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Showing below up to 50 results in range #2,451 to #2,500.
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- Exercise 3.3: Moments at cos²-PDF → Exercise 3.3: Moments for cos²-PDF
- Exercise 3.3: Moments for cos²-PDF → Exercise 3.3: Moments for Cosine-square PDF
- Exercise 3.3Z: High- and Low-Passes in p-Form → Exercise 3.3Z: High- and Low-Pass Filters in p-Form
- Exercise 3.3Z: High and Low Passes in p-Form → Exercise 3.3Z: High- and Low-Passes in p-Form
- Exercise 3.3Z: Rectangular- and Dirac Pulse → Exercise 3.3Z: Rectangular Pulse and Dirac Impulse
- Exercise 3.3Z: Rectangular Pulse and Dirac Impulse → Exercise 3.3Z: Rectangular Pulse and Dirac Delta
- Exercise 3.4Z: Eye Opening and Number of Steps → Exercise 3.4Z: Eye Opening and Step Number
- Exercise 3.4Z: Eye Opening and Step Number → Exercise 3.4Z: Eye Opening and Level Number
- Exercise 3.4Z: Various All-Passes → Exercise 3.4Z: Various All-Pass Filters
- Exercise 3.5: GSM Full-Rate Voice Codec → Exercise 3.5: GSM Full Rate Codec
- Exercise 3.5: GSM Full Rate Codec → Exercise 3.5: GSM Full Rate Vocoder
- Exercise 3.6: Adaptive Multi–Rate Codec → Exercise 3.6: Adaptive Multi Rate Codec
- Exercise 3.6: Even/Odd Time Signal → Exercise 3.6: Even and Odd Time Signals
- Exercise 3.6: Transient Behaviour → Exercise 3.6: Transient Behavior
- Exercise 3.7: Carrier Recovery → Exercise 3.7: Synchronous Demodulator
- Exercise 3.7: Components of the GSM System → Exercise 3.7: GSM System Components
- Exercise 3.7Z: Rectangular signal with Echo → Exercise 3.7Z: Rectangular Signal with Echo
- Exercise 3.7Z: Square Wave With Echo → Exercise 3.7Z: Rectangular signal with Echo
- Exercise 3.8: Once more Muual Information → Exercise 3.8: Once more Mutual Information
- Exercise 3.8: Triple Convolution → Exercise 3.8: Triple Convolution?
- Exercise 3.8Z:Convolution of Two Rectangles → Exercise 3.8Z: Convolution of Two Rectangles
- Exercise 4.10: Turbo Enccoder for UMTS and LTE → Exercise 4.10: Turbo Encoder for UMTS and LTE
- Exercise 4.11: Analysis of Parity-Check Matrices → Exercise 4.11: Analysis of Parity-check Matrices
- Exercise 4.11: C Program "z3" „acf1” → Exercise 4.11: C Program "acf1"
- Exercise 4.12: Power-spectral Density of a Binary Signal → Exercise 4.12: Power-Spectral Density of a Binary Signal
- Exercise 4.12: Root Nyquist Systems → Exercise 4.12: Root-Nyquist Systems
- Exercise 4.12Z: 4-QAM systems again → Exercise 4.12Z: 4-QAM Systems again
- Exercise 4.13: Gaussian ACF → Exercise 4.13: Gaussian ACF and PSD
- Exercise 4.15: PDF and Correlation Matrix → Exercise 4.15: PDF and Covariance Matrix
- Exercise 4.16Z: Multidimensional Data Reduction → Exercise 4.16Z: Multi-dimensional Data Reduction
- Exercise 4.16Z: Two-dimensional and Three-dimensional Data Reduction → Exercise 4.16Z: Multidimensional Data Reduction
- Exercise 4.17: Non-coherent On-Off Keying → Exercise 4.17: Non-Coherent On-Off Keying
- Exercise 4.18: Non-coherent FSK Demodulation → Exercise 4.18: Non-Coherent FSK Demodulation
- Exercise 4.1: Attenuation Constant → Exercise 4.1: Attenuation Function
- Exercise 4.1: Low-Pass and Bandpass Signals → Exercise 4.1: Low-Pass and Band-Pass Signals
- Exercise 4.1: Lowpass and Bandpass Signals → Exercise 4.1: Low-Pass and Bandpass Signals
- Exercise 4.1Z: Highpass System → Exercise 4.1Z: High-Pass System
- Exercise 4.1Z: Other Basic Functions → Exercise 4.1Z: Other Basis Functions
- Exercise 4.2: Channel LLR at AWGN → Exercise 4.2: Channel Log Likelihood Ratio at AWGN
- Exercise 4.2: Rectangular-Shaped Spectra → Exercise 4.2: Rectangular Spectra
- Exercise 4.2Z: Correlation between "x" and "e to the Power of x" → Exercise 4.2Z: Correlation between "x" and "e to the power of x"
- Exercise 4.2Z: Eight-step Phase Shift Keying → Exercise 4.2Z: Eight-level Phase Shift Keying
- Exercise 4.3: Effective Attenuation → Exercise 4.3: Operational Attenuation
- Exercise 4.3: Vector Diagram Representation → Exercise 4.3: Pointer Diagram Representation
- Exercise 4.3: WDF Comparison with Regard to Differential Entropy → Exercise 4.3: PDF Comparison with Regard to Differential Entropy
- Exercise 4.3Z: Dirac-shaped 2D PDF → Exercise 4.3Z: Dirac-shaped "2D-PDF"
- Exercise 4.4: Gaussian 2D PDF → Exercise 4.4: Two-dimensional Gaussian PDF
- Exercise 4.4: Vector Diagram for DSB-AM → Exercise 4.4: Pointer Diagram for DSB-AM
- Exercise 4.4Z: Contour Lines of the 2D PDF → Exercise 4.4Z: Contour Lines of the "2D-PDF"
- Exercise 4.4Z: Vector Diagram for DSB-AM → Exercise 4.4Z: Pointer Diagram for SSB-AM