ELEC 2501 ABC - Mock Final

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Carleton University *

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2501

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Electrical Engineering

Date

Jan 9, 2024

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docx

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8

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Peer Assisted Study Sessions (PASS) Facilitator: Imshaad Naaz Mock Midterm (For Practice Only) ELEC 2501 ABC It is most beneficial to you to write this mock midterm UNDER EXAM CONDITIONS . This means: Complete the final in 2 hours. Work on your own and attempt every question. Keep your notes and textbook closed. After the time limit, go back over your work with a different colour or on a separate piece of paper and try to do the questions you are unsure of. Record your ideas in the margins to remind yourself of what you were thinking when you take it up at PASS. The purpose of this mock exam is to give you practice answering questions in a timed setting and to help you to gauge which aspects of the course content you know well, and which are in need of further development and review. Use this mock exam as a learning tool in preparing for the actual exam. Please note: Complete the mock exam before attending the take-up session. During the session you can work with other students to review your work. Often, there is not enough time to review the entire exam in the PASS workshop. Decide which questions you want to review the most – the Facilitator may ask students to vote on which questions they want to discuss in detail. Facilitators will not distribute an answer key for mock exams. The Facilitator’s role is to help students work together to compare and assess the answers they have. If you are not able to attend the PASS workshop, you can work alone or with others in the class. PASS worksheets and mock exams are designed as a study aid only for use in PASS workshops. Worksheets and mock exams may contain errors, intentional or otherwise. It is up to the student to verify the information contained within by attending the PASS workshop. Good Luck writing the Mock Exam! Take-up Session #1 : Thursday, December 14: 1:05-2:55 PM (SA 402) Take-up Session #2 : Friday, December 15: 12:05-1:55 PM (SA 402) Office Hour: Friday, December 15: 10:35-11:25 AM (MacOdrum Library 413) Contact Information: imshaadnaaz@cmail.carleton.ca PART A: MULTIPLE CHOICE
Peer Assisted Study Sessions (PASS) Facilitator: Imshaad Naaz Mock Midterm (For Practice Only) 1) Find Ix for the circuit shown below a) 1 mA b) 2 mA c) 4 mA d) 8 mA 2) The 10 V source absorbs 2.5 mW of power. Calculate Vba for the circuit shown below a) 8.25 V b) -8.25 V c) 16.5 V d) -16.5 V 3) Calculate the power absorbed by the dependent voltage source in the circuit shown in the previous question. a) 1.33 mW b) 0.66 mW c) 2.263 mW d) 1.25 mW
Peer Assisted Study Sessions (PASS) Facilitator: Imshaad Naaz Mock Midterm (For Practice Only) 4) Determine the equivalent resistance Req for the circuit shown below a) 7.2 ohm b) 3.6 ohm c) 14.4 ohm d) 3.7 ohm 5) Find the Thevenin resistance for the circuit shown below. a) 1/3 kOhm b) 2/3 kOhm c) 3/3 kOhm d) 4/3 kOhm 6) Can a 6 mH, 9 mH and 18 mH inductor be connected to give an effective inductance of 12 mH? a) Yes b) No
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Peer Assisted Study Sessions (PASS) Facilitator: Imshaad Naaz Mock Midterm (For Practice Only) 7) What is the phase relationship between i(t) and v(t). a) v(t) leads i(t) by 50 degrees b) i(t) leads v(t) by 50 degrees c) v(t) leads i(t) by 140 degrees d) i(t) leads v(t) by 140 degrees 8) Find Z in the following network: a) 2.83 < 16.9 b) 3.51 < 55.5 c) 1.05 < 81.13 d) 5.65 < 12.18
Peer Assisted Study Sessions (PASS) Facilitator: Imshaad Naaz Mock Midterm (For Practice Only) PART B: LONG ANSWER 1) For the circuit shown below, find the current i 0 (t) for t < 0.
Peer Assisted Study Sessions (PASS) Facilitator: Imshaad Naaz Mock Midterm (For Practice Only) 2) If I 0 = 4 ¿ 0 ° A for the following circuit, find the value of I X.
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Peer Assisted Study Sessions (PASS) Facilitator: Imshaad Naaz Mock Midterm (For Practice Only) 3) Find V0 in the circuit shown below. Apply linearity and assume that V0 = 1V.
Peer Assisted Study Sessions (PASS) Facilitator: Imshaad Naaz Mock Midterm (For Practice Only) 4) Determine the impedance ZL for the maximum average power transfer and the value for the maximum average power absorbed by the load network. 5) Sketch the magnitude characteristic of the Bode plot for the transfer function shown below.