10#Design of FIR filters#10.9#Multistage Decimation#Exa_10_9.sce#40/CH10/EX10.9/Exa_10_9.sce#S##682 10#Design of FIR filters#10.8#Design of Interpolating Filters#Exa_10_8.sce#40/CH10/EX10.8/Exa_10_8.sce#S##681 10#Design of FIR filters#10.7#Multistage Interpolation#Exa_10_7.sce#40/CH10/EX10.7/Exa_10_7.sce#S##680 10#Design of FIR filters#10.6b#Optimal Half Band Filter Design#Exa_10_6b.sce#40/CH10/EX10.6b/Exa_10_6b.sce#S##678 10#Design of FIR filters#10.6b#Optimal Half Band Filter Design#Exa_10_6b.jpg#40/CH10/EX10.6b/Exa_10_6b.jpg#R##679 10#Design of FIR filters#10.6a#Optimal FIR Bandstop Filter Design#Exa_10_6a.sce#40/CH10/EX10.6a/Exa_10_6a.sce#S##676 10#Design of FIR filters#10.6a#Optimal FIR Bandstop Filter Design#Exa_10_6a.jpg#40/CH10/EX10.6a/Exa_10_6a.jpg#R##677 10#Design of FIR filters#10.5b#Design by Frequency Sampling#Exa_10_5b.sce#40/CH10/EX10.5b/Exa_10_5b.sce#S##689 10#Design of FIR filters#10.5b#Design by Frequency Sampling#Exa_10_5b.jpg#40/CH10/EX10.5b/Exa_10_5b.jpg#R##690 10#Design of FIR filters#10.5a#Design by Frequency Sampling#Exa_10_5a.jpg#40/CH10/EX10.5a/Exa_10_5a.jpg#R##688 10#Design of FIR filters#10.5a#Design by Frequency Sampling#Exa_10_5a.sce#40/CH10/EX10.5a/Exa_10_5a.sce#S##687 10#Design of FIR filters#10.4b#Half Band bandstop FIR filter Design#Exa_10_4b.sce#40/CH10/EX10.4b/Exa_10_4b.sce#S##700 10#Design of FIR filters#10.4b#Half Band bandstop FIR filter Design#Exa_10_4b_0.jpg#40/CH10/EX10.4b/Exa_10_4b_0.jpg#R##701 10#Design of FIR filters#10.4b#Half Band bandstop FIR filter Design#Exa_10_4b_1.jpg#40/CH10/EX10.4b/Exa_10_4b_1.jpg#R##702 10#Design of FIR filters#10.4a#Half Band lowpass FIR filter Design#Exa_10_4a_1.jpg#40/CH10/EX10.4a/Exa_10_4a_1.jpg#R##699 10#Design of FIR filters#10.4a#Half Band lowpass FIR filter Design#Exa_10_4a_0.jpg#40/CH10/EX10.4a/Exa_10_4a_0.jpg#R##698 10#Design of FIR filters#10.4a#Half Band lowpass FIR filter Design#Exa_10_4.sce#40/CH10/EX10.4a/Exa_10_4.sce#S##697 10#Design of FIR filters#10.3cd#FIR filter Design #Exa_10_3cd_1.jpg#40/CH10/EX10.3cd/Exa_10_3cd_1.jpg#R##696 10#Design of FIR filters#10.3cd#FIR filter Design #Exa_10_3cd_0.jpg#40/CH10/EX10.3cd/Exa_10_3cd_0.jpg#R##695 10#Design of FIR filters#10.3cd#FIR filter Design #Exa_10_3cd.sce#40/CH10/EX10.3cd/Exa_10_3cd.sce#S##694 10#Design of FIR filters#10.3ab#FIR lowpass Filter design#Exa_10_3ab_1.jpg#40/CH10/EX10.3ab/Exa_10_3ab_1.jpg#R##705 10#Design of FIR filters#10.3ab#FIR lowpass Filter design#Exa_10_3ab_0.jpg#40/CH10/EX10.3ab/Exa_10_3ab_0.jpg#R##704 10#Design of FIR filters#10.3ab#FIR lowpass Filter design#Exa_10_3ab.sce#40/CH10/EX10.3ab/Exa_10_3ab.sce#S##703 10#Design of FIR filters#10.2#Truncation and Windowing#Exa_10_2.sce#40/CH10/EX10.2/Exa_10_2.sce#S##675 10#Design of FIR filters#10.10#Maximally Flat FIR filter Design#Exa_10_10.sce#40/CH10/EX10.10/Exa_10_10.sce#S##693 9#Design of IIR Filters#9.9#D2D transformations#Exa_9_9.sce#40/CH9/EX9.9/Exa_9_9.sce#S##623 9#Design of IIR Filters#9.9#D2D transformations#Exa_9_9.jpg#40/CH9/EX9.9/Exa_9_9.jpg#R##624 9#Design of IIR Filters#9.8b#Bilinear Transformation#Exa_9_8b.sce#40/CH9/EX9.8b/Exa_9_8b.sce#S##621 9#Design of IIR Filters#9.8b#Bilinear Transformation#Exa_9_8b.jpg#40/CH9/EX9.8b/Exa_9_8b.jpg#R##622 9#Design of IIR Filters#9.8a#Bilinear Transformation#Exa_9_8a.sce#40/CH9/EX9.8a/Exa_9_8a.sce#S##619 9#Design of IIR Filters#9.8a#Bilinear Transformation#Exa_9_8a.jpg#40/CH9/EX9.8a/Exa_9_8a.jpg#R##620 9#Design of IIR Filters#9.7#DTFT of Numerical Algorithms#Exa_9_7.sce#40/CH9/EX9.7/Exa_9_7.sce#S##616 9#Design of IIR Filters#9.7#DTFT of Numerical Algorithms#Exa_9_7_0.jpg#40/CH9/EX9.7/Exa_9_7_0.jpg#R##617 9#Design of IIR Filters#9.7#DTFT of Numerical Algorithms#Exa_9_7_1.jpg#40/CH9/EX9.7/Exa_9_7_1.jpg#R##618 9#Design of IIR Filters#9.6#Mappings From Integration Algorithms#Exa_9_6.sce#40/CH9/EX9.6/Exa_9_6.sce#S##615 9#Design of IIR Filters#9.5#Mappings from Difference Algorithms#Exa_9_5.sce#40/CH9/EX9.5/Exa_9_5.sce#S##614 9#Design of IIR Filters#9.3cd#Modified Impulse Invariant Design#Exa_9_3cd.sce#40/CH9/EX9.3cd/Exa_9_3cd.sce#S##612 9#Design of IIR Filters#9.3ab#Modified Impulse Invariant Design#Exa_9_3ab.sce#40/CH9/EX9.3ab/Exa_9_3ab.sce#S##608 9#Design of IIR Filters#9.3ab#Modified Impulse Invariant Design#Exa_9_3ab.jpg#40/CH9/EX9.3ab/Exa_9_3ab.jpg#R##609 9#Design of IIR Filters#9.2#Impulse Invariant Mappings#Exa_9_2.sce#40/CH9/EX9.2/Exa_9_2.sce#S##599 9#Design of IIR Filters#9.12#IIR Filter Design#Exa_9_12.sce#40/CH9/EX9.12/Exa_9_12.sce#S##633 9#Design of IIR Filters#9.12#IIR Filter Design#Exa_9_12.jpg#40/CH9/EX9.12/Exa_9_12.jpg#R##634 9#Design of IIR Filters#9.11#Interference Rejection#Exa_9_11.sce#40/CH9/EX9.11/Exa_9_11.sce#S##631 9#Design of IIR Filters#9.11#Interference Rejection#Exa_9_11.jpg#40/CH9/EX9.11/Exa_9_11.jpg#R##632 9#Design of IIR Filters#9.10c#Bilinear Design of Second Order Filters#Exa_9_10c.sce#40/CH9/EX9.10c/Exa_9_10c.sce#S##629 9#Design of IIR Filters#9.10c#Bilinear Design of Second Order Filters#Exa_9_10c.jpg#40/CH9/EX9.10c/Exa_9_10c.jpg#R##630 9#Design of IIR Filters#9.10b#Bilinear Design of Second Order Filters#Exa_9_10b.sce#40/CH9/EX9.10b/Exa_9_10b.sce#S##627 9#Design of IIR Filters#9.10b#Bilinear Design of Second Order Filters#Exa_9_10b.jpg#40/CH9/EX9.10b/Exa_9_10b.jpg#R##628 9#Design of IIR Filters#9.10a#Bilinear Design of Second Order Filters#Exa_9_10a.sce#40/CH9/EX9.10a/Exa_9_10a.sce#S##625 9#Design of IIR Filters#9.10a#Bilinear Design of Second Order Filters#Exa_9_10a.jpg#40/CH9/EX9.10a/Exa_9_10a.jpg#R##626 9#Design of IIR Filters#9.1#Response Invariant Mappings#Exa_9_1.sce#40/CH9/EX9.1/Exa_9_1.sce#S##596 9#Design of IIR Filters#9.1#Response Invariant Mappings#Exa_9_1_0.jpg#40/CH9/EX9.1/Exa_9_1_0.jpg#R##597 9#Design of IIR Filters#9.1#Response Invariant Mappings#Exa_9_1_1.jpg#40/CH9/EX9.1/Exa_9_1_1.jpg#R##598 8#The Discrete Fourier Transform and its Applications#8.9d#The DFT and DFS of sinusoids#Exa_8_9d.sce#40/CH8/EX8.9d/Exa_8_9d.sce#S##654 8#The Discrete Fourier Transform and its Applications#8.9d#The DFT and DFS of sinusoids#exa_8_9d_0.jpg#40/CH8/EX8.9d/exa_8_9d_0.jpg#R##655 8#The Discrete Fourier Transform and its Applications#8.9d#The DFT and DFS of sinusoids#Exa_8_9d_1.jpg#40/CH8/EX8.9d/Exa_8_9d_1.jpg#R##656 8#The Discrete Fourier Transform and its Applications#8.9c#The DFT and DFS of sinusoids#Exa_8_9c.sce#40/CH8/EX8.9c/Exa_8_9c.sce#S##649 8#The Discrete Fourier Transform and its Applications#8.9c#The DFT and DFS of sinusoids#Exa_8_9c_0.jpg#40/CH8/EX8.9c/Exa_8_9c_0.jpg#R##650 8#The Discrete Fourier Transform and its Applications#8.9c#The DFT and DFS of sinusoids#Exa_8_9c_1.jpg#40/CH8/EX8.9c/Exa_8_9c_1.jpg#R##651 8#The Discrete Fourier Transform and its Applications#8.9b#The DFT and DFS of sinusoids#Exa_8_9b.sce#40/CH8/EX8.9b/Exa_8_9b.sce#S##646 8#The Discrete Fourier Transform and its Applications#8.9b#The DFT and DFS of sinusoids#Exa_8_9b_0.jpg#40/CH8/EX8.9b/Exa_8_9b_0.jpg#R##647 8#The Discrete Fourier Transform and its Applications#8.9b#The DFT and DFS of sinusoids#Exa_8_9b_1.jpg#40/CH8/EX8.9b/Exa_8_9b_1.jpg#R##648 8#The Discrete Fourier Transform and its Applications#8.9a#The DFT and DFS of sinusoids#Exa_8_9a.sce#40/CH8/EX8.9a/Exa_8_9a.sce#S##643 8#The Discrete Fourier Transform and its Applications#8.9a#The DFT and DFS of sinusoids#Exa_8_9a_0.jpg#40/CH8/EX8.9a/Exa_8_9a_0.jpg#R##644 8#The Discrete Fourier Transform and its Applications#8.9a#The DFT and DFS of sinusoids#Exa_8_9a_1.jpg#40/CH8/EX8.9a/Exa_8_9a_1.jpg#R##645 8#The Discrete Fourier Transform and its Applications#8.8#Relating DFT and DTFT#Exa_8_8.sce#40/CH8/EX8.8/Exa_8_8.sce#S##642 8#The Discrete Fourier Transform and its Applications#8.7#Relating DFT and DTFT#Exa_8_7.sce#40/CH8/EX8.7/Exa_8_7.sce#S##641 8#The Discrete Fourier Transform and its Applications#8.6#Signal and Spectrum Replication#Exa_8_6.sce#40/CH8/EX8.6/Exa_8_6.sce#S##550 8#The Discrete Fourier Transform and its Applications#8.5c#Properties of DFT#Exa_8_5c.sce#40/CH8/EX8.5c/Exa_8_5c.sce#S##549 8#The Discrete Fourier Transform and its Applications#8.5b#Properties of DFT#Exa_8_5b.sce#40/CH8/EX8.5b/Exa_8_5b.sce#S##548 8#The Discrete Fourier Transform and its Applications#8.5a#Properties of DFT#Exa_8_5a.sce#40/CH8/EX8.5a/Exa_8_5a.sce#S##547 8#The Discrete Fourier Transform and its Applications#8.4#Properties of DFT#Exa_8_4.sce#40/CH8/EX8.4/Exa_8_4.sce#S##546 8#The Discrete Fourier Transform and its Applications#8.3#Circular Shift and Flipping#Exa_8_3.sce#40/CH8/EX8.3/Exa_8_3.sce#S##545 8#The Discrete Fourier Transform and its Applications#8.24#The importance of Periodic Extension#Exa_8_24.sce#40/CH8/EX8.24/Exa_8_24.sce#S##674 8#The Discrete Fourier Transform and its Applications#8.23#3 point IDFT from 4 point DFT#Exa_8_23.sce#40/CH8/EX8.23/Exa_8_23.sce#S##673 8#The Discrete Fourier Transform and its Applications#8.22#4 point DFT from 3 point sequence#Exa_8_22.sce#40/CH8/EX8.22/Exa_8_22.sce#S##672 8#The Discrete Fourier Transform and its Applications#8.21#Decimation in time FFT algorithm#Exa_8_21.sce#40/CH8/EX8.21/Exa_8_21.sce#S##671 8#The Discrete Fourier Transform and its Applications#8.20#Decimation in Frequency FFT algorithm#Exa_8_20.sce#40/CH8/EX8.20/Exa_8_20.sce#S##670 8#The Discrete Fourier Transform and its Applications#8.2#The DFT and conjugate Symmetry#Exa_8_2.sce#40/CH8/EX8.2/Exa_8_2.sce#S##544 8#The Discrete Fourier Transform and its Applications#8.19#Using DFT to find IDFT#Exa_8_19.sce#40/CH8/EX8.19/Exa_8_19.sce#S##668 8#The Discrete Fourier Transform and its Applications#8.18#DFT from matrix formulation#Exa_8_18.sce#40/CH8/EX8.18/Exa_8_18.sce#S##667 8#The Discrete Fourier Transform and its Applications#8.17#The Concept of Periodogram#Exa_8_17.sce#40/CH8/EX8.17/Exa_8_17.sce#S##666 8#The Discrete Fourier Transform and its Applications#8.16#Signal Interpolation using FFT#Exa_8_16.sce#40/CH8/EX8.16/Exa_8_16.sce#S##664 8#The Discrete Fourier Transform and its Applications#8.16#Signal Interpolation using FFT#Exa_8_16.jpg#40/CH8/EX8.16/Exa_8_16.jpg#R##665 8#The Discrete Fourier Transform and its Applications#8.15b#Methods to find convolution#Exa_8_15b.sce#40/CH8/EX8.15b/Exa_8_15b.sce#S##662 8#The Discrete Fourier Transform and its Applications#8.15a#Methods to find convolution#Exa_8_15a.sce#40/CH8/EX8.15a/Exa_8_15a.sce#S##660 8#The Discrete Fourier Transform and its Applications#8.11#The effects of leakage#Exa_8_11.sce#40/CH8/EX8.11/Exa_8_11.sce#S##657 8#The Discrete Fourier Transform and its Applications#8.11#The effects of leakage#Exa_8_11_0.jpg#40/CH8/EX8.11/Exa_8_11_0.jpg#R##658 8#The Discrete Fourier Transform and its Applications#8.11#The effects of leakage#Exa_8_11_1.jpg#40/CH8/EX8.11/Exa_8_11_1.jpg#R##659 8#The Discrete Fourier Transform and its Applications#8.10#DFS of sampled Periodic Signals#Exa_8_10.sce#40/CH8/EX8.10/Exa_8_10.sce#S##652 8#The Discrete Fourier Transform and its Applications#8.1#DFT from Defining Relation#Exa_8_1.sce#40/CH8/EX8.1/Exa_8_1.sce#S##543 7#Digital Processing of Analog Signals#7.9#Quantisation Effects#Exa_7_9.sce#40/CH7/EX7.9/Exa_7_9.sce#S##538 7#Digital Processing of Analog Signals#7.8#Up Sampling and Filtering#Exa_7_8_1.jpg#40/CH7/EX7.8/Exa_7_8_1.jpg#R##588 7#Digital Processing of Analog Signals#7.8#Up Sampling and Filtering#Exa_7_8_0.jpg#40/CH7/EX7.8/Exa_7_8_0.jpg#R##587 7#Digital Processing of Analog Signals#7.8#Up Sampling and Filtering#Exa_7_8.sce#40/CH7/EX7.8/Exa_7_8.sce#S##586 7#Digital Processing of Analog Signals#7.7#Zero Interpolation and Spectrum Replication#Exa_7_7.sce#40/CH7/EX7.7/Exa_7_7.sce#S##532 7#Digital Processing of Analog Signals#7.7#Zero Interpolation and Spectrum Replication#Exa_7_7_0.jpg#40/CH7/EX7.7/Exa_7_7_0.jpg#R##533 7#Digital Processing of Analog Signals#7.7#Zero Interpolation and Spectrum Replication#Exa_7_7_1.jpg#40/CH7/EX7.7/Exa_7_7_1.jpg#R##534 7#Digital Processing of Analog Signals#7.6#Signal Reconstruction from Samples#Exa_7_6.sce#40/CH7/EX7.6/Exa_7_6.sce#S##531 7#Digital Processing of Analog Signals#7.4#Sampling of Band pass signals#Exa_7_4.sce#40/CH7/EX7.4/Exa_7_4.sce#S##528 7#Digital Processing of Analog Signals#7.4#Sampling of Band pass signals#Exa_7_4_0.jpg#40/CH7/EX7.4/Exa_7_4_0.jpg#R##529 7#Digital Processing of Analog Signals#7.4#Sampling of Band pass signals#Exa_7_4_1.jpg#40/CH7/EX7.4/Exa_7_4_1.jpg#R##530 7#Digital Processing of Analog Signals#7.3#Sampling oscilloscope#Exa_7_3.sce#40/CH7/EX7.3/Exa_7_3.sce#S##527 7#Digital Processing of Analog Signals#7.12#Anti Imaging Filter Considerations#Exa_7_12.sce#40/CH7/EX7.12/Exa_7_12.sce#S##590 7#Digital Processing of Analog Signals#7.12#Anti Imaging Filter Considerations#Exa_7_12.jpg#40/CH7/EX7.12/Exa_7_12.jpg#R##591 7#Digital Processing of Analog Signals#7.11#Anti Aliasing Filter Considerations#Exa_7_11.sce#40/CH7/EX7.11/Exa_7_11.sce#S##589 7#Digital Processing of Analog Signals#7.10#ADC considerations#Exa_7_10.sce#40/CH7/EX7.10/Exa_7_10.sce#S##539 6#Filter Concepts#6.9#Periodic Notch Filter Design#Exa_6_9.sce#40/CH6/EX6.9/Exa_6_9.sce#S##524 6#Filter Concepts#6.9#Periodic Notch Filter Design#Exa_6_9_0.jpg#40/CH6/EX6.9/Exa_6_9_0.jpg#R##525 6#Filter Concepts#6.9#Periodic Notch Filter Design#Exa_6_9_1.jpg#40/CH6/EX6.9/Exa_6_9_1.jpg#R##526 6#Filter Concepts#6.8#Digital resonator Design#Exa_6_8.sce#40/CH6/EX6.8/Exa_6_8.sce#S##521 6#Filter Concepts#6.8#Digital resonator Design#Exa_6_8_0.jpg#40/CH6/EX6.8/Exa_6_8_0.jpg#R##522 6#Filter Concepts#6.8#Digital resonator Design#Exa_6_8_1.jpg#40/CH6/EX6.8/Exa_6_8_1.jpg#R##523 6#Filter Concepts#6.7b#Filters and Pole Zero Plots#Exa_6_7b_1.jpg#40/CH6/EX6.7b/Exa_6_7b_1.jpg#R##733 6#Filter Concepts#6.7b#Filters and Pole Zero Plots#Exa_6_7b_0.jpg#40/CH6/EX6.7b/Exa_6_7b_0.jpg#R##732 6#Filter Concepts#6.7b#Filters and Pole Zero Plots#Exa_6_7b.sce#40/CH6/EX6.7b/Exa_6_7b.sce#S##731 6#Filter Concepts#6.7a#Filters and Pole Zero Plots#Exa_6_7a_1.jpg#40/CH6/EX6.7a/Exa_6_7a_1.jpg#R##730 6#Filter Concepts#6.7a#Filters and Pole Zero Plots#Exa_6_7a_0.jpg#40/CH6/EX6.7a/Exa_6_7a_0.jpg#R##729 6#Filter Concepts#6.7a#Filters and Pole Zero Plots#Exa_6_7a.sce#40/CH6/EX6.7a/Exa_6_7a.sce#S##728 6#Filter Concepts#6.6#Frequency Response and Filter characteristics#Exa_6_6.sce#40/CH6/EX6.6/Exa_6_6.sce#S##513 6#Filter Concepts#6.6#Frequency Response and Filter characteristics#Exa_6_6.jpg#40/CH6/EX6.6/Exa_6_6.jpg#R##514 6#Filter Concepts#6.4#Linear Phase Filters#Exa_6_4.sce#40/CH6/EX6.4/Exa_6_4.sce#S##577 6#Filter Concepts#6.4#Linear Phase Filters#Exa_6_4_1.jpg#40/CH6/EX6.4/Exa_6_4_1.jpg#R##578 6#Filter Concepts#6.4#Linear Phase Filters#Exa_6_4_2.jpg#40/CH6/EX6.4/Exa_6_4_2.jpg#R##579 6#Filter Concepts#6.1#The Minimum Phase Concept#Exa_6_1.sce#40/CH6/EX6.1/Exa_6_1.sce#S##575 6#Filter Concepts#6.1#The Minimum Phase Concept#Exa_6_1.jpg#40/CH6/EX6.1/Exa_6_1.jpg#R##576 5#Frequency Domain Analysis#5.9b#DTFT and steady state response#Exa_5_9b.sce#40/CH5/EX5.9b/Exa_5_9b.sce#S##492 5#Frequency Domain Analysis#5.9a#DTFT and steady state response#Exa_5_9a.sce#40/CH5/EX5.9a/Exa_5_9a.sce#S##490 5#Frequency Domain Analysis#5.9a#DTFT and steady state response#Exa_5_9a.jpg#40/CH5/EX5.9a/Exa_5_9a.jpg#R##491 5#Frequency Domain Analysis#5.8b#The DTFT in System Analysis#Exa_5_8b.sce#40/CH5/EX5.8b/Exa_5_8b.sce#S##488 5#Frequency Domain Analysis#5.8b#The DTFT in System Analysis#Exa_5_8b.jpg#40/CH5/EX5.8b/Exa_5_8b.jpg#R##489 5#Frequency Domain Analysis#5.8a#The DTFT in System Analysis#Exa_5_8a.sce#40/CH5/EX5.8a/Exa_5_8a.sce#S##486 5#Frequency Domain Analysis#5.8a#The DTFT in System Analysis#Exa_5_8a.jpg#40/CH5/EX5.8a/Exa_5_8a.jpg#R##487 5#Frequency Domain Analysis#5.7#Frequency Response of Recursive Filter#Exa_5_7.sce#40/CH5/EX5.7/Exa_5_7.sce#S##484 5#Frequency Domain Analysis#5.7#Frequency Response of Recursive Filter#Exa_5_7.jpg#40/CH5/EX5.7/Exa_5_7.jpg#R##485 5#Frequency Domain Analysis#5.5#The DFT,DFS and DTFT#Exa_5_5.sce#40/CH5/EX5.5/Exa_5_5.sce#S##574 5#Frequency Domain Analysis#5.4#DTFT of periodic 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