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*Continuous-time signal [[Signal_power_CT|energy]] and [[Signal_power_CT|power]] | *Continuous-time signal [[Signal_power_CT|energy]] and [[Signal_power_CT|power]] | ||
*Discrete-time signal [[Signal_power_DT|energy]] and [[Signal_power_DT|power]] | *Discrete-time signal [[Signal_power_DT|energy]] and [[Signal_power_DT|power]] | ||
− | *[[ | + | *[[Signal_periodicity_hub|Periodic and non-periodic signals]] |
*[[Systems properties]] | *[[Systems properties]] | ||
*[[Computing_the_output_of_a_DT_system_using_the_Convolution_sum|Computing the output of a DT system using the Convolution sum]] | *[[Computing_the_output_of_a_DT_system_using_the_Convolution_sum|Computing the output of a DT system using the Convolution sum]] |
Revision as of 05:16, 2 February 2011
Contents
ECE 301: Signals and Systems
Peer Legacy
Share advice with future students regarding ECE301 on this page.
Relevant Tables of Formulas
- Complex Number Identities and Formulas
- Power Series
- basic signals and functions
- Signal Metrics Definitions and Formulas
- Laplace Transform Pairs and Properties
- Continuous-time Fourier Transform Pairs and Properties (function of ω in radians)
- Discrete-time Fourier Transform Pairs and Properties
Review of pre-requisites
Main Topics in ECE301
- Continuous-time signal energy and power
- Discrete-time signal energy and power
- Periodic and non-periodic signals
- Systems properties
- Computing the output of a DT system using the Convolution sum
- Computing the output of a CT system using the Convolution Integral
- Fourier Series
- Continuous-time Fourier transform
- Discrete-time Fourier transform
- Modulation
- Sampling Theorem
- DT processing of CT signals
- About Laplace transform
Interesting pages in the ECE301 category
- Cascading transformations of the independent variable, a video tutorial
- 301 students playing music with Matlab
- Animated example of periodic function
- Two things you should know about periodic and on-periodic signals
- What are all these symbols? (from Fall 2008)
- A mystery about complex number: why is ej2πt not equal to one? More precisely, why can't one say that ej2πt = (ej2π)t = 1t = 1? Please discuss here.
- Some practice exam problems
- Practice problem on proving time-invariance
- A collective page to practice computing Fourier series of a CT signal
- A collective page to practice computing Fourier series of a DT signal
Semester/Instructor specific pages
- ECE301: Spring 2011, Prof. Boutin
- ECE 301 Fall 2010 Professor Pollak
- ECE 301 Fall 2009 Prof. Bouman
- ECE 301 Summer 2009 Landis Huffman
- ECE 301 Spring 2009 Prof. Lehnert
- ECE 301 Fall 2008 Professor Boutin
- ECE 301 Summer 2008 Aung San
- ECE 301 Fall 2007 Prof. Boutin
- ECE 301 Fall 2008 Professor Wang
Related Courses
- Systems and Fourier Transforms are going to be very important in ECE438.