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Lecture
Frequency Response and Filters
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Stable LTI Systems: Frequency Response Analysis
Explores stable LTI systems through frequency response analysis, convolution properties, and differential equations solutions.
Frequency Response: Descriptors and Bode Diagrams
Explores frequency-response descriptors, Bode diagrams, first-order responses, and RLC circuits.
Electroacoustics: Notions of Acoustics
Covers fundamental concepts of electroacoustics, including frequency response, sensitivity, efficiency, power, and directivity.
Frequency Response Interpretation
Explores the frequency response of stable LTI systems, focusing on its derivation and interpretation.
Feedback Amplifiers: Stability Analysis
Covers stability analysis of feedback amplifiers and Butterworth and Chebyshev filter design.
Signals, Instruments, and Systems
Explores signals, instruments, and systems, covering ADC, Fourier Transform, sampling, signal reconstruction, aliasing, and anti-alias filters.
Impulse Truncation: Gibbs Phenomenon
Explores impulse truncation to approximate ideal filters, leading to the Gibbs Phenomenon.
Frequency Response of RLC Circuits
Explores the frequency response of RLC circuits, Bode diagrams, OPAMP history, and modern engineering applications.
Fourier Transform Pairs and System Analysis
Covers Fourier transform pairs, system analysis with difference equations, and frequency response.
Frequency Response and System Composition
Covers the properties of frequency response for discrete-time systems and system composition.