; 150 V...
Notes for lab dc02-Resistors and the Color Code will skip are Part 2 e, g: Part 4; Exercises 2, 4,5,6 and 3. It is important to answer the exercises correctly in each labl you should include the appropriate prefix for the unit in the Numerical Value We will not be Volt using the Volt-Ohm meter (VOM) for this lab, so skip the parts that ask for VOM measurements. The parts we You do need to complete Exercises1 Note that in...
Pease answer questions 4 and 5! Thank you so much!
4. Connect the 2nd resistor in parallel with the 1st
resistor and connect that combination to the battery.
Measure
the following:
The
current passing through the R1, I1 = ___0.0058____ A
The
current passing through the R2, I2 = ___0.0031____ A
The
current supplied by the battery, I = ___0.0092____ A
Calculate I1 + I2 = ____________ A
Is the following statement true? I = I1 +...
1. Why can the DSO only measure node voltages when the Function Generator is the power supply in a circuit (unless it is using a current probe)? 2. Consider Figure 1. According to the calculations in the lab handout, if Z-1kΩ +/6914, then the phase difference (фи-фі) between u(t) and i (t) is 34.6". a. If this v(t) and i(t) were displayed on a DSO (v(t) being a node voltage and using a current probe for i(t) as shown in...