12a
1094
(K12a
1094
)
A knot diagram
1
Linearized knot diagam
4 7 10 1 12 9 2 11 3 6 8 5
Solving Sequence
6,12
5 1 4
2,8
7 11 9 10 3
c
5
c
12
c
4
c
1
c
7
c
11
c
8
c
10
c
3
c
2
, c
6
, c
9
Ideals for irreducible components
2
of X
par
I
u
1
= h6.83030 × 10
106
u
89
+ 1.55405 × 10
107
u
88
+ ··· + 6.21904 × 10
106
b + 7.24350 × 10
106
,
1.29538 × 10
107
u
89
+ 3.57847 × 10
107
u
88
+ ··· + 6.21904 × 10
106
a + 6.18948 × 10
106
, u
90
+ 3u
89
+ ··· + 12u + 1i
I
u
2
= hu
22
+ 2u
21
+ ··· + b 1, u
23
+ 2u
22
+ ··· + a 7, u
24
+ 2u
23
+ ··· + 17u
2
+ 1i
I
u
3
= hu
2
+ b, a 1, u
7
+ 3u
5
+ 2u
3
+ u 1i
* 3 irreducible components of dim
C
= 0, with total 121 representations.
1
The image of knot diagram is generated by the software Draw programme developed by An-
drew Bartholomew(http://www.layer8.co.uk/maths/draw/index.htm#Running-draw), where we modi-
fied some parts for our purpose(https://github.com/CATsTAILs/LinksPainter).
2
All coefficients of polynomials are rational numbers. But the coefficients are sometimes approximated
in decimal forms when there is not enough margin.
1
I. I
u
1
= h6.83 × 10
106
u
89
+ 1.55 × 10
107
u
88
+ · · · + 6.22 × 10
106
b + 7.24 ×
10
106
, 1.30 × 10
107
u
89
+ 3.58 × 10
107
u
88
+ · · · + 6.22 × 10
106
a + 6.19 ×
10
106
, u
90
+ 3u
89
+ · · · + 12u + 1i
(i) Arc colorings
a
6
=
1
0
a
12
=
0
u
a
5
=
1
u
2
a
1
=
u
u
3
+ u
a
4
=
u
2
+ 1
u
4
2u
2
a
2
=
u
3
2u
u
5
+ 3u
3
+ u
a
8
=
2.08292u
89
5.75405u
88
+ ··· 103.537u 0.995248
1.09829u
89
2.49885u
88
+ ··· 36.1802u 1.16473
a
7
=
2.30239u
89
5.89176u
88
+ ··· 92.0794u + 0.607952
0.686489u
89
1.62055u
88
+ ··· 35.8591u 1.44130
a
11
=
0.0309762u
89
0.977314u
88
+ ··· 81.9158u 10.9345
1.14038u
89
3.23467u
88
+ ··· 35.2548u 4.73665
a
9
=
3.07250u
89
+ 8.58048u
88
+ ··· + 42.3487u + 8.12578
0.0736579u
89
0.256335u
88
+ ··· 40.1867u 2.49488
a
10
=
1.17135u
89
4.21198u
88
+ ··· 117.171u 15.6711
1.14038u
89
3.23467u
88
+ ··· 35.2548u 4.73665
a
3
=
3.38625u
89
10.3318u
88
+ ··· 155.927u 20.4178
1.23019u
89
3.17312u
88
+ ··· 10.9793u 2.96508
(ii) Obstruction class = 1
(iii) Cusp Shapes = 0.162569u
89
3.73818u
88
+ ··· 145.744u 28.3707
2
(iv) u-Polynomials at the component
Crossings u-Polynomials at each crossing
c
1
, c
4
, c
5
c
12
u
90
3u
89
+ ··· 12u + 1
c
2
, c
7
u
90
+ u
89
+ ··· 1472u + 37417
c
3
, c
9
u
90
6u
89
+ ··· 13860u + 2776
c
6
u
90
5u
89
+ ··· 305292u + 114001
c
8
, c
11
u
90
+ 5u
89
+ ··· + 7842u + 839
c
10
u
90
+ u
89
+ ··· + 13461u + 2479
3
(v) Riley Polynomials at the component
Crossings Riley Polynomials at each crossing
c
1
, c
4
, c
5
c
12
y
90
+ 109y
89
+ ··· + 174y + 1
c
2
, c
7
y
90
+ 65y
89
+ ··· + 22616709052y + 1400031889
c
3
, c
9
y
90
58y
89
+ ··· 11659600y + 7706176
c
6
y
90
45y
89
+ ··· 374166877836y + 12996228001
c
8
, c
11
y
90
+ 53y
89
+ ··· + 29423788y + 703921
c
10
y
90
19y
89
+ ··· 310592405y + 6145441
4
(vi) Complex Volumes and Cusp Shapes
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.673798 + 0.745251I
a = 0.59357 1.29182I
b = 0.71141 + 1.77487I
7.3826 + 13.2885I 0
u = 0.673798 0.745251I
a = 0.59357 + 1.29182I
b = 0.71141 1.77487I
7.3826 13.2885I 0
u = 0.318813 + 0.972274I
a = 0.354309 0.417115I
b = 1.29131 + 0.58699I
1.92726 1.07654I 0
u = 0.318813 0.972274I
a = 0.354309 + 0.417115I
b = 1.29131 0.58699I
1.92726 + 1.07654I 0
u = 0.554780 + 0.764528I
a = 0.78623 + 1.29463I
b = 0.56005 1.47151I
3.13661 7.27639I 0
u = 0.554780 0.764528I
a = 0.78623 1.29463I
b = 0.56005 + 1.47151I
3.13661 + 7.27639I 0
u = 0.623759 + 0.627084I
a = 0.507263 0.842395I
b = 0.275207 + 1.385920I
0.99512 2.46332I 0
u = 0.623759 0.627084I
a = 0.507263 + 0.842395I
b = 0.275207 1.385920I
0.99512 + 2.46332I 0
u = 0.842119 + 0.262679I
a = 0.89625 + 1.19447I
b = 0.10031 1.55471I
8.85310 8.28939I 0
u = 0.842119 0.262679I
a = 0.89625 1.19447I
b = 0.10031 + 1.55471I
8.85310 + 8.28939I 0
5
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.333793 + 0.814040I
a = 0.333808 0.618859I
b = 0.397603 + 0.240312I
0.82127 2.96271I 0
u = 0.333793 0.814040I
a = 0.333808 + 0.618859I
b = 0.397603 0.240312I
0.82127 + 2.96271I 0
u = 0.728004 + 0.474895I
a = 0.012276 + 1.177780I
b = 0.64564 1.47165I
2.24160 + 4.56943I 0
u = 0.728004 0.474895I
a = 0.012276 1.177780I
b = 0.64564 + 1.47165I
2.24160 4.56943I 0
u = 0.482332 + 1.026280I
a = 0.881390 0.301898I
b = 0.096950 + 1.030020I
1.64550 1.00721I 0
u = 0.482332 1.026280I
a = 0.881390 + 0.301898I
b = 0.096950 1.030020I
1.64550 + 1.00721I 0
u = 0.460781 + 0.723596I
a = 0.95388 1.13852I
b = 0.92691 + 1.88015I
2.60445 6.80426I 0
u = 0.460781 0.723596I
a = 0.95388 + 1.13852I
b = 0.92691 1.88015I
2.60445 + 6.80426I 0
u = 0.480650 + 0.682439I
a = 0.840573 1.018620I
b = 0.325724 + 0.037139I
3.54498 + 7.46328I 0
u = 0.480650 0.682439I
a = 0.840573 + 1.018620I
b = 0.325724 0.037139I
3.54498 7.46328I 0
6
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.606401 + 0.536748I
a = 0.633565 + 0.941223I
b = 0.759168 1.129370I
1.24922 1.84743I 0
u = 0.606401 0.536748I
a = 0.633565 0.941223I
b = 0.759168 + 1.129370I
1.24922 + 1.84743I 0
u = 0.435225 + 0.607327I
a = 0.92412 1.62359I
b = 0.049735 + 1.375830I
7.97752 + 1.18412I 0
u = 0.435225 0.607327I
a = 0.92412 + 1.62359I
b = 0.049735 1.375830I
7.97752 1.18412I 0
u = 0.023012 + 0.742460I
a = 0.522236 + 0.983323I
b = 0.261413 0.072232I
2.61458 1.00048I 4.78491 + 0.I
u = 0.023012 0.742460I
a = 0.522236 0.983323I
b = 0.261413 + 0.072232I
2.61458 + 1.00048I 4.78491 + 0.I
u = 0.719114 + 0.115823I
a = 0.71219 1.64056I
b = 0.248123 + 1.314870I
5.06440 + 3.04875I 8.83314 + 0.I
u = 0.719114 0.115823I
a = 0.71219 + 1.64056I
b = 0.248123 1.314870I
5.06440 3.04875I 8.83314 + 0.I
u = 0.351277 + 0.637125I
a = 1.35884 + 0.80934I
b = 0.77567 1.76558I
7.28579 + 3.28442I 10.21600 5.71945I
u = 0.351277 0.637125I
a = 1.35884 0.80934I
b = 0.77567 + 1.76558I
7.28579 3.28442I 10.21600 + 5.71945I
7
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.322032 + 0.582986I
a = 1.10239 + 1.43621I
b = 0.74002 1.37048I
0.31504 + 3.55410I 1.14398 3.08134I
u = 0.322032 0.582986I
a = 1.10239 1.43621I
b = 0.74002 + 1.37048I
0.31504 3.55410I 1.14398 + 3.08134I
u = 0.297325 + 0.534718I
a = 1.36743 + 1.56487I
b = 0.130393 0.297413I
0.640275 1.076890I 9.95339 + 7.93804I
u = 0.297325 0.534718I
a = 1.36743 1.56487I
b = 0.130393 + 0.297413I
0.640275 + 1.076890I 9.95339 7.93804I
u = 0.443413 + 1.318820I
a = 0.822661 + 0.037051I
b = 0.491648 0.873884I
3.97398 3.73488I 0
u = 0.443413 1.318820I
a = 0.822661 0.037051I
b = 0.491648 + 0.873884I
3.97398 + 3.73488I 0
u = 0.567850 + 0.053435I
a = 0.81195 + 1.80477I
b = 0.03229 1.65600I
4.48683 + 3.36404I 10.30131 3.00530I
u = 0.567850 0.053435I
a = 0.81195 1.80477I
b = 0.03229 + 1.65600I
4.48683 3.36404I 10.30131 + 3.00530I
u = 0.526246 + 0.154775I
a = 1.323770 0.193749I
b = 0.488101 + 0.678138I
5.02204 3.97750I 8.31267 + 2.01753I
u = 0.526246 0.154775I
a = 1.323770 + 0.193749I
b = 0.488101 0.678138I
5.02204 + 3.97750I 8.31267 2.01753I
8
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.402344 + 0.338151I
a = 2.36158 + 1.72500I
b = 0.187161 0.764440I
8.79879 + 1.84825I 12.51899 6.35775I
u = 0.402344 0.338151I
a = 2.36158 1.72500I
b = 0.187161 + 0.764440I
8.79879 1.84825I 12.51899 + 6.35775I
u = 0.01524 + 1.48437I
a = 0.592770 0.554203I
b = 0.20835 + 1.83224I
0.18449 3.18606I 0
u = 0.01524 1.48437I
a = 0.592770 + 0.554203I
b = 0.20835 1.83224I
0.18449 + 3.18606I 0
u = 0.06610 + 1.50441I
a = 1.169580 0.132340I
b = 0.820952 0.055008I
2.60634 + 3.24365I 0
u = 0.06610 1.50441I
a = 1.169580 + 0.132340I
b = 0.820952 + 0.055008I
2.60634 3.24365I 0
u = 0.00019 + 1.50839I
a = 0.581366 + 0.107821I
b = 1.44483 2.50624I
0.80445 + 3.49717I 0
u = 0.00019 1.50839I
a = 0.581366 0.107821I
b = 1.44483 + 2.50624I
0.80445 3.49717I 0
u = 0.265297 + 0.365508I
a = 2.51098 1.84482I
b = 1.37513 + 0.76253I
8.21913 0.94003I 11.00888 5.54594I
u = 0.265297 0.365508I
a = 2.51098 + 1.84482I
b = 1.37513 0.76253I
8.21913 + 0.94003I 11.00888 + 5.54594I
9
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.24051 + 1.54504I
a = 0.583822 + 0.503825I
b = 1.48518 1.54173I
4.44630 + 8.10930I 0
u = 0.24051 1.54504I
a = 0.583822 0.503825I
b = 1.48518 + 1.54173I
4.44630 8.10930I 0
u = 0.08098 + 1.57003I
a = 0.387253 + 0.899408I
b = 0.101032 0.825020I
7.88603 2.42265I 0
u = 0.08098 1.57003I
a = 0.387253 0.899408I
b = 0.101032 + 0.825020I
7.88603 + 2.42265I 0
u = 0.16159 + 1.56673I
a = 0.718608 + 0.293346I
b = 1.56681 0.88922I
5.85288 4.55236I 0
u = 0.16159 1.56673I
a = 0.718608 0.293346I
b = 1.56681 + 0.88922I
5.85288 + 4.55236I 0
u = 0.210687 + 0.367812I
a = 0.646563 + 0.374831I
b = 0.449259 + 0.341921I
0.368069 0.991598I 6.64400 + 6.37236I
u = 0.210687 0.367812I
a = 0.646563 0.374831I
b = 0.449259 0.341921I
0.368069 + 0.991598I 6.64400 6.37236I
u = 0.12311 + 1.57609I
a = 0.667344 0.560210I
b = 0.16269 + 1.64359I
0.57357 + 3.21569I 0
u = 0.12311 1.57609I
a = 0.667344 + 0.560210I
b = 0.16269 1.64359I
0.57357 3.21569I 0
10
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.249981 + 0.334709I
a = 1.86702 0.71053I
b = 0.017814 + 0.949455I
0.345879 1.288130I 1.87491 + 4.22491I
u = 0.249981 0.334709I
a = 1.86702 + 0.71053I
b = 0.017814 0.949455I
0.345879 + 1.288130I 1.87491 4.22491I
u = 0.08703 + 1.58029I
a = 0.773840 + 0.437793I
b = 1.35053 1.57805I
7.74176 + 5.01802I 0
u = 0.08703 1.58029I
a = 0.773840 0.437793I
b = 1.35053 + 1.57805I
7.74176 5.01802I 0
u = 0.04716 + 1.58637I
a = 0.608497 0.272983I
b = 1.24121 + 1.11096I
6.69652 0.75939I 0
u = 0.04716 1.58637I
a = 0.608497 + 0.272983I
b = 1.24121 1.11096I
6.69652 + 0.75939I 0
u = 0.15493 + 1.58734I
a = 0.394991 + 0.485905I
b = 0.0701063 0.0944584I
5.86795 + 2.66890I 0
u = 0.15493 1.58734I
a = 0.394991 0.485905I
b = 0.0701063 + 0.0944584I
5.86795 2.66890I 0
u = 0.10045 + 1.59407I
a = 0.616669 + 0.144873I
b = 0.36074 2.32559I
0.36466 + 4.95042I 0
u = 0.10045 1.59407I
a = 0.616669 0.144873I
b = 0.36074 + 2.32559I
0.36466 4.95042I 0
11
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.14035 + 1.59728I
a = 0.207246 0.795941I
b = 0.384197 + 0.588606I
4.17834 + 9.77145I 0
u = 0.14035 1.59728I
a = 0.207246 + 0.795941I
b = 0.384197 0.588606I
4.17834 9.77145I 0
u = 0.17472 + 1.60407I
a = 0.546797 0.351402I
b = 0.96998 + 1.55531I
6.60181 5.38064I 0
u = 0.17472 1.60407I
a = 0.546797 + 0.351402I
b = 0.96998 1.55531I
6.60181 + 5.38064I 0
u = 0.13507 + 1.61066I
a = 0.788838 0.343903I
b = 1.72870 + 1.86516I
5.33185 9.04389I 0
u = 0.13507 1.61066I
a = 0.788838 + 0.343903I
b = 1.72870 1.86516I
5.33185 + 9.04389I 0
u = 0.00140 + 1.61668I
a = 0.191641 + 0.626922I
b = 0.289391 0.590654I
10.77350 0.92330I 0
u = 0.00140 1.61668I
a = 0.191641 0.626922I
b = 0.289391 + 0.590654I
10.77350 + 0.92330I 0
u = 0.05624 + 1.62502I
a = 0.465637 0.370971I
b = 0.534327 + 0.634388I
7.22717 1.13108I 0
u = 0.05624 1.62502I
a = 0.465637 + 0.370971I
b = 0.534327 0.634388I
7.22717 + 1.13108I 0
12
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.16723 + 1.62344I
a = 0.766081 + 0.539659I
b = 0.91859 1.57853I
4.94508 10.01770I 0
u = 0.16723 1.62344I
a = 0.766081 0.539659I
b = 0.91859 + 1.57853I
4.94508 + 10.01770I 0
u = 0.20976 + 1.62271I
a = 0.767884 0.515829I
b = 1.26336 + 1.81701I
0.5584 + 16.6299I 0
u = 0.20976 1.62271I
a = 0.767884 + 0.515829I
b = 1.26336 1.81701I
0.5584 16.6299I 0
u = 0.07507 + 1.64495I
a = 0.032254 0.465580I
b = 0.479350 + 0.580447I
9.34725 4.44995I 0
u = 0.07507 1.64495I
a = 0.032254 + 0.465580I
b = 0.479350 0.580447I
9.34725 + 4.44995I 0
u = 0.07066 + 1.74802I
a = 0.434726 0.045937I
b = 0.115807 + 0.391296I
8.44677 3.19875I 0
u = 0.07066 1.74802I
a = 0.434726 + 0.045937I
b = 0.115807 0.391296I
8.44677 + 3.19875I 0
u = 0.0303102 + 0.1028030I
a = 5.56338 4.06589I
b = 0.70788 1.78101I
5.11888 + 3.47075I 9.80251 + 3.71753I
u = 0.0303102 0.1028030I
a = 5.56338 + 4.06589I
b = 0.70788 + 1.78101I
5.11888 3.47075I 9.80251 3.71753I
13
II.
I
u
2
= hu
22
+2u
21
+· · ·+b1, u
23
+2u
22
+· · ·+a7, u
24
+2u
23
+· · ·+17u
2
+1i
(i) Arc colorings
a
6
=
1
0
a
12
=
0
u
a
5
=
1
u
2
a
1
=
u
u
3
+ u
a
4
=
u
2
+ 1
u
4
2u
2
a
2
=
u
3
2u
u
5
+ 3u
3
+ u
a
8
=
u
23
2u
22
+ ··· + u + 7
u
22
2u
21
+ ··· + 2u + 1
a
7
=
u
23
2u
22
+ ··· + u + 8
u
8
+ u
7
+ 6u
6
+ 5u
5
+ 11u
4
+ 7u
3
+ 6u
2
+ 2u + 1
a
11
=
3u
23
6u
22
+ ··· 37u 4
2u
21
4u
20
+ ··· 6u + 1
a
9
=
u
23
+ 2u
22
+ ··· + 12u 8
u
20
2u
19
+ ··· 2u 2
a
10
=
3u
23
6u
22
+ ··· 43u 3
2u
21
4u
20
+ ··· 6u + 1
a
3
=
5u
23
+ 11u
22
+ ··· + 60u
2
+ 49u
u
23
+ 2u
22
+ ··· + 7u 1
(ii) Obstruction class = 1
(iii) Cusp Shapes
= 3u
21
+ 2u
20
+ 39u
19
+ 22u
18
+ 209u
17
+ 94u
16
+ 593u
15
+ 178u
14
+ 945u
13
+ 57u
12
+
808u
11
355u
10
+ 285u
9
621u
8
8u
7
405u
6
+ 55u
5
97u
4
+ 96u
3
4u
2
+ 24u 4
14
(iv) u-Polynomials at the component
Crossings u-Polynomials at each crossing
c
1
, c
12
u
24
2u
23
+ ··· + 17u
2
+ 1
c
2
u
24
+ 12u
22
+ ··· + 10u
2
+ 1
c
3
u
24
8u
22
+ ··· 7u
2
+ 1
c
4
, c
5
u
24
+ 2u
23
+ ··· + 17u
2
+ 1
c
6
u
24
8u
23
+ ··· 8u + 1
c
7
u
24
+ 12u
22
+ ··· + 10u
2
+ 1
c
8
u
24
+ 4u
23
+ ··· + 4u + 1
c
9
u
24
8u
22
+ ··· 7u
2
+ 1
c
10
u
24
12u
21
+ ··· + 17u + 5
c
11
u
24
4u
23
+ ··· 4u + 1
15
(v) Riley Polynomials at the component
Crossings Riley Polynomials at each crossing
c
1
, c
4
, c
5
c
12
y
24
+ 32y
23
+ ··· + 34y + 1
c
2
, c
7
y
24
+ 24y
23
+ ··· + 20y + 1
c
3
, c
9
y
24
16y
23
+ ··· 14y + 1
c
6
y
24
10y
23
+ ··· 16y + 1
c
8
, c
11
y
24
+ 16y
23
+ ··· + 16y + 1
c
10
y
24
16y
21
+ ··· + 431y + 25
16
(vi) Complex Volumes and Cusp Shapes
Solutions to I
u
2
1(vol +
1CS) Cusp shape
u = 0.556124 + 0.806900I
a = 0.822523 0.184284I
b = 0.340365 + 0.918768I
0.169220 + 0.554447I 0.807433 0.716512I
u = 0.556124 0.806900I
a = 0.822523 + 0.184284I
b = 0.340365 0.918768I
0.169220 0.554447I 0.807433 + 0.716512I
u = 0.238121 + 1.132010I
a = 0.638508 + 0.005594I
b = 1.28860 1.32573I
2.55299 + 1.99625I 8.04434 3.57329I
u = 0.238121 1.132010I
a = 0.638508 0.005594I
b = 1.28860 + 1.32573I
2.55299 1.99625I 8.04434 + 3.57329I
u = 0.637603 + 0.505766I
a = 0.362804 + 1.254520I
b = 0.60332 1.46985I
1.05781 + 3.70114I 4.75043 6.52555I
u = 0.637603 0.505766I
a = 0.362804 1.254520I
b = 0.60332 + 1.46985I
1.05781 3.70114I 4.75043 + 6.52555I
u = 0.052505 + 1.200480I
a = 1.081330 0.101440I
b = 0.397770 0.393742I
5.00318 + 1.08105I 8.07466 0.48442I
u = 0.052505 1.200480I
a = 1.081330 + 0.101440I
b = 0.397770 + 0.393742I
5.00318 1.08105I 8.07466 + 0.48442I
u = 0.188719 + 0.597536I
a = 0.71388 + 1.34999I
b = 0.358333 0.208954I
1.102000 + 0.641161I 0.911832 + 0.772275I
u = 0.188719 0.597536I
a = 0.71388 1.34999I
b = 0.358333 + 0.208954I
1.102000 0.641161I 0.911832 0.772275I
17
Solutions to I
u
2
1(vol +
1CS) Cusp shape
u = 0.01703 + 1.52852I
a = 0.998710 0.123388I
b = 1.87123 + 0.89007I
1.53461 1.75524I 5.42911 + 2.64882I
u = 0.01703 1.52852I
a = 0.998710 + 0.123388I
b = 1.87123 0.89007I
1.53461 + 1.75524I 5.42911 2.64882I
u = 0.269205 + 0.369321I
a = 0.87619 1.56230I
b = 0.60303 + 1.98366I
5.03257 3.89563I 5.9842 + 13.4510I
u = 0.269205 0.369321I
a = 0.87619 + 1.56230I
b = 0.60303 1.98366I
5.03257 + 3.89563I 5.9842 13.4510I
u = 0.08512 + 1.55611I
a = 0.463718 0.342100I
b = 0.21456 + 2.34805I
1.75526 5.18528I 2.04679 + 5.57462I
u = 0.08512 1.55611I
a = 0.463718 + 0.342100I
b = 0.21456 2.34805I
1.75526 + 5.18528I 2.04679 5.57462I
u = 0.18031 + 1.58187I
a = 0.682667 + 0.395242I
b = 1.34888 1.52119I
6.06933 + 6.64817I 3.40989 5.56122I
u = 0.18031 1.58187I
a = 0.682667 0.395242I
b = 1.34888 + 1.52119I
6.06933 6.64817I 3.40989 + 5.56122I
u = 0.06571 + 1.59428I
a = 0.280021 + 0.662678I
b = 0.222354 0.684451I
8.74120 + 1.63961I 1.117347 + 0.019665I
u = 0.06571 1.59428I
a = 0.280021 0.662678I
b = 0.222354 + 0.684451I
8.74120 1.63961I 1.117347 0.019665I
18
Solutions to I
u
2
1(vol +
1CS) Cusp shape
u = 0.055807 + 0.298741I
a = 4.71727 + 0.37884I
b = 0.960356 + 0.621623I
7.97814 1.49651I 4.08753 + 5.14572I
u = 0.055807 0.298741I
a = 4.71727 0.37884I
b = 0.960356 0.621623I
7.97814 + 1.49651I 4.08753 5.14572I
u = 0.08933 + 1.71019I
a = 0.295800 + 0.084001I
b = 0.491146 + 0.017403I
8.95061 + 2.87283I 2.99029 + 1.35526I
u = 0.08933 1.71019I
a = 0.295800 0.084001I
b = 0.491146 0.017403I
8.95061 2.87283I 2.99029 1.35526I
19
III. I
u
3
= hu
2
+ b, a 1, u
7
+ 3u
5
+ 2u
3
+ u 1i
(i) Arc colorings
a
6
=
1
0
a
12
=
0
u
a
5
=
1
u
2
a
1
=
u
u
3
+ u
a
4
=
u
2
+ 1
u
4
2u
2
a
2
=
u
3
2u
u
5
+ 3u
3
+ u
a
8
=
1
u
2
a
7
=
u
6
3u
4
2u
2
+ 1
u
6
+ 2u
4
u
2
+ u
a
11
=
u
u
3
+ u
a
9
=
u
2
+ 1
u
4
2u
2
a
10
=
u
3
u
3
+ u
a
3
=
u
3
+ u
2
+ 1
u
4
u
3
2u
2
u
(ii) Obstruction class = 1
(iii) Cusp Shapes = 6
20
(iv) u-Polynomials at the component
Crossings u-Polynomials at each crossing
c
1
, c
4
, c
5
c
8
, c
11
, c
12
u
7
+ 3u
5
+ 2u
3
+ u + 1
c
2
, c
7
, c
10
u
7
+ 5u
5
2u
4
+ 4u
3
u + 2
c
3
, c
9
(u + 1)
7
c
6
u
7
+ 2u
6
+ u
5
2u
4
4u
3
+ 2u
2
+ 5u 3
21
(v) Riley Polynomials at the component
Crossings Riley Polynomials at each crossing
c
1
, c
4
, c
5
c
8
, c
11
, c
12
y
7
+ 6y
6
+ 13y
5
+ 14y
4
+ 10y
3
+ 4y
2
+ y 1
c
2
, c
7
, c
10
y
7
+ 10y
6
+ 33y
5
+ 34y
4
+ 6y
3
+ y 4
c
3
, c
9
(y 1)
7
c
6
y
7
2y
6
+ y
5
10y
4
+ 46y
3
56y
2
+ 37y 9
22
(vi) Complex Volumes and Cusp Shapes
Solutions to I
u
3
1(vol +
1CS) Cusp shape
u = 0.376499 + 0.939075I
a = 1.00000
b = 0.740110 0.707121I
1.64493 6.00000
u = 0.376499 0.939075I
a = 1.00000
b = 0.740110 + 0.707121I
1.64493 6.00000
u = 0.597941 + 0.642727I
a = 1.00000
b = 0.055565 + 0.768625I
1.64493 6.00000
u = 0.597941 0.642727I
a = 1.00000
b = 0.055565 0.768625I
1.64493 6.00000
u = 0.538551
a = 1.00000
b = 0.290037
1.64493 6.00000
u = 0.04783 + 1.53350I
a = 1.00000
b = 2.34934 + 0.14671I
1.64493 6.00000
u = 0.04783 1.53350I
a = 1.00000
b = 2.34934 0.14671I
1.64493 6.00000
23
IV. u-Polynomials
Crossings u-Polynomials at each crossing
c
1
, c
12
(u
7
+ 3u
5
+ 2u
3
+ u + 1)(u
24
2u
23
+ ··· + 17u
2
+ 1)
· (u
90
3u
89
+ ··· 12u + 1)
c
2
(u
7
+ 5u
5
2u
4
+ 4u
3
u + 2)(u
24
+ 12u
22
+ ··· + 10u
2
+ 1)
· (u
90
+ u
89
+ ··· 1472u + 37417)
c
3
((u + 1)
7
)(u
24
8u
22
+ ··· 7u
2
+ 1)
· (u
90
6u
89
+ ··· 13860u + 2776)
c
4
, c
5
(u
7
+ 3u
5
+ 2u
3
+ u + 1)(u
24
+ 2u
23
+ ··· + 17u
2
+ 1)
· (u
90
3u
89
+ ··· 12u + 1)
c
6
(u
7
+ 2u
6
+ ··· + 5u 3)(u
24
8u
23
+ ··· 8u + 1)
· (u
90
5u
89
+ ··· 305292u + 114001)
c
7
(u
7
+ 5u
5
2u
4
+ 4u
3
u + 2)(u
24
+ 12u
22
+ ··· + 10u
2
+ 1)
· (u
90
+ u
89
+ ··· 1472u + 37417)
c
8
(u
7
+ 3u
5
+ 2u
3
+ u + 1)(u
24
+ 4u
23
+ ··· + 4u + 1)
· (u
90
+ 5u
89
+ ··· + 7842u + 839)
c
9
((u + 1)
7
)(u
24
8u
22
+ ··· 7u
2
+ 1)
· (u
90
6u
89
+ ··· 13860u + 2776)
c
10
(u
7
+ 5u
5
2u
4
+ 4u
3
u + 2)(u
24
12u
21
+ ··· + 17u + 5)
· (u
90
+ u
89
+ ··· + 13461u + 2479)
c
11
(u
7
+ 3u
5
+ 2u
3
+ u + 1)(u
24
4u
23
+ ··· 4u + 1)
· (u
90
+ 5u
89
+ ··· + 7842u + 839)
24
V. Riley Polynomials
Crossings Riley Polynomials at each crossing
c
1
, c
4
, c
5
c
12
(y
7
+ 6y
6
+ 13y
5
+ 14y
4
+ 10y
3
+ 4y
2
+ y 1)
· (y
24
+ 32y
23
+ ··· + 34y + 1)(y
90
+ 109y
89
+ ··· + 174y + 1)
c
2
, c
7
(y
7
+ 10y
6
+ ··· + y 4)(y
24
+ 24y
23
+ ··· + 20y + 1)
· (y
90
+ 65y
89
+ ··· + 22616709052y + 1400031889)
c
3
, c
9
((y 1)
7
)(y
24
16y
23
+ ··· 14y + 1)
· (y
90
58y
89
+ ··· 11659600y + 7706176)
c
6
(y
7
2y
6
+ y
5
10y
4
+ 46y
3
56y
2
+ 37y 9)
· (y
24
10y
23
+ ··· 16y + 1)
· (y
90
45y
89
+ ··· 374166877836y + 12996228001)
c
8
, c
11
(y
7
+ 6y
6
+ 13y
5
+ 14y
4
+ 10y
3
+ 4y
2
+ y 1)
· (y
24
+ 16y
23
+ ··· + 16y + 1)
· (y
90
+ 53y
89
+ ··· + 29423788y + 703921)
c
10
(y
7
+ 10y
6
+ ··· + y 4)(y
24
16y
21
+ ··· + 431y + 25)
· (y
90
19y
89
+ ··· 310592405y + 6145441)
25