2014 ece 210 outline

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ECE 210 – Analog signal processing January 2 – January 19, 2013 Tentative Course Schedule/Outline Textbook: Kudeki & Munson, Analog Signals and Systems Prentice Hall, 2009. HW from textbook. Week 1: January 6 – January 12 Monday: Introduction, KVL, KCL, loop and node Analysis. HW # 1: 1.8, 1.9, 1.10, 2.1a, 2.4, 2.5, 2.6. Tuesday: Linearity & superposition, Thevenin, Norton. HW # 2: 2.10, 2.11(not the available power), 2.12, 2.13(not the available power). Wednesday: Available power, op-amps, capacitors, inductors, differentiators, integrators. HW # 3: 2.11(available power), 2.13(available power), 3.3, 3.4, 3.6, 3.8, 3.9. Thursday: LTI systems, first-order circuits, steady-state, transient solutions. HW # 4: 3.14, 3.15, 3.16, 3.17, 3.18. Identify the steady-state and transient components, as well as the zero-input and zero-state components in 3.15, 3.16 and 3.18. Friday: Complex numbers, phasors, phasor circuits. HW # 5: 4.1, 4.2, 4.3, 4.7, 4.8, 4.11, 4.12, 4.13. Sunday: Exam I, chapters 1-4. Week 2: January 13 – January 19 Monday: Frequency response function, response to sinusoidal inputs, Fourier series. HW # 6: 5.1, 5.2, 5.5, 5.6, 5.8, 5.9, 5.11, 5.13efgh. Tuesday: Response to periodic signals, avg signal power, Fourier transform, LTI response. HW # 7: 6.1, 6.4, 6.7, 6.9, 7.1, 7.12b, 7.13. Wednesday: Signal energy, bandwidth, modulation, AM radio. HW # 8: 7.10, 7.11, 8.5, 8.7, 8.8, 8.9. Thursday: Convolution, delta function. HW # 9: 9.1, 9.3, 9.7adeg, 9.9, 9.10ab. Friday: FT of power signals, sampling, impulse response, classification of systems. HW # 10: 9.11abc, 9.15, 9.16, 10.1, 10.2abc, 10.4ab, 10.5ac, 10.6ac, 10.9ab, 10.11. Sunday: Final exam, chapters 1-10.

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2014 Ece 210 Outline

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Page 1: 2014 Ece 210 Outline

ECE 210 – Analog signal processingJanuary 2 – January 19, 2013

Tentative Course Schedule/Outline

Textbook: Kudeki & Munson, Analog Signals and Systems Prentice Hall, 2009. HW from textbook.

Week 1: January 6 – January 12

Monday: Introduction, KVL, KCL, loop and node Analysis.HW # 1: 1.8, 1.9, 1.10, 2.1a, 2.4, 2.5, 2.6.

Tuesday: Linearity & superposition, Thevenin, Norton.HW # 2: 2.10, 2.11(not the available power), 2.12, 2.13(not the available power).

Wednesday: Available power, op-amps, capacitors, inductors, differentiators, integrators.HW # 3: 2.11(available power), 2.13(available power), 3.3, 3.4, 3.6, 3.8, 3.9.

Thursday: LTI systems, first-order circuits, steady-state, transient solutions.HW # 4: 3.14, 3.15, 3.16, 3.17, 3.18. Identify the steady-state and transient

components, as well as the zero-input and zero-state components in 3.15, 3.16 and 3.18.

Friday: Complex numbers, phasors, phasor circuits.HW # 5: 4.1, 4.2, 4.3, 4.7, 4.8, 4.11, 4.12, 4.13.

Sunday: Exam I, chapters 1-4.

Week 2: January 13 – January 19

Monday: Frequency response function, response to sinusoidal inputs, Fourier series.HW # 6: 5.1, 5.2, 5.5, 5.6, 5.8, 5.9, 5.11, 5.13efgh.

Tuesday: Response to periodic signals, avg signal power, Fourier transform, LTI response.HW # 7: 6.1, 6.4, 6.7, 6.9, 7.1, 7.12b, 7.13.

Wednesday: Signal energy, bandwidth, modulation, AM radio.HW # 8: 7.10, 7.11, 8.5, 8.7, 8.8, 8.9.

Thursday: Convolution, delta function.HW # 9: 9.1, 9.3, 9.7adeg, 9.9, 9.10ab.

Friday: FT of power signals, sampling, impulse response, classification of systems.HW # 10: 9.11abc, 9.15, 9.16, 10.1, 10.2abc, 10.4ab, 10.5ac, 10.6ac, 10.9ab, 10.11.

Sunday: Final exam, chapters 1-10.