2007
DOI: 10.1016/j.disc.2006.09.026
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Pair covering designs with block size 5

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Cited by 11 publications
(26 citation statements)
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“…Theorem 7 (Abel et al [2,8], Abel and Greig [9], Hanani [29] There is one very useful way (namely, completion) of exploiting RGDDs. We state the result as follows.…”
Section: Definitionmentioning
confidence: 98%
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“…Theorem 7 (Abel et al [2,8], Abel and Greig [9], Hanani [29] There is one very useful way (namely, completion) of exploiting RGDDs. We state the result as follows.…”
Section: Definitionmentioning
confidence: 98%
“…Using q = 9, 11 and 13 in Lemma 35 (1), we can deal with v 45 + w for w 8 and using q = 8, 9, 11 and 13 in Lemmas 35(2) and 35 (3), we can deal with v 5w for 8 w 14, until this overlaps with the 80 + w value established above. For w = 15, truncating a TD(6, 15) as in Lemma 35 (2) covers 80 v 90 plus v = 75, 76. Taking a TD (15,16), we may truncate 9 groups to have size at most 1, to get a K 6 -GDD of type 16 6 1 t so that 1 t 9, then delete a block of size 6 to get K 5 -GDD of type 15 6 …”
Section: Lemma 35mentioning
confidence: 99%
“…For n ¼ v À 24, we give a f4; 5; 8g-GDD of type 4 n=4 over Z n with six base blocks of size 4, which generate four parallel classes each, since they consist of points that are distinct (mod 4). Adding an extra point to each parallel class then gives a f5; 8g-GDD of type 4 n 24 1 ; fill in the groups with one more new point.…”
Section: Some New Quintessential Pbdsmentioning
confidence: 99%
“…The value 93 2 Bðf5; 9gÞ was obtained in [10], by adding 21 infinite points, one to each parallel class of a 4-RGDDð9 8 Þ; for this RGDD, see [26]. [1], and form a ð49; f5; 6; 8gÞ-PBD on these points.…”
Section: The Case K ¼ F5; 7gmentioning
confidence: 99%
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