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On this page are all graphs related to C4[ 48, 5 ].
Graphs which this one covers
6-fold cover of
C4[ 8, 1 ]
= K_4,4
4-fold cover of
C4[ 12, 1 ]
= W( 6, 2)
3-fold cover of
C4[ 16, 2 ]
= {4, 4}_ 4, 0
2-fold cover of
C4[ 24, 1 ]
= W( 12, 2)
Graphs which cover this one
2-fold covered by
C4[ 96, 6 ]
= {4, 4}_[ 12, 4]
2-fold covered by
C4[ 96, 15 ]
= PL(MSY( 4, 12, 5, 0))
2-fold covered by
C4[ 96, 22 ]
= KE_24(1,11,2,15,1)
3-fold covered by
C4[ 144, 9 ]
= {4, 4}_< 20, 16>
3-fold covered by
C4[ 144, 11 ]
= MPS( 12, 24; 5)
4-fold covered by
C4[ 192, 4 ]
= {4, 4}_[ 12, 8]
4-fold covered by
C4[ 192, 7 ]
= {4, 4}_< 16, 8>
4-fold covered by
C4[ 192, 8 ]
= {4, 4}_[ 24, 4]
4-fold covered by
C4[ 192, 10 ]
= PS( 24, 16; 3)
4-fold covered by
C4[ 192, 11 ]
= MPS( 24, 16; 3)
4-fold covered by
C4[ 192, 16 ]
= PS( 8, 48; 11)
4-fold covered by
C4[ 192, 24 ]
= PL(MSY( 4, 24, 11, 0))
4-fold covered by
C4[ 192, 25 ]
= PL(MSY( 4, 24, 11, 12))
4-fold covered by
C4[ 192, 26 ]
= PL(MSY( 4, 24, 5, 0))
4-fold covered by
C4[ 192, 27 ]
= PL(MSY( 4, 24, 5, 12))
4-fold covered by
C4[ 192, 28 ]
= PL(MSY( 4, 24, 17, 0))
4-fold covered by
C4[ 192, 29 ]
= PL(MSY( 4, 24, 17, 12))
4-fold covered by
C4[ 192, 32 ]
= PL(MSY( 8, 12, 5, 0))
4-fold covered by
C4[ 192, 33 ]
= PL(MSY( 12, 8, 3, 0))
4-fold covered by
C4[ 192, 35 ]
= MSY( 4, 48, 13, 4)
4-fold covered by
C4[ 192, 45 ]
= PL(KE_24(3,7,6,23,3),[8^12,12^8])
4-fold covered by
C4[ 192, 46 ]
= KE_48(1,11,2,39,1)
4-fold covered by
C4[ 192, 47 ]
= KE_48(1,15,2,35,1)
4-fold covered by
C4[ 192, 55 ]
= KE_48(1,9,22,37,23)
4-fold covered by
C4[ 192, 56 ]
= KE_48(1,33,22,13,23)
4-fold covered by
C4[ 192, 95 ]
= UG(ATD[192,119])
4-fold covered by
C4[ 192, 96 ]
= UG(ATD[192,125])
4-fold covered by
C4[ 192, 178 ]
= SS[192, 63]
4-fold covered by
C4[ 192, 179 ]
= SS[192, 64]
4-fold covered by
C4[ 192, 181 ]
= SS[192, 66]
4-fold covered by
C4[ 192, 186 ]
= SS[192, 73]
4-fold covered by
C4[ 192, 189 ]
= SS[192, 76]
4-fold covered by
C4[ 192, 192 ]
= SS[192, 79]
4-fold covered by
C4[ 192, 193 ]
= SS[192, 80]
5-fold covered by
C4[ 240, 9 ]
= {4, 4}_< 16, 4>
5-fold covered by
C4[ 240, 12 ]
= {4, 4}_< 32, 28>
5-fold covered by
C4[ 240, 21 ]
= MPS( 12, 40; 3)
5-fold covered by
C4[ 240, 22 ]
= MPS( 12, 40; 9)
5-fold covered by
C4[ 240, 29 ]
= MPS( 4,120; 13)
5-fold covered by
C4[ 240, 38 ]
= PL(MSY( 6, 20, 11, 10))
5-fold covered by
C4[ 240, 65 ]
= PL(MBr( 2, 60; 11))
5-fold covered by
C4[ 240, 69 ]
= UG(ATD[240,25])
6-fold covered by
C4[ 288, 11 ]
= {4, 4}_[ 36, 4]
6-fold covered by
C4[ 288, 15 ]
= PS( 24, 24; 5)
6-fold covered by
C4[ 288, 29 ]
= PL(MSY( 4, 36, 17, 0))
6-fold covered by
C4[ 288, 37 ]
= PL(MSY( 12, 12, 5, 0))
6-fold covered by
C4[ 288, 110 ]
= UG(ATD[288,181])
6-fold covered by
C4[ 288, 111 ]
= UG(ATD[288,184])
6-fold covered by
C4[ 288, 180 ]
= BGCG({4, 4}_ 6, 0, C_ 4, {1, 2})
7-fold covered by
C4[ 336, 9 ]
= {4, 4}_< 20, 8>
7-fold covered by
C4[ 336, 12 ]
= {4, 4}_< 44, 40>
7-fold covered by
C4[ 336, 22 ]
= MPS( 12, 56; 3)
7-fold covered by
C4[ 336, 23 ]
= MPS( 12, 56; 5)
7-fold covered by
C4[ 336, 24 ]
= MPS( 12, 56; 13)
7-fold covered by
C4[ 336, 37 ]
= PL(MSY( 6, 28, 13, 14))
7-fold covered by
C4[ 336, 51 ]
= PL(MBr( 2, 84; 13))
8-fold covered by
C4[ 384, 4 ]
= {4, 4}_[ 16, 12]
8-fold covered by
C4[ 384, 5 ]
= {4, 4}_< 20, 4>
8-fold covered by
C4[ 384, 7 ]
= {4, 4}_[ 24, 8]
8-fold covered by
C4[ 384, 8 ]
= {4, 4}_< 28, 20>
8-fold covered by
C4[ 384, 10 ]
= {4, 4}_[ 48, 4]
8-fold covered by
C4[ 384, 12 ]
= PS( 48, 16; 3)
8-fold covered by
C4[ 384, 13 ]
= MPS( 48, 16; 3)
8-fold covered by
C4[ 384, 16 ]
= PS( 24, 32; 3)
8-fold covered by
C4[ 384, 17 ]
= PS( 24, 32; 7)
8-fold covered by
C4[ 384, 18 ]
= MPS( 24, 32; 3)
8-fold covered by
C4[ 384, 19 ]
= MPS( 24, 32; 7)
8-fold covered by
C4[ 384, 22 ]
= PS( 16, 48; 11)
8-fold covered by
C4[ 384, 28 ]
= PS( 8, 96; 11)
8-fold covered by
C4[ 384, 29 ]
= PS( 8, 96; 23)
8-fold covered by
C4[ 384, 31 ]
= MPS( 8, 96; 11)
8-fold covered by
C4[ 384, 37 ]
= PL(MSY( 4, 48, 23, 0))
8-fold covered by
C4[ 384, 38 ]
= PL(MSY( 4, 48, 23, 24))
8-fold covered by
C4[ 384, 39 ]
= PL(MSY( 4, 48, 17, 0))
8-fold covered by
C4[ 384, 40 ]
= PL(MSY( 4, 48, 17, 24))
8-fold covered by
C4[ 384, 41 ]
= PL(MSY( 4, 48, 7, 0))
8-fold covered by
C4[ 384, 42 ]
= PL(MSY( 4, 48, 7, 24))
8-fold covered by
C4[ 384, 45 ]
= PL(MSY( 8, 24, 11, 0))
8-fold covered by
C4[ 384, 46 ]
= PL(MSY( 8, 24, 11, 12))
8-fold covered by
C4[ 384, 47 ]
= PL(MSY( 8, 24, 5, 0))
8-fold covered by
C4[ 384, 48 ]
= PL(MSY( 8, 24, 5, 12))
8-fold covered by
C4[ 384, 49 ]
= PL(MSY( 8, 24, 17, 0))
8-fold covered by
C4[ 384, 50 ]
= PL(MSY( 8, 24, 17, 12))
8-fold covered by
C4[ 384, 51 ]
= PL(MSY( 12, 16, 7, 0))
8-fold covered by
C4[ 384, 52 ]
= PL(MSY( 16, 12, 5, 0))
8-fold covered by
C4[ 384, 53 ]
= PL(MSY( 24, 8, 3, 0))
8-fold covered by
C4[ 384, 54 ]
= MSY( 8, 48, 25, 8)
8-fold covered by
C4[ 384, 55 ]
= PL(MSZ ( 8, 24, 2, 7), [8^24, 24^8])
8-fold covered by
C4[ 384, 56 ]
= PL(MSZ ( 8, 24, 2, 11), [8^24, 24^8])
8-fold covered by
C4[ 384, 73 ]
= PL(KE_48(3,11,6,43,3),[12^16,16^12])
8-fold covered by
C4[ 384, 203 ]
= UG(ATD[384,261])
8-fold covered by
C4[ 384, 205 ]
= UG(ATD[384,285])
8-fold covered by
C4[ 384, 207 ]
= UG(ATD[384,318])
8-fold covered by
C4[ 384, 208 ]
= UG(ATD[384,321])
8-fold covered by
C4[ 384, 209 ]
= UG(ATD[384,324])
8-fold covered by
C4[ 384, 210 ]
= UG(ATD[384,327])
8-fold covered by
C4[ 384, 211 ]
= UG(ATD[384,330])
8-fold covered by
C4[ 384, 212 ]
= UG(ATD[384,333])
8-fold covered by
C4[ 384, 216 ]
= UG(ATD[384,354])
8-fold covered by
C4[ 384, 217 ]
= UG(ATD[384,357])
8-fold covered by
C4[ 384, 221 ]
= UG(ATD[384,369])
8-fold covered by
C4[ 384, 222 ]
= UG(ATD[384,372])
8-fold covered by
C4[ 384, 224 ]
= UG(ATD[384,378])
8-fold covered by
C4[ 384, 225 ]
= UG(ATD[384,381])
8-fold covered by
C4[ 384, 227 ]
= UG(ATD[384,387])
8-fold covered by
C4[ 384, 228 ]
= UG(ATD[384,390])
8-fold covered by
C4[ 384, 230 ]
= UG(ATD[384,398])
8-fold covered by
C4[ 384, 231 ]
= UG(ATD[384,401])
8-fold covered by
C4[ 384, 233 ]
= UG(ATD[384,409])
8-fold covered by
C4[ 384, 234 ]
= UG(ATD[384,412])
8-fold covered by
C4[ 384, 235 ]
= UG(ATD[384,415])
8-fold covered by
C4[ 384, 236 ]
= UG(ATD[384,418])
8-fold covered by
C4[ 384, 237 ]
= UG(ATD[384,421])
8-fold covered by
C4[ 384, 238 ]
= UG(ATD[384,424])
8-fold covered by
C4[ 384, 239 ]
= UG(ATD[384,427])
8-fold covered by
C4[ 384, 240 ]
= UG(ATD[384,430])
8-fold covered by
C4[ 384, 241 ]
= UG(ATD[384,433])
8-fold covered by
C4[ 384, 242 ]
= UG(ATD[384,436])
8-fold covered by
C4[ 384, 278 ]
= UG(ATD[384,542])
8-fold covered by
C4[ 384, 279 ]
= UG(ATD[384,545])
8-fold covered by
C4[ 384, 280 ]
= UG(ATD[384,548])
8-fold covered by
C4[ 384, 281 ]
= UG(ATD[384,551])
8-fold covered by
C4[ 384, 333 ]
= PL(ATD[8,1]#ATD[24,6])
8-fold covered by
C4[ 384, 334 ]
= PL(ATD[8,1]#ATD[24,12])
8-fold covered by
C4[ 384, 346 ]
= PL(ATD[12,3]#ATD[16,2])
9-fold covered by
C4[ 432, 8 ]
= {4, 4}_< 24, 12>
9-fold covered by
C4[ 432, 12 ]
= {4, 4}_< 56, 52>
9-fold covered by
C4[ 432, 15 ]
= MPS( 36, 24; 5)
9-fold covered by
C4[ 432, 22 ]
= MPS( 12, 72; 5)
9-fold covered by
C4[ 432, 23 ]
= MPS( 12, 72; 11)
9-fold covered by
C4[ 432, 24 ]
= MPS( 12, 72; 17)
9-fold covered by
C4[ 432, 35 ]
= PL(MSY( 6, 36, 17, 18))
9-fold covered by
C4[ 432, 37 ]
= MSY( 6, 72, 13, 6)
9-fold covered by
C4[ 432, 97 ]
= UG(ATD[432,128])
9-fold covered by
C4[ 432, 98 ]
= UG(ATD[432,131])
9-fold covered by
C4[ 432, 141 ]
= UG(ATD[432,298])
10-fold covered by
C4[ 480, 8 ]
= {4, 4}_[ 20, 12]
10-fold covered by
C4[ 480, 15 ]
= {4, 4}_[ 60, 4]
10-fold covered by
C4[ 480, 26 ]
= PS( 24, 40; 3)
10-fold covered by
C4[ 480, 27 ]
= PS( 24, 40; 9)
10-fold covered by
C4[ 480, 44 ]
= PS( 8,120; 13)
10-fold covered by
C4[ 480, 61 ]
= PL(MSY( 4, 60, 11, 0))
10-fold covered by
C4[ 480, 63 ]
= PL(MSY( 4, 60, 29, 0))
10-fold covered by
C4[ 480, 65 ]
= PL(MSY( 4, 60, 19, 0))
10-fold covered by
C4[ 480, 81 ]
= PL(MSY( 12, 20, 11, 0))
10-fold covered by
C4[ 480, 83 ]
= PL(MSY( 20, 12, 5, 0))
10-fold covered by
C4[ 480, 86 ]
= MSY( 4,120, 61, 44)
10-fold covered by
C4[ 480, 116 ]
= PL(LoPr_ 60( 3, 10, 6, 10, 3), [12^20, 20^12])
10-fold covered by
C4[ 480, 123 ]
= PL(KE_60(3,13,6,53,3),[12^20,20^12])
10-fold covered by
C4[ 480, 149 ]
= UG(ATD[480,31])
10-fold covered by
C4[ 480, 151 ]
= UG(ATD[480,47])
10-fold covered by
C4[ 480, 153 ]
= UG(ATD[480,51])
10-fold covered by
C4[ 480, 154 ]
= UG(ATD[480,53])
10-fold covered by
C4[ 480, 155 ]
= UG(ATD[480,67])
10-fold covered by
C4[ 480, 192 ]
= UG(ATD[480,232])
10-fold covered by
C4[ 480, 193 ]
= UG(ATD[480,235])
10-fold covered by
C4[ 480, 194 ]
= UG(ATD[480,238])
10-fold covered by
C4[ 480, 376 ]
= BGCG({4, 4}_< 8, 2>, C_ 4, {1, 2})
BGCG dissections of this graph
Base Graph:
C4[ 12, 1 ]
= W( 6, 2)
connection graph: [K_2]
Graphs which have this one as the base graph in a BGCG dissection:
C4[ 96, 19 ]
= PL(MC3( 6, 8, 1, 5, 3, 0, 1), [4^12, 6^8])
with connection graph [K_1]
C4[ 96, 20 ]
= PL(MC3( 6, 8, 1, 5, 3, 4, 1), [4^12, 12^4])
with connection graph [K_1]
C4[ 192, 7 ]
= {4, 4}_< 16, 8>
with connection graph [K_2]
C4[ 192, 11 ]
= MPS( 24, 16; 3)
with connection graph [K_2]
C4[ 192, 25 ]
= PL(MSY( 4, 24, 11, 12))
with connection graph [K_2]
C4[ 192, 39 ]
= PL(LoPr_ 24( 1, 12, 2, 12, 1), [4^24, 24^4])
with connection graph [K_2]
C4[ 192, 43 ]
= PL(LoPr_ 24( 3, 4, 6, 4, 9), [8^12, 12^8])
with connection graph [K_2]
C4[ 192, 44 ]
= PL(LoPr_ 24( 3, 8, 6, 8, 9), [6^16, 8^12])
with connection graph [K_2]
C4[ 192, 69 ]
= PL(Curtain_24(1,12,9,10,22),[4^24,12^8])
with connection graph [K_2]
C4[ 192, 97 ]
= UG(ATD[192,132])
with connection graph [K_2]
C4[ 192, 98 ]
= UG(ATD[192,135])
with connection graph [K_2]
C4[ 192, 100 ]
= UG(ATD[192,141])
with connection graph [K_2]
C4[ 192, 101 ]
= UG(ATD[192,146])
with connection graph [K_2]
C4[ 192, 190 ]
= SS[192, 77]
with connection graph [K_2]
C4[ 192, 191 ]
= SS[192, 78]
with connection graph [K_2]
C4[ 288, 92 ]
= UG(ATD[288,88])
with connection graph [C_3]
C4[ 288, 94 ]
= UG(ATD[288,94])
with connection graph [C_3]
C4[ 288, 153 ]
= XI(Rmap(144,3){3,6|6}_24)
with connection graph [C_3]
C4[ 288, 206 ]
= BGCG(AMC( 3, 8, [ 5. 5: 5. 2]), C_ 3, 2)
with connection graph [C_3]
C4[ 384, 98 ]
= PL(Curtain_48(1,24,22,33,46),[4^48,12^16])
with connection graph [C_4]
C4[ 384, 108 ]
= PL(SoP( 4, 24))
with connection graph [C_4]
C4[ 384, 212 ]
= UG(ATD[384,333])
with connection graph [C_4]
C4[ 384, 213 ]
= UG(ATD[384,345])
with connection graph [C_4]
C4[ 384, 217 ]
= UG(ATD[384,357])
with connection graph [C_4]
C4[ 384, 219 ]
= UG(ATD[384,363])
with connection graph [C_4]
C4[ 384, 223 ]
= UG(ATD[384,375])
with connection graph [C_4]
C4[ 384, 224 ]
= UG(ATD[384,378])
with connection graph [C_4]
C4[ 384, 226 ]
= UG(ATD[384,384])
with connection graph [C_4]
C4[ 384, 229 ]
= UG(ATD[384,393])
with connection graph [C_4]
C4[ 384, 229 ]
= UG(ATD[384,393])
with connection graph [K_4]
C4[ 384, 230 ]
= UG(ATD[384,398])
with connection graph [C_4]
C4[ 384, 232 ]
= UG(ATD[384,404])
with connection graph [C_4]
C4[ 384, 232 ]
= UG(ATD[384,404])
with connection graph [K_4]
C4[ 384, 236 ]
= UG(ATD[384,418])
with connection graph [C_4]
C4[ 384, 238 ]
= UG(ATD[384,424])
with connection graph [C_4]
C4[ 384, 239 ]
= UG(ATD[384,427])
with connection graph [C_4]
C4[ 384, 240 ]
= UG(ATD[384,430])
with connection graph [C_4]
C4[ 384, 241 ]
= UG(ATD[384,433])
with connection graph [C_4]
C4[ 384, 242 ]
= UG(ATD[384,436])
with connection graph [C_4]
C4[ 384, 338 ]
= PL(ATD[8,2]#ATD[48,12])
with connection graph [C_4]
C4[ 384, 346 ]
= PL(ATD[12,3]#ATD[16,2])
with connection graph [C_4]
C4[ 384, 393 ]
= BGCG(R_ 24( 20, 7), C_ 4, {3, 4, 5, 6})
with connection graph [K_4]
C4[ 384, 427 ]
= BGCG(KE_24(1,13,4,21,5); K2;{2, 3})
with connection graph [K_4]
C4[ 384, 432 ]
= BGCG(KE_24(1,11,8,3,7); K2;{3, 6})
with connection graph [K_4]
C4[ 384, 501 ]
= BGCG(UG(ATD[192,132]); K1;8)
with connection graph [C_4]
C4[ 384, 502 ]
= BGCG(UG(ATD[192,138]); K1;2)
with connection graph [C_4]
C4[ 384, 504 ]
= BGCG(UG(ATD[192,138]); K1;7)
with connection graph [C_4]
C4[ 384, 505 ]
= BGCG(UG(ATD[192,146]); K1;{11, 12})
with connection graph [K_4]
Aut-Orbital graphs of this one:
C4[ 12, 1 ] = W( 6, 2)
C4[ 16, 2 ] = {4, 4}_ 4, 0
C4[ 48, 5 ] = {4, 4}_< 8, 4>