Information on Result #1882562
Linear OA(20, s, F2, 0) (dual of [s, s, 1]-code) for arbitrarily large s, using OA with only one run / dual of code without redundancy
Mode: Constructive and linear.
Optimality
Show details for fixed k and m, n and k, k and s, k and t, n and m, m and s, m and t, n and t.
Other Results with Identical Parameters
None.
Depending Results
The following results depend on this result:
Result | This result only | Method | ||
---|---|---|---|---|
1 | Linear OA(2m, m+n, F2, 1) (dual of [m+n, n, 2]-code) with arbitrarily large m for all sufficiently large n | [i] | Repeating Each Code Word | |
2 | Linear OA(2m, m+n, F2, 2) (dual of [m+n, n, 3]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
3 | Linear OA(2m, m+n, F2, 3) (dual of [m+n, n, 4]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
4 | Linear OA(2m, m+n, F2, 4) (dual of [m+n, n, 5]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
5 | Linear OA(2m, m+n, F2, 5) (dual of [m+n, n, 6]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
6 | Linear OA(2m, m+n, F2, 6) (dual of [m+n, n, 7]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
7 | Linear OA(2m, m+n, F2, 7) (dual of [m+n, n, 8]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
8 | Linear OA(2m, m+n, F2, 8) (dual of [m+n, n, 9]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
9 | Linear OA(2m, m+n, F2, 9) (dual of [m+n, n, 10]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
10 | Linear OA(2m, m+n, F2, 10) (dual of [m+n, n, 11]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
11 | Linear OA(2m, m+n, F2, 11) (dual of [m+n, n, 12]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
12 | Linear OA(2m, m+n, F2, 12) (dual of [m+n, n, 13]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
13 | Linear OA(2m, m+n, F2, 13) (dual of [m+n, n, 14]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
14 | Linear OA(2m, m+n, F2, 14) (dual of [m+n, n, 15]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
15 | Linear OA(2m, m+n, F2, 15) (dual of [m+n, n, 16]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
16 | Linear OA(2m, m+n, F2, 16) (dual of [m+n, n, 17]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
17 | Linear OA(2m, m+n, F2, 17) (dual of [m+n, n, 18]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
18 | Linear OA(2m, m+n, F2, 18) (dual of [m+n, n, 19]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
19 | Linear OA(2m, m+n, F2, 19) (dual of [m+n, n, 20]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
20 | Linear OA(2m, m+n, F2, 20) (dual of [m+n, n, 21]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
21 | Linear OA(2m, m+n, F2, 21) (dual of [m+n, n, 22]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
22 | Linear OA(2m, m+n, F2, 22) (dual of [m+n, n, 23]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
23 | Linear OA(2m, m+n, F2, 23) (dual of [m+n, n, 24]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
24 | Linear OA(2m, m+n, F2, 24) (dual of [m+n, n, 25]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
25 | Linear OA(2m, m+n, F2, 25) (dual of [m+n, n, 26]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
26 | Linear OA(2m, m+n, F2, 26) (dual of [m+n, n, 27]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
27 | Linear OA(2m, m+n, F2, 27) (dual of [m+n, n, 28]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
28 | Linear OA(2m, m+n, F2, 28) (dual of [m+n, n, 29]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
29 | Linear OA(2m, m+n, F2, 29) (dual of [m+n, n, 30]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
30 | Linear OA(2m, m+n, F2, 30) (dual of [m+n, n, 31]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
31 | Linear OA(2m, m+n, F2, 31) (dual of [m+n, n, 32]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
32 | Linear OA(2m, m+n, F2, 32) (dual of [m+n, n, 33]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
33 | Linear OA(2m, m+n, F2, 33) (dual of [m+n, n, 34]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
34 | Linear OA(2m, m+n, F2, 34) (dual of [m+n, n, 35]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
35 | Linear OA(2m, m+n, F2, 35) (dual of [m+n, n, 36]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
36 | Linear OA(2m, m+n, F2, 36) (dual of [m+n, n, 37]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
37 | Linear OA(2m, m+n, F2, 37) (dual of [m+n, n, 38]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
38 | Linear OA(2m, m+n, F2, 38) (dual of [m+n, n, 39]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
39 | Linear OA(2m, m+n, F2, 39) (dual of [m+n, n, 40]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
40 | Linear OA(2m, m+n, F2, 40) (dual of [m+n, n, 41]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
41 | Linear OA(2m, m+n, F2, 41) (dual of [m+n, n, 42]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
42 | Linear OA(2m, m+n, F2, 42) (dual of [m+n, n, 43]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
43 | Linear OA(2m, m+n, F2, 43) (dual of [m+n, n, 44]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
44 | Linear OA(2m, m+n, F2, 44) (dual of [m+n, n, 45]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
45 | Linear OA(2m, m+n, F2, 45) (dual of [m+n, n, 46]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
46 | Linear OA(2m, m+n, F2, 46) (dual of [m+n, n, 47]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
47 | Linear OA(2m, m+n, F2, 47) (dual of [m+n, n, 48]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
48 | Linear OA(2m, m+n, F2, 48) (dual of [m+n, n, 49]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
49 | Linear OA(2m, m+n, F2, 49) (dual of [m+n, n, 50]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
50 | Linear OA(2m, m+n, F2, 50) (dual of [m+n, n, 51]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
51 | Linear OA(2m, m+n, F2, 51) (dual of [m+n, n, 52]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
52 | Linear OA(2m, m+n, F2, 52) (dual of [m+n, n, 53]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
53 | Linear OA(2m, m+n, F2, 53) (dual of [m+n, n, 54]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
54 | Linear OA(2m, m+n, F2, 54) (dual of [m+n, n, 55]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
55 | Linear OA(2m, m+n, F2, 55) (dual of [m+n, n, 56]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
56 | Linear OA(2m, m+n, F2, 56) (dual of [m+n, n, 57]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
57 | Linear OA(2m, m+n, F2, 57) (dual of [m+n, n, 58]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
58 | Linear OA(2m, m+n, F2, 58) (dual of [m+n, n, 59]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
59 | Linear OA(2m, m+n, F2, 59) (dual of [m+n, n, 60]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
60 | Linear OA(2m, m+n, F2, 60) (dual of [m+n, n, 61]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
61 | Linear OA(2m, m+n, F2, 61) (dual of [m+n, n, 62]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
62 | Linear OA(2m, m+n, F2, 62) (dual of [m+n, n, 63]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
63 | Linear OA(2m, m+n, F2, 63) (dual of [m+n, n, 64]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
64 | Linear OA(2m, m+n, F2, 64) (dual of [m+n, n, 65]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
65 | Linear OA(2m, m+n, F2, 65) (dual of [m+n, n, 66]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
66 | Linear OA(2m, m+n, F2, 66) (dual of [m+n, n, 67]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
67 | Linear OA(2m, m+n, F2, 67) (dual of [m+n, n, 68]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
68 | Linear OA(2m, m+n, F2, 68) (dual of [m+n, n, 69]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
69 | Linear OA(2m, m+n, F2, 69) (dual of [m+n, n, 70]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
70 | Linear OA(2m, m+n, F2, 70) (dual of [m+n, n, 71]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
71 | Linear OA(2m, m+n, F2, 71) (dual of [m+n, n, 72]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
72 | Linear OA(2m, m+n, F2, 72) (dual of [m+n, n, 73]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
73 | Linear OA(2m, m+n, F2, 73) (dual of [m+n, n, 74]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
74 | Linear OA(2m, m+n, F2, 74) (dual of [m+n, n, 75]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
75 | Linear OA(2m, m+n, F2, 75) (dual of [m+n, n, 76]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
76 | Linear OA(2m, m+n, F2, 76) (dual of [m+n, n, 77]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
77 | Linear OA(2m, m+n, F2, 77) (dual of [m+n, n, 78]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
78 | Linear OA(2m, m+n, F2, 78) (dual of [m+n, n, 79]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
79 | Linear OA(2m, m+n, F2, 79) (dual of [m+n, n, 80]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
80 | Linear OA(2m, m+n, F2, 80) (dual of [m+n, n, 81]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
81 | Linear OA(2m, m+n, F2, 81) (dual of [m+n, n, 82]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
82 | Linear OA(2m, m+n, F2, 82) (dual of [m+n, n, 83]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
83 | Linear OA(2m, m+n, F2, 83) (dual of [m+n, n, 84]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
84 | Linear OA(2m, m+n, F2, 84) (dual of [m+n, n, 85]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
85 | Linear OA(2m, m+n, F2, 85) (dual of [m+n, n, 86]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
86 | Linear OA(2m, m+n, F2, 86) (dual of [m+n, n, 87]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
87 | Linear OA(2m, m+n, F2, 87) (dual of [m+n, n, 88]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
88 | Linear OA(2m, m+n, F2, 88) (dual of [m+n, n, 89]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
89 | Linear OA(2m, m+n, F2, 89) (dual of [m+n, n, 90]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
90 | Linear OA(2m, m+n, F2, 90) (dual of [m+n, n, 91]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
91 | Linear OA(2m, m+n, F2, 91) (dual of [m+n, n, 92]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
92 | Linear OA(2m, m+n, F2, 92) (dual of [m+n, n, 93]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
93 | Linear OA(2m, m+n, F2, 93) (dual of [m+n, n, 94]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
94 | Linear OA(2m, m+n, F2, 94) (dual of [m+n, n, 95]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
95 | Linear OA(2m, m+n, F2, 95) (dual of [m+n, n, 96]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
96 | Linear OA(2m, m+n, F2, 96) (dual of [m+n, n, 97]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
97 | Linear OA(2m, m+n, F2, 97) (dual of [m+n, n, 98]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
98 | Linear OA(2m, m+n, F2, 98) (dual of [m+n, n, 99]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
99 | Linear OA(2m, m+n, F2, 99) (dual of [m+n, n, 100]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
100 | Linear OA(2m, m+n, F2, 100) (dual of [m+n, n, 101]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
101 | Linear OA(2m, m+n, F2, 101) (dual of [m+n, n, 102]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
102 | Linear OA(2m, m+n, F2, 102) (dual of [m+n, n, 103]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
103 | Linear OA(2m, m+n, F2, 103) (dual of [m+n, n, 104]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
104 | Linear OA(2m, m+n, F2, 104) (dual of [m+n, n, 105]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
105 | Linear OA(2m, m+n, F2, 105) (dual of [m+n, n, 106]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
106 | Linear OA(2m, m+n, F2, 106) (dual of [m+n, n, 107]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
107 | Linear OA(2m, m+n, F2, 107) (dual of [m+n, n, 108]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
108 | Linear OA(2m, m+n, F2, 108) (dual of [m+n, n, 109]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
109 | Linear OA(2m, m+n, F2, 109) (dual of [m+n, n, 110]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
110 | Linear OA(2m, m+n, F2, 110) (dual of [m+n, n, 111]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
111 | Linear OA(2m, m+n, F2, 111) (dual of [m+n, n, 112]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
112 | Linear OA(2m, m+n, F2, 112) (dual of [m+n, n, 113]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
113 | Linear OA(2m, m+n, F2, 113) (dual of [m+n, n, 114]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
114 | Linear OA(2m, m+n, F2, 114) (dual of [m+n, n, 115]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
115 | Linear OA(2m, m+n, F2, 115) (dual of [m+n, n, 116]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
116 | Linear OA(2m, m+n, F2, 116) (dual of [m+n, n, 117]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
117 | Linear OA(2m, m+n, F2, 117) (dual of [m+n, n, 118]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
118 | Linear OA(2m, m+n, F2, 118) (dual of [m+n, n, 119]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
119 | Linear OA(2m, m+n, F2, 119) (dual of [m+n, n, 120]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
120 | Linear OA(2m, m+n, F2, 120) (dual of [m+n, n, 121]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
121 | Linear OA(2m, m+n, F2, 121) (dual of [m+n, n, 122]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
122 | Linear OA(2m, m+n, F2, 122) (dual of [m+n, n, 123]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
123 | Linear OA(2m, m+n, F2, 123) (dual of [m+n, n, 124]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
124 | Linear OA(2m, m+n, F2, 124) (dual of [m+n, n, 125]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
125 | Linear OA(2m, m+n, F2, 125) (dual of [m+n, n, 126]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
126 | Linear OA(2m, m+n, F2, 126) (dual of [m+n, n, 127]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
127 | Linear OA(2m, m+n, F2, 127) (dual of [m+n, n, 128]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
128 | Linear OA(2m, m+n, F2, 128) (dual of [m+n, n, 129]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
129 | Linear OA(2m, m+n, F2, 129) (dual of [m+n, n, 130]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
130 | Linear OA(2m, m+n, F2, 130) (dual of [m+n, n, 131]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
131 | Linear OA(2m, m+n, F2, 131) (dual of [m+n, n, 132]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
132 | Linear OA(2m, m+n, F2, 132) (dual of [m+n, n, 133]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
133 | Linear OA(2m, m+n, F2, 133) (dual of [m+n, n, 134]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
134 | Linear OA(2m, m+n, F2, 134) (dual of [m+n, n, 135]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
135 | Linear OA(2m, m+n, F2, 135) (dual of [m+n, n, 136]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
136 | Linear OA(2m, m+n, F2, 136) (dual of [m+n, n, 137]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
137 | Linear OA(2m, m+n, F2, 137) (dual of [m+n, n, 138]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
138 | Linear OA(2m, m+n, F2, 138) (dual of [m+n, n, 139]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
139 | Linear OA(2m, m+n, F2, 139) (dual of [m+n, n, 140]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
140 | Linear OA(2m, m+n, F2, 140) (dual of [m+n, n, 141]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
141 | Linear OA(2m, m+n, F2, 141) (dual of [m+n, n, 142]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
142 | Linear OA(2m, m+n, F2, 142) (dual of [m+n, n, 143]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
143 | Linear OA(2m, m+n, F2, 143) (dual of [m+n, n, 144]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
144 | Linear OA(2m, m+n, F2, 144) (dual of [m+n, n, 145]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
145 | Linear OA(2m, m+n, F2, 145) (dual of [m+n, n, 146]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
146 | Linear OA(2m, m+n, F2, 146) (dual of [m+n, n, 147]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
147 | Linear OA(2m, m+n, F2, 147) (dual of [m+n, n, 148]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
148 | Linear OA(2m, m+n, F2, 148) (dual of [m+n, n, 149]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
149 | Linear OA(2m, m+n, F2, 149) (dual of [m+n, n, 150]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
150 | Linear OA(2m, m+n, F2, 150) (dual of [m+n, n, 151]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
151 | Linear OA(2m, m+n, F2, 151) (dual of [m+n, n, 152]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
152 | Linear OA(2m, m+n, F2, 152) (dual of [m+n, n, 153]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
153 | Linear OA(2m, m+n, F2, 153) (dual of [m+n, n, 154]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
154 | Linear OA(2m, m+n, F2, 154) (dual of [m+n, n, 155]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
155 | Linear OA(2m, m+n, F2, 155) (dual of [m+n, n, 156]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
156 | Linear OA(2m, m+n, F2, 156) (dual of [m+n, n, 157]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
157 | Linear OA(2m, m+n, F2, 157) (dual of [m+n, n, 158]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
158 | Linear OA(2m, m+n, F2, 158) (dual of [m+n, n, 159]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
159 | Linear OA(2m, m+n, F2, 159) (dual of [m+n, n, 160]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
160 | Linear OA(2m, m+n, F2, 160) (dual of [m+n, n, 161]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
161 | Linear OA(2m, m+n, F2, 161) (dual of [m+n, n, 162]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
162 | Linear OA(2m, m+n, F2, 162) (dual of [m+n, n, 163]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
163 | Linear OA(2m, m+n, F2, 163) (dual of [m+n, n, 164]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
164 | Linear OA(2m, m+n, F2, 164) (dual of [m+n, n, 165]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
165 | Linear OA(2m, m+n, F2, 165) (dual of [m+n, n, 166]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
166 | Linear OA(2m, m+n, F2, 166) (dual of [m+n, n, 167]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
167 | Linear OA(2m, m+n, F2, 167) (dual of [m+n, n, 168]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
168 | Linear OA(2m, m+n, F2, 168) (dual of [m+n, n, 169]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
169 | Linear OA(2m, m+n, F2, 169) (dual of [m+n, n, 170]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
170 | Linear OA(2m, m+n, F2, 170) (dual of [m+n, n, 171]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
171 | Linear OA(2m, m+n, F2, 171) (dual of [m+n, n, 172]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
172 | Linear OA(2m, m+n, F2, 172) (dual of [m+n, n, 173]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
173 | Linear OA(2m, m+n, F2, 173) (dual of [m+n, n, 174]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
174 | Linear OA(2m, m+n, F2, 174) (dual of [m+n, n, 175]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
175 | Linear OA(2m, m+n, F2, 175) (dual of [m+n, n, 176]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
176 | Linear OA(2m, m+n, F2, 176) (dual of [m+n, n, 177]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
177 | Linear OA(2m, m+n, F2, 177) (dual of [m+n, n, 178]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
178 | Linear OA(2m, m+n, F2, 178) (dual of [m+n, n, 179]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
179 | Linear OA(2m, m+n, F2, 179) (dual of [m+n, n, 180]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
180 | Linear OA(2m, m+n, F2, 180) (dual of [m+n, n, 181]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
181 | Linear OA(2m, m+n, F2, 181) (dual of [m+n, n, 182]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
182 | Linear OA(2m, m+n, F2, 182) (dual of [m+n, n, 183]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
183 | Linear OA(2m, m+n, F2, 183) (dual of [m+n, n, 184]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
184 | Linear OA(2m, m+n, F2, 184) (dual of [m+n, n, 185]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
185 | Linear OA(2m, m+n, F2, 185) (dual of [m+n, n, 186]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
186 | Linear OA(2m, m+n, F2, 186) (dual of [m+n, n, 187]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
187 | Linear OA(2m, m+n, F2, 187) (dual of [m+n, n, 188]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
188 | Linear OA(2m, m+n, F2, 188) (dual of [m+n, n, 189]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
189 | Linear OA(2m, m+n, F2, 189) (dual of [m+n, n, 190]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
190 | Linear OA(2m, m+n, F2, 190) (dual of [m+n, n, 191]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
191 | Linear OA(2m, m+n, F2, 191) (dual of [m+n, n, 192]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
192 | Linear OA(2m, m+n, F2, 192) (dual of [m+n, n, 193]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
193 | Linear OA(2m, m+n, F2, 193) (dual of [m+n, n, 194]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
194 | Linear OA(2m, m+n, F2, 194) (dual of [m+n, n, 195]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
195 | Linear OA(2m, m+n, F2, 195) (dual of [m+n, n, 196]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
196 | Linear OA(2m, m+n, F2, 196) (dual of [m+n, n, 197]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
197 | Linear OA(2m, m+n, F2, 197) (dual of [m+n, n, 198]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
198 | Linear OA(2m, m+n, F2, 198) (dual of [m+n, n, 199]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
199 | Linear OA(2m, m+n, F2, 199) (dual of [m+n, n, 200]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
200 | Linear OA(2m, m+n, F2, 200) (dual of [m+n, n, 201]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
201 | Linear OA(2m, m+n, F2, 201) (dual of [m+n, n, 202]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
202 | Linear OA(2m, m+n, F2, 202) (dual of [m+n, n, 203]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
203 | Linear OA(2m, m+n, F2, 203) (dual of [m+n, n, 204]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
204 | Linear OA(2m, m+n, F2, 204) (dual of [m+n, n, 205]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
205 | Linear OA(2m, m+n, F2, 205) (dual of [m+n, n, 206]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
206 | Linear OA(2m, m+n, F2, 206) (dual of [m+n, n, 207]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
207 | Linear OA(2m, m+n, F2, 207) (dual of [m+n, n, 208]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
208 | Linear OA(2m, m+n, F2, 208) (dual of [m+n, n, 209]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
209 | Linear OA(2m, m+n, F2, 209) (dual of [m+n, n, 210]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
210 | Linear OA(2m, m+n, F2, 210) (dual of [m+n, n, 211]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
211 | Linear OA(2m, m+n, F2, 211) (dual of [m+n, n, 212]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
212 | Linear OA(2m, m+n, F2, 212) (dual of [m+n, n, 213]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
213 | Linear OA(2m, m+n, F2, 213) (dual of [m+n, n, 214]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
214 | Linear OA(2m, m+n, F2, 214) (dual of [m+n, n, 215]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
215 | Linear OA(2m, m+n, F2, 215) (dual of [m+n, n, 216]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
216 | Linear OA(2m, m+n, F2, 216) (dual of [m+n, n, 217]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
217 | Linear OA(2m, m+n, F2, 217) (dual of [m+n, n, 218]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
218 | Linear OA(2m, m+n, F2, 218) (dual of [m+n, n, 219]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
219 | Linear OA(2m, m+n, F2, 219) (dual of [m+n, n, 220]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
220 | Linear OA(2m, m+n, F2, 220) (dual of [m+n, n, 221]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
221 | Linear OA(2m, m+n, F2, 221) (dual of [m+n, n, 222]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
222 | Linear OA(2m, m+n, F2, 222) (dual of [m+n, n, 223]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
223 | Linear OA(2m, m+n, F2, 223) (dual of [m+n, n, 224]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
224 | Linear OA(2m, m+n, F2, 224) (dual of [m+n, n, 225]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
225 | Linear OA(2m, m+n, F2, 225) (dual of [m+n, n, 226]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
226 | Linear OA(2m, m+n, F2, 226) (dual of [m+n, n, 227]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
227 | Linear OA(2m, m+n, F2, 227) (dual of [m+n, n, 228]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
228 | Linear OA(2m, m+n, F2, 228) (dual of [m+n, n, 229]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
229 | Linear OA(2m, m+n, F2, 229) (dual of [m+n, n, 230]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
230 | Linear OA(2m, m+n, F2, 230) (dual of [m+n, n, 231]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
231 | Linear OA(2m, m+n, F2, 231) (dual of [m+n, n, 232]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
232 | Linear OA(2m, m+n, F2, 232) (dual of [m+n, n, 233]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
233 | Linear OA(2m, m+n, F2, 233) (dual of [m+n, n, 234]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
234 | Linear OA(2m, m+n, F2, 234) (dual of [m+n, n, 235]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
235 | Linear OA(2m, m+n, F2, 235) (dual of [m+n, n, 236]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
236 | Linear OA(2m, m+n, F2, 236) (dual of [m+n, n, 237]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
237 | Linear OA(2m, m+n, F2, 237) (dual of [m+n, n, 238]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
238 | Linear OA(2m, m+n, F2, 238) (dual of [m+n, n, 239]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
239 | Linear OA(2m, m+n, F2, 239) (dual of [m+n, n, 240]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
240 | Linear OA(2m, m+n, F2, 240) (dual of [m+n, n, 241]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
241 | Linear OA(2m, m+n, F2, 241) (dual of [m+n, n, 242]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
242 | Linear OA(2m, m+n, F2, 242) (dual of [m+n, n, 243]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
243 | Linear OA(2m, m+n, F2, 243) (dual of [m+n, n, 244]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
244 | Linear OA(2m, m+n, F2, 244) (dual of [m+n, n, 245]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
245 | Linear OA(2m, m+n, F2, 245) (dual of [m+n, n, 246]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
246 | Linear OA(2m, m+n, F2, 246) (dual of [m+n, n, 247]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
247 | Linear OA(2m, m+n, F2, 247) (dual of [m+n, n, 248]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
248 | Linear OA(2m, m+n, F2, 248) (dual of [m+n, n, 249]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
249 | Linear OA(2m, m+n, F2, 249) (dual of [m+n, n, 250]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
250 | Linear OA(2m, m+n, F2, 250) (dual of [m+n, n, 251]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
251 | Linear OA(2m, m+n, F2, 251) (dual of [m+n, n, 252]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
252 | Linear OA(2m, m+n, F2, 252) (dual of [m+n, n, 253]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
253 | Linear OA(2m, m+n, F2, 253) (dual of [m+n, n, 254]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
254 | Linear OA(2m, m+n, F2, 254) (dual of [m+n, n, 255]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
255 | Linear OA(2m, m+n, F2, 255) (dual of [m+n, n, 256]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
256 | Linear OA(2m, m+n, F2, 256) (dual of [m+n, n, 257]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
257 | Linear OA(2m, m+n, F2, 257) (dual of [m+n, n, 258]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
258 | Linear OA(2m, m+n, F2, 258) (dual of [m+n, n, 259]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
259 | Linear OA(2m, m+n, F2, 259) (dual of [m+n, n, 260]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
260 | Linear OA(2m, m+n, F2, 260) (dual of [m+n, n, 261]-code) with arbitrarily large m for all sufficiently large n | [i] | ||
261 | Linear OA(2m, m+n, F2, k) (dual of [m+n, n, k+1]-code) with arbitrarily large values for k and n provided that m is sufficiently large | [i] | ||
262 | Linear OA(2256, 277, F2, 112) (dual of [277, 21, 113]-code) | [i] | Juxtaposition | |
263 | Linear OA(2195, 211, F2, 88) (dual of [211, 16, 89]-code) | [i] | ||
264 | Linear OA(2194, 209, F2, 88) (dual of [209, 15, 89]-code) | [i] | ||
265 | Linear OA(2192, 206, F2, 88) (dual of [206, 14, 89]-code) | [i] | ||
266 | Linear OA(2191, 204, F2, 88) (dual of [204, 13, 89]-code) | [i] | ||
267 | Linear OA(2256, 269, F2, 120) (dual of [269, 13, 121]-code) | [i] | ||
268 | Linear OA(2196, 205, F2, 96) (dual of [205, 9, 97]-code) | [i] | ||
269 | Linear OA(2256, 265, F2, 128) (dual of [265, 9, 129]-code) | [i] | ||
270 | Linear OA(2128, 136, F2, 64) (dual of [136, 8, 65]-code) | [i] | ||
271 | Linear OA(2255, 263, F2, 128) (dual of [263, 8, 129]-code) | [i] | ||
272 | Linear OA(264, 71, F2, 32) (dual of [71, 7, 33]-code) | [i] | ||
273 | Linear OA(2127, 134, F2, 64) (dual of [134, 7, 65]-code) | [i] | ||
274 | Linear OA(2102, 111, F2, 48) (dual of [111, 9, 49]-code) | [i] | ||
275 | Linear OA(213, 66, F2, 5) (dual of [66, 53, 6]-code) | [i] | Construction X with Cyclic Codes | |
276 | Linear OA(217, 258, F2, 5) (dual of [258, 241, 6]-code) | [i] | ||
277 | Linear OA(221, 1026, F2, 5) (dual of [1026, 1005, 6]-code) | [i] | ||
278 | Linear OA(225, 4098, F2, 5) (dual of [4098, 4073, 6]-code) | [i] | ||
279 | Linear OA(229, 16386, F2, 5) (dual of [16386, 16357, 6]-code) | [i] | ||
280 | Linear OA(233, 65538, F2, 5) (dual of [65538, 65505, 6]-code) | [i] | ||
281 | Linear OA(237, 262146, F2, 5) (dual of [262146, 262109, 6]-code) | [i] | ||
282 | Linear OA(241, 1048578, F2, 5) (dual of [1048578, 1048537, 6]-code) | [i] | ||
283 | Linear OA(245, 4194306, F2, 5) (dual of [4194306, 4194261, 6]-code) | [i] | ||
284 | Linear OA(285, 128, F2, 31) (dual of [128, 43, 32]-code) | [i] | ||
285 | Linear OA(2260, 1041, F2, 52) (dual of [1041, 781, 53]-code) | [i] | Construction XX with a Chain of Extended Narrow-Sense BCH Codes | |
286 | Linear OA(2242, 574, F2, 52) (dual of [574, 332, 53]-code) | [i] | Construction X with Varšamov Bound | |
287 | Linear OA(2243, 576, F2, 52) (dual of [576, 333, 53]-code) | [i] | ||
288 | Linear OA(2244, 578, F2, 52) (dual of [578, 334, 53]-code) | [i] | ||
289 | Linear OA(2245, 580, F2, 52) (dual of [580, 335, 53]-code) | [i] | ||
290 | Linear OA(2249, 393, F2, 66) (dual of [393, 144, 67]-code) | [i] | ||
291 | Linear OA(2249, 463, F2, 60) (dual of [463, 214, 61]-code) | [i] | ||
292 | Linear OA(2250, 465, F2, 60) (dual of [465, 215, 61]-code) | [i] | ||
293 | Linear OA(2249, 576, F2, 54) (dual of [576, 327, 55]-code) | [i] | ||
294 | Linear OA(2250, 578, F2, 54) (dual of [578, 328, 55]-code) | [i] | ||
295 | Linear OA(2251, 580, F2, 54) (dual of [580, 329, 55]-code) | [i] | ||
296 | Linear OA(2251, 467, F2, 60) (dual of [467, 216, 61]-code) | [i] | ||
297 | Linear OA(2260, 401, F2, 70) (dual of [401, 141, 71]-code) | [i] | ||
298 | Linear OA(2260, 435, F2, 66) (dual of [435, 175, 67]-code) | [i] |