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  1. Applets to "Theory of Stochastic Signals"‏‎ (2 links)
  2. Exercise 5.8: Matched Filter for Colored Interference‏‎ (2 links)
  3. Exercise 3.4Z: Equivalent Convolution Codes?‏‎ (2 links)
  4. Exercise 1.6Z: Interpretation of the Frequency Response‏‎ (2 links)
  5. Exercise 4.2Z: Multiplication with a Sine Signal‏‎ (2 links)
  6. Exercise 3.2: Expected Value Calculations‏‎ (2 links)
  7. Exercise 3.3: Noise at Channel Equalization‏‎ (2 links)
  8. Exercise 3.09: Basics of the Viterbi Algorithm‏‎ (2 links)
  9. Exercise 2.2Z: Distortion Power again‏‎ (2 links)
  10. Exercise 3.5: Triangular and Trapezoidal Signal‏‎ (2 links)
  11. Exercise 4.1: Low-Pass and Bandpass Signals‏‎ (2 links)
  12. Imprint for the book "Channel Coding"‏‎ (2 links)
  13. Sprachcodecs‏‎ (2 links)
  14. Aufgabe 3.15: Data Processing Theorem‏‎ (2 links)
  15. Aufgabe 2.4: Frequenz– und Phasenversatz‏‎ (2 links)
  16. Exercise 3.6Z:Optimum Nyquist Equalizer for Exponential Pulse‏‎ (2 links)
  17. Exercise 1.3Z: Threshold Optimization‏‎ (2 links)
  18. Exercise 3.14: Error Probability Bounds‏‎ (2 links)
  19. Exercise 2.3Z: Asymmetrical Characteristic Operation‏‎ (2 links)
  20. Exercise 3.7Z: Error Performance‏‎ (2 links)
  21. General Notes about the Book "Stochastic Signal Theory"‏‎ (2 links)
  22. Exercise 1.2Z: Three-dimensional Representation of Codes‏‎ (2 links)
  23. Exercise 4.5Z: Simple Phase Modulator‏‎ (2 links)
  24. Exercise 1.2Z: Lognormal Fading Revisited‏‎ (2 links)
  25. Exercise 2.8: Asymmetrical Channel‏‎ (2 links)
  26. Exercise 3.10: Maximum Likelihood Tree Diagram‏‎ (2 links)
  27. Exercise 1.1Z: Binary Entropy Function‏‎ (2 links)
  28. Theory of Stochastic Signals/Statistische Abhängigkeit und Unabhängigkeit‏‎ (2 links)
  29. Exercise 2.7: Two-Way Channel once more‏‎ (2 links)
  30. Exercise 3.10: Rayleigh Fading‏‎ (2 links)
  31. Exercise 1.6Z: Comparison of Rayleigh and Rice‏‎ (2 links)
  32. Exercise 3.1: Phase Modulation Locus Curve‏‎ (2 links)
  33. Aufgabe 4.2: AM/PM-Schwingungen‏‎ (2 links)
  34. Exercise 3.3Z: High- and Low-Pass Filters in p-Form‏‎ (2 links)
  35. Exercise 4.3: Algebraic and Modulo Sum‏‎ (2 links)
  36. Exercise 1.15: Distance Spectra of HC (7, 4, 3) and HC (8, 4, 4)‏‎ (2 links)
  37. Exercise 5.5Z: Complexity of the FFT‏‎ (2 links)
  38. Exercise 2.2Z: Real Two-Path Channel‏‎ (2 links)
  39. Exercise 4.3: PDF Comparison with Regard to Differential Entropy‏‎ (2 links)
  40. Imprint for the book "Examples of Communication Systems"‏‎ (2 links)
  41. Aufgabe 4.06: Optimale Entscheidungsgrenzen‏‎ (2 links)
  42. Exercise 2.4Z: Repetition to IDFT‏‎ (2 links)
  43. Exercise 4.13: Decoding LDPC Codes‏‎ (2 links)
  44. Exercise 3.7Z: Partial Fraction Decomposition‏‎ (2 links)
  45. Exercise 2.8: COST Delay Models‏‎ (2 links)
  46. Exercise 2.5: Half-Wave Rectification‏‎ (2 links)
  47. Exercise 4.6: AWGN Channel Capacity‏‎ (2 links)
  48. Exercise 3.10: Noise Power Calculation‏‎ (2 links)
  49. Exercise 4.08Z: Error Probability with Three Symbols‏‎ (2 links)
  50. Exercise 2.2Z: Average Code Word Length‏‎ (2 links)

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