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==Top Rated== | ==Top Rated== | ||
+ | *[[ECE_301_Fall_2007_mboutin_Animated_Aliasing_Example|Animated aliasin example]] | ||
+ | *[[ECE_301_Fall_2007_mboutin_Sampling_Theorem|The Sampling Theorem]] | ||
+ | *[[ECE_301_Fall_2007_mboutin_Properties_of_Systems|Properties of Systems]] | ||
+ | *[[ECE_301_Fall_2007_mboutin_Common_Questions_on_FS/FT_Answered_By_Mimi|Questions about Fourier transform of periodic signals, answered by Prof. Mimi]] | ||
*[[Hw1periodicECE301f08profcomments|Two things you should know about periodic and non-periodic signals]] | *[[Hw1periodicECE301f08profcomments|Two things you should know about periodic and non-periodic signals]] | ||
*[[ECE_301_Fall_2007_mboutin_Guide_to_Partial_Fraction_Expansion|A student guide to partial fraction expansion]] | *[[ECE_301_Fall_2007_mboutin_Guide_to_Partial_Fraction_Expansion|A student guide to partial fraction expansion]] | ||
*[[ECE_301_Fall_2007_mboutin_DT_Fourier_Series_in_Matlab|DT Fourier series with a single command in MATLAB]] | *[[ECE_301_Fall_2007_mboutin_DT_Fourier_Series_in_Matlab|DT Fourier series with a single command in MATLAB]] | ||
− | + | *[[ECE_301_Fall_2007_mboutin_Filter_Types|Types of filters]] | |
+ | *[[ECE_301_Fall_2007_mboutin_Sifting_Property|Sifting property]] | ||
==Others== | ==Others== | ||
+ | *[[ECE_301_Fall_2007_mboutin_Nyquist_Example|Nyquist example]] | ||
+ | *[[ECE_301_Fall_2007_mboutin_Meaning_of_Fourier_Transform|Meaning of Fourier transform]] | ||
+ | *[[ECE_301_Fall_2007_mboutin_Geometric_Series_Note|Geometric series notes]] | ||
*[[Zachary Curosh - Frequency Response and Difference Equations ECE301Fall2008mboutin|How to get the frequency response of a system defined by a difference equation]] | *[[Zachary Curosh - Frequency Response and Difference Equations ECE301Fall2008mboutin|How to get the frequency response of a system defined by a difference equation]] | ||
*[[Video Tutorial on How to Cascade Transformations of the Independent Variable|Cascading transformations of the independent variable, a video tutorial]] | *[[Video Tutorial on How to Cascade Transformations of the Independent Variable|Cascading transformations of the independent variable, a video tutorial]] | ||
+ | |||
+ | *[[ECE_301_Fall_2007_mboutin_Fourier_in_Matlab|Fourier in MATLAB]] | ||
+ | *[[ECE_301_Fall_2007_mboutin_Difference_Equation_in_Class_Example|Issue with LTI system defined by difference equation]] | ||
+ | *[[ECE_301_Fall_2007_mboutin_Simplified_View_of_Cascaded_Systems|Simplified view of cascaded systems]] | ||
+ | *[[ECE_301_Fall_2007_mboutin_Sampling_Theorem_Def|Sampling Theorem]] | ||
+ | *[[ECE_301_Fall_2007_mboutin_Even/Odd_Fourier_Coefficients|Even and Odd Fourier series Coefficients]] | ||
+ | *[[ECE_301_Fall_2007_mboutin_Multidimension_Fourier_Transform|Multidimension Fourier transform]] | ||
+ | *[[ECE_301_Fall_2007_mboutin_Difference_Between_Fourier_and_Laplace|Difference between Fourier and Laplace transform]] | ||
+ | *[[ECE_301_Fall_2007_mboutin_Convergence_of_Fourier_Transforms|Convergence of Fourier transform]] | ||
+ | *[[ECE_301_Fall_2007_mboutin_Fourier_Transform_Table|Student table of Fourier transform]] | ||
+ | *[[ECE_301_Fall_2007_mboutin_Duality|Duality]] | ||
+ | *[[ECE_301_Fall_2007_mboutin_Fourier_Coefficient_LTI_Transfer|Fourier coefficients and transfer function]] | ||
+ | *[[ECE_301_Fall_2007_mboutin_Definition_of_Sampling_Theorem|Sampling theorem]] | ||
+ | *[[ECE_301_Fall_2007_mboutin_Most_General_Convolutions_%28CT%29|General formula for convolving two step functions multiplied by exponential]] | ||
+ | *[[ECE_301_Fall_2007_mboutin_Convolution_Simplification|Convolution simplification]] | ||
+ | *[[ECE_301_Fall_2007_mboutin_Properties_of_Convolution_and_LTI_Systems|Properties of convolution]] | ||
+ | *[[ECE_301_Fall_2007_mboutin_Simplified_View_of_Cascaded_Systems|Simplified view of cascades systems]] | ||
+ | *[[ECE_301_Fall_2007_mboutin_Properties_of_Systems|Properties of systems]] | ||
+ | *[[ECE_301_Fall_2007_mboutin_Periodic_Signals|Definitions periodic signals]] | ||
*[[ECE_301_Fall_2007_mboutin_Making_Answer_Fit_Solution_Key|Making your answer fit the solution for problem 22.a b)]] | *[[ECE_301_Fall_2007_mboutin_Making_Answer_Fit_Solution_Key|Making your answer fit the solution for problem 22.a b)]] | ||
*[[ECE_301_Fall_2007_mboutin_Geometric_Series_Note|A note on the geometric series]] | *[[ECE_301_Fall_2007_mboutin_Geometric_Series_Note|A note on the geometric series]] |
Revision as of 16:23, 23 April 2013
Tutorials and other Learning Material
Top Rated
- Animated aliasin example
- The Sampling Theorem
- Properties of Systems
- Questions about Fourier transform of periodic signals, answered by Prof. Mimi
- Two things you should know about periodic and non-periodic signals
- A student guide to partial fraction expansion
- DT Fourier series with a single command in MATLAB
- Types of filters
- Sifting property
Others
- Nyquist example
- Meaning of Fourier transform
- Geometric series notes
- How to get the frequency response of a system defined by a difference equation
- Cascading transformations of the independent variable, a video tutorial
- Fourier in MATLAB
- Issue with LTI system defined by difference equation
- Simplified view of cascaded systems
- Sampling Theorem
- Even and Odd Fourier series Coefficients
- Multidimension Fourier transform
- Difference between Fourier and Laplace transform
- Convergence of Fourier transform
- Student table of Fourier transform
- Duality
- Fourier coefficients and transfer function
- Sampling theorem
- General formula for convolving two step functions multiplied by exponential
- Convolution simplification
- Properties of convolution
- Simplified view of cascades systems
- Properties of systems
- Definitions periodic signals
- Making your answer fit the solution for problem 22.a b)
- A note on the geometric series
- 301 students playing music with Matlab
- Animated example of periodic function
- 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
- AM and FM Radio, from Fall 2007
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