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- 15:05, 28 April 2021 diff hist +9 161-A4.2 →Task description
- 22:32, 27 April 2021 diff hist +65 Channel coding theorem →Some examples current
- 22:27, 27 April 2021 diff hist +1,921 Jointly typical sequences →Important Properties current
- 22:04, 27 April 2021 diff hist +125 Jointly typical sequences
- 21:46, 27 April 2021 diff hist +9 Channel coding theorem →Example
- 12:18, 27 April 2021 diff hist +287 Channel coding theorem
- 10:35, 27 April 2021 diff hist +517 Channel coding theorem →The channel capacity is achievable
- 10:26, 27 April 2021 diff hist +191 Channel coding theorem →The channel capacity is achievable
- 10:23, 27 April 2021 diff hist +344 Channel coding theorem →We cannot do better than the channel capacity
- 10:18, 27 April 2021 diff hist +1,575 Channel coding theorem →We cannot do better than the channel capacity
- 09:56, 27 April 2021 diff hist +21 Channel coding theorem →Example: repetition code
- 09:54, 27 April 2021 diff hist +1,661 Channel coding theorem →Example: repetition code
- 08:53, 27 April 2021 diff hist +179 161-A4.2 →Task description
- 12:45, 22 April 2021 diff hist -10 Channel coding theorem →Example
- 11:27, 22 April 2021 diff hist +583 Channel coding theorem →Channel coding theorem
- 11:14, 22 April 2021 diff hist +2,653 Channel coding theorem →Channel capacity
- 15:26, 21 April 2021 diff hist -1 Asymptotic Equipartition Property →Special case: binary sequences current
- 15:25, 21 April 2021 diff hist -20 Asymptotic Equipartition Property
- 15:24, 21 April 2021 diff hist 0 Asymptotic Equipartition Property →Special case: binary sequences
- 13:27, 20 April 2021 diff hist +66 161-A4.2 →Expected output
- 08:59, 20 April 2021 diff hist +3,748 Jointly typical sequences
- 08:19, 20 April 2021 diff hist +69 161-A4.2 →Part 1: Implementation (6 points)
- 02:00, 20 April 2021 diff hist +109 Asymptotic Equipartition Property →Behavior for large n
- 01:58, 20 April 2021 diff hist +18 Asymptotic Equipartition Property →Special case: binary sequences
- 01:56, 20 April 2021 diff hist +1 Nonnegativity of Information Measures →Proof current
- 11:24, 19 April 2021 diff hist +73 CoE 161 S2 AY 2020-2021 →References
- 11:21, 19 April 2021 diff hist 0 CoE 161 S2 AY 2020-2021 →Syllabus
- 11:20, 19 April 2021 diff hist +8 CoE 161 S2 AY 2020-2021 →Syllabus
- 11:19, 19 April 2021 diff hist +30 Channel coding theorem
- 11:18, 19 April 2021 diff hist +73 N Channel coding theorem Created page with "== Channel capacity == == Random coding argument == == Some examples =="
- 11:15, 19 April 2021 diff hist +77 N Jointly typical sequences Created page with "== Definition == == Illustration == == Example: Binary symmetric channel =="
- 01:30, 19 April 2021 diff hist -14 CoE 161 S2 AY 2020-2021 →Syllabus
- 01:27, 19 April 2021 diff hist +6,107 Asymptotic Equipartition Property
- 16:09, 12 April 2021 diff hist +7 161-A4.2 →The Typical Set Decoder
- 16:06, 12 April 2021 diff hist +22 161-A4.2 →Expected output
- 16:02, 12 April 2021 diff hist +14 161-A4.2 →Expected output
- 16:00, 12 April 2021 diff hist +12 161-A4.2 →Expected output
- 15:58, 12 April 2021 diff hist 0 161-A4.2 →Expected output
- 15:57, 12 April 2021 diff hist +103 161-A4.2 →Task description
- 15:55, 12 April 2021 diff hist +9,435 N 161-A4.2 Created page with "== The Typical Set Encoder == To transmit <math>k</math> bits of information, we can draw a symbol from a <math>2^k</math>-ary source alphabet <math>\{1, 2, 3, ..., 2^{k}\}</m..."
- 15:53, 12 April 2021 diff hist +4 CoE 161 S2 AY 2020-2021 →Syllabus
- 07:49, 5 April 2021 diff hist 0 161-A3.2 current
- 07:36, 5 April 2021 diff hist +91 161-A3.2
- 18:48, 28 March 2021 diff hist 0 161-A2.2 →Sample input current
- 14:49, 27 March 2021 diff hist +123 161-A3.2 →Exercises (10 points)
- 14:46, 27 March 2021 diff hist -8 161-A3.2 →Proving Exercises (10 points)
- 14:46, 27 March 2021 diff hist +4 CoE 161 S2 AY 2020-2021 →Syllabus
- 14:45, 27 March 2021 diff hist +19 161-A3.2 →Exercises
- 14:44, 27 March 2021 diff hist +737 161-A3.2
- 14:35, 27 March 2021 diff hist +865 N 161-A3.2 Created page with "== Exercises == # (3 points) Let <math>X,Y</math> be independent and uniformly distributed random variables over the common alphabet <math>\{0, 1\}</math>, and define a third..."