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Multisim Live Simulation — 2 Intro Electronics Labs (Ohm's Law + Basic DC Circuits) — Need Full Build + Report CATEGORY: Engineering & Science → Electrical Engineering / Electronics / Circuit Simulation DESCRIPTION: I need an electronics tutor/engineer to complete TWO introductory circuit labs EXACTLY as described in the two attached PDFs (Lab 1 and Lab 2), using **NI Multisim Live** (free browser version at [login to view URL]). Follow the PDFs step by step — do not improvise or substitute another simulator. ---------------------- LAB 1 — "Electrical Circuits Simulation using Multisim Live: An Introduction" ---------------------- 1. Follow the worked example in the PDF (Steps A–E): build the Figure 2 circuit (DC source Vs = 30 V, R1 = 30 kΩ, R2 = 20 kΩ, ground), place a voltmeter across R1 and an ammeter in series, save it, run the simulation, and record the readings. 2. Complete the graded EXERCISE on page 9 (Figure 15): build the circuit with V1 = 12 V, R1 = 100 Ω between nodes a–b, R2 = 1 kΩ from node b to ground, R3 = 500 Ω from node a to ground. Connect a VOLTMETER between nodes a and b and an AMMETER to measure Ib0 (current through R2). Run the simulation and record the readings. (Expected values for verification: Vab ≈ 1.091 V, Ib0 ≈ 10.909 mA.) 3. Component names/IDs and values must match the PDF figures exactly (Vs, R1, R2, R3, V1...). ---------------------- LAB 2 — "Ohm's Law" ---------------------- 1. Build the Figure 1 circuit in Multisim Live: DC voltage source V1 in series with a resistor R1 and an ammeter (current probe), with ground. 2. PART 1 — I = f(V): sweep the source voltage through 10, 15, 20, 25, 30, 35 V and record the current for R = 100 Ω, 200 Ω, and 300 Ω. Enter all measured values into **Table 1 in Microsoft Excel** and create **Chart 1 (Excel Line chart): I = f(V)** with the 3 resistance curves. Write a short interpretation. 3. PART 2 — I = f(R): sweep the resistance through 100, 200, 300, 400, 500, 600 Ω and record the current for V = 10 V, 20 V, and 30 V. Enter all measured values into **Table 2 in Microsoft Excel** and create **Chart 2 (Excel Line chart): I = f(R)** with the 3 voltage curves. Write a short interpretation. 4. The tables and charts MUST be made in Microsoft Excel as the PDF requires (native Excel line charts, not pasted images). ---------------------- DELIVERABLES (all required): ---------------------- 1. The 3 circuits built and SAVED in my Multisim Live account (I will provide login): "Lab1_Example_Series", "Lab1_Exercise_Fig15", "Lab2_Ohms_Law" — circuits must be wired correctly, with the probes connected, and must RUN without simulation errors. 2. Clear screenshots of each circuit in Multisim Live with the simulation running and the probe readings visible. 3. One Excel (.xlsx) file for Lab 2 containing Table 1, Table 2, Chart 1 (line), and Chart 2 (line). 4. Two short lab reports (Word or PDF): Lab 1 report (steps followed, circuit, measured Vab and Ib0, comparison with theory) and Lab 2 report (tables, charts, interpretation of results, conclusion). 5. All measured values must match Ohm's law theory exactly (ideal Multisim probes) — I will verify every number before releasing payment.
Project ID: 40621320
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Hello, I can complete both NI Multisim Live labs exactly according to your PDFs, without substituting any other simulator. I have experience with DC circuit analysis, Ohm's Law, Multisim, and preparing engineering lab reports. What I will deliver: - Build and save all 3 required circuits in your Multisim Live account using your login: - Lab1_Example_Series - Lab1_Exercise_Fig15 - Lab2_Ohms_Law - Follow every step in the PDFs and use the exact component names and values (Vs, V1, R1, R2, R3, etc.). - Verify the Lab 1 exercise results (Vab ≈ 1.091 V and Ib0 ≈ 10.909 mA). - Capture clear screenshots of each circuit with the simulation running and probe readings visible. - Create a native Microsoft Excel (.xlsx) file containing Table 1, Table 2, Chart 1 (I=f(V)), and Chart 2 (I=f(R)) as required. - Prepare two concise, well-formatted lab reports (Word or PDF) including methodology, measured values, comparison with theory, interpretations, and conclusions. I pay close attention to detail and will ensure every value matches ideal Ohm's Law calculations and Multisim simulation results. All files will be organized, tested, and delivered before the deadline, with revisions if needed to meet your grading requirements. I am ready to start immediately after receiving the PDFs and your Multisim Live login.
$15 USD in 1 day
5.0
5.0

Makkah, Saudi Arabia
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Member since Jan 19, 2026
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