submit a research about following parts as an annotated bibiliagraphy

submit a research about following parts as an annotated bibiliagraphy

 
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1. Loop Analysis Method /> 2. Superposition Theorem 3. Thevenin Theorem

1. Loop Analysis Method

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2. Superposition Theorem

3. Thevenin Theorem

Weekly iLabiLab: Verification of Network Theorems by simulationLab Exercise: This will be simulaton lab using MultSim ±o unders±and ±he diferen± ne±work ±heorems.Scenario/Summary:At least two of thefollowing simulations must be attempted by the student.Verify Loop Analysis Method by MultiSim simulationVerify Superpposition Theorem Method by MultiSim simulationVerify Thevinin’s Theorem Method by MultiSim simulationThe circuits must be containing resistors and one or two reactive components. Actual circuitdescriptions are left to the discretion of the instructor.This week’s lab is only simulation using MultiSim to understand the diferent network theorems. Youshould selectat least two theoremsFrom the ones listed below to veriFy using MultiSim. The circuitsI would like you to work on are selected From the textbook (e-book) and indicated below For eachtheorem. Make sure you use the Multisim tools that I have showed during my online o±ce hour.1. Loop Analysis Method ( ²g 17.61 on page 775 )2. Superposition Theorem ( ²g 18.105 on page 822 )3. Thevenin Theorem (²g 18.117 on page 825)dda81090eca77646deF34F7678a330936d07798c.docxPage 1
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1) Given the following set of inputs, x[n], to a three-term moving average filter,

1) Given the following set of inputs, x[n], to a three-term moving average filter,

calculate y[n] for the last output where all the inputs to the moving average are defined.

x[0] = 3, x[1] = 5, x[2] = 8, x[3] = 7, x[4] = 4, x[5] = 2, x[6] = 1

2) What is the value of the coefficient +0.1837 if it is quantized to 10 bits?

3) What is the main reason that bilinear transformation is used in IIR filter design?

 
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1)Given a Butterworth low pass filter design with a stop band edge frequency of 1600 Hz

1)Given a Butterworth low pass filter design with a stop band edge frequency of

1600 Hz and a sampling frequency of 4000 Hz, find the radian value of the prewarped frequency ωp1.

2) Given an analog signal with a maximum positive voltage of 5 volts and an 8-bit analog to digital converter, what will be the quantized value of an input voltage of 2.70 volts?

 
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