Equation 677 Database

Magma 3972d5edde8d…

magma 3972d5edde8d
Size
147
Isomorphism class hash
3972d5edde8d5790f4c601bba93bd0419a3a01c50bbeb60edf502a24be48563f
Satisfies Equation 255
yes
Right-cancellative
yes
Idempotent
no
Fiber matrix
symmetric: yes · normal: yes · rank: 1 (nullity 146) what is this?
Submitted by
qawbecrdtey
Submitted at
2026-10-07 17:53:20
Display reorder
120,122,121,124,125,123,128,25,24,26,27,28,29,23,21,22,20,18,19,117,114,116,115,118,119,76,77,75,73,74,72,139,133,136,145,3,5,4,2,1,0,90,91,92,93,94,95,49,50,48,52,53,51,60,61,62,63,64,65,131,137,141,140,58,57,59,54,55,56,6,7,8,9,10,11,88,89,87,85,86,84,96,97,98,99,100,101,132,138,143,144,13,12,14,15,16,17,80,78,79,83,81,82,34,35,33,31,32,30,106,107,105,103,104,102,142,134,135,146,69,71,70,68,66,67,43,44,42,46,47,45,41,39,40,38,36,37,109,112,108,113,110,111,127,126,129,130 history
Raw table
canonical order · displayed order
Equational Theories
Finite Magma Explorer

Commentary

Order 147 = 7 + 5*28, from a common submagma at infinity. C(E, M, k, B) adjoins a submagma M (m elements) of a model E to every group of a transversal design TD(k, g), g = |E| - m, so that every enlarged group is a copy of E and all of them share M; every block carries B, a model of order k in which x*x = x. Two elements of M multiply in M; an element of M or of group i with one of group i, in group i's copy of E; elements of different groups, in their block. It satisfies Equation 677 whenever E and B do. This magma is C(E, M, 5, B) with E = magma#8ede3b8d20555e16453ae7211cf5e99b242704e4f512e3a6026bdf147a977dec, M = {24, 25, 26, 27, 28, 29, 30} in E, B = magma#e549b5f8492c9b6b5ad530e3aa4f39c6e23d08645ebd1b36a3c2de2a5a23bac5. Labels: 0..m-1 are M, in increasing order of their labels in E; m + g*i + c (i < k, c < g) is point c of group i, which plays the c-th element of E outside M, in increasing order. A block's point in group i plays element i of B. TD(5, 28): MacNeish's product over GF(4) x GF(7); GF(4) = F_2[x]/(x^2 + x + 1); GF(p^r) = F_p[x]/(f) labels c_0 + c_1 x + ... as c_0 + c_1 p + ..., and point c of a group is the c-th element of the product in lexicographic order. Block (a, b), a and b in the product, meets group i in the point whose coordinate in each field is a + s_i b, s_i the element of that field labelled i, or b when the field has exactly i elements. Equation 255: satisfied. Idempotent elements: 21.

last edited by qawbecrdtey at 2026-10-07 17:53:21 · history