Find the inverse by Gauss-Jordan Elimination method: [1 2 3] A 4 5 6 [7 8 9
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![Find the inverse by Gauss-Jordan Elimination method:
[1 2 3]
A 4 5 6
[7 8 9](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff254df9e-19a6-47bc-8478-d352ffa2d0a1%2Fad4f22db-961e-4fe7-b030-b89dfdd54843%2F5rx6jzw_processed.jpeg&w=3840&q=75)

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- b) What is Hopkinson’s la. Explain with the help of equationDiscuss Phasor algebra / complex number types (rectangular and polar) conversion complex algebraHello. I am confused which route to take for this problem. I could break it into parts, but do I put it into its odd and even functions for symmetry? Could you guide me through this problem? Thank you for your help.
- 2. Using the IV plots shown in Fig. 3 (and found in the reintroduction to PSpice) design a BJT biasing circuit that results in the following parameters: VCE = 2 Vand ig = 40 μA. We also require the power supply to be fixed at 5 Volts (this is where the load line intercepts the iB =ic = 0 line). You may use the circuit shown in Example 1. Note that all resistor values in Example 1 must be recalculated. Your solution for the base to ground and base to collector resistors may not be unique.Determine the region where the poles of a second-order system without zeros must be so that the settling time is between 1 to 4 seconds, and the overshoot percentage is between 16.30% and 4.6%. Draw the regionCalculate the following USING MATLAB: The roots of P1=s^6+7s^5+2s^4+9s^3+10s^2+12s+15
- How can we solve this question by using inversion formuler like using the polesQUESTION 8 Consider the complex number show below. Z4 = 42 – 90° Convert Z4 to rectangular form and specify its real part in the box below.Using routh table, tell how many poles on the functions below are in the right half plane, left half plane and on the jw axis. Complete solution of matrix.

