12a
0565
(K12a
0565
)
A knot diagram
1
Linearized knot diagam
3 7 9 8 11 12 2 10 4 1 6 5
Solving Sequence
6,11
12
2,7
3 8 5 1 4 10 9
c
11
c
6
c
2
c
7
c
5
c
12
c
4
c
10
c
9
c
1
, c
3
, c
8
Ideals for irreducible components
2
of X
par
I
u
1
= h1.32158 × 10
56
u
107
+ 3.27224 × 10
55
u
106
+ ··· + 4.96026 × 10
55
b 4.27420 × 10
55
,
1.26324 × 10
55
u
107
5.20004 × 10
54
u
106
+ ··· + 4.96026 × 10
55
a + 2.69630 × 10
55
, u
108
+ u
107
+ ··· + 4u 1i
I
u
2
= h−u
4
+ u
2
a + 2u
2
+ b a 1, 4u
4
a + u
5
+ u
3
a 2u
4
6u
2
a 2u
3
+ a
2
au + u
2
2a u,
u
6
3u
4
+ 2u
2
+ 1i
* 2 irreducible components of dim
C
= 0, with total 120 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
= h1.32 × 10
56
u
107
+ 3.27 × 10
55
u
106
+ · · · + 4.96 × 10
55
b 4.27 ×
10
55
, 1.26 × 10
55
u
107
5.20 × 10
54
u
106
+ · · · + 4.96 × 10
55
a + 2.70 ×
10
55
, u
108
+ u
107
+ · · · + 4u 1i
(i) Arc colorings
a
6
=
0
u
a
11
=
1
0
a
12
=
1
u
2
a
2
=
0.254671u
107
+ 0.104834u
106
+ ··· + 14.4074u 0.543580
2.66434u
107
0.659690u
106
+ ··· 2.76765u + 0.861688
a
7
=
u
u
3
+ u
a
3
=
0.915359u
107
1.08630u
106
+ ··· + 14.1070u 0.0176901
1.60412u
107
0.998446u
106
+ ··· 1.98244u + 1.40868
a
8
=
1.55496u
107
1.18445u
106
+ ··· + 10.3009u 2.64846
0.0712391u
107
0.373281u
106
+ ··· + 10.1195u 2.22072
a
5
=
u
u
a
1
=
u
4
+ u
2
+ 1
u
4
2u
2
a
4
=
0.557394u
107
+ 0.518033u
106
+ ··· 21.2085u + 4.62222
3.34901u
107
+ 0.543398u
106
+ ··· 5.93596u + 1.29539
a
10
=
u
8
3u
6
+ u
4
+ 2u
2
+ 1
u
8
+ 4u
6
4u
4
a
9
=
1.38003u
107
+ 0.953232u
106
+ ··· + 9.29014u 2.70352
0.149367u
107
1.02014u
106
+ ··· + 12.1445u 2.89736
(ii) Obstruction class = 1
(iii) Cusp Shapes = 0.876716u
107
+ 1.14842u
106
+ ··· 33.0770u + 17.3306
2
(iv) u-Polynomials at the component
Crossings u-Polynomials at each crossing
c
1
u
108
+ 53u
107
+ ··· + 24u + 1
c
2
, c
7
u
108
+ u
107
+ ··· 6u 1
c
3
, c
9
u
108
+ u
107
+ ··· + 21u
2
5
c
4
u
108
+ 3u
107
+ ··· 461530u 25545
c
5
, c
6
, c
11
u
108
+ u
107
+ ··· + 4u 1
c
8
u
108
53u
107
+ ··· 210u + 25
c
10
u
108
23u
107
+ ··· 841432u + 42793
c
12
u
108
3u
107
+ ··· 334u + 99
3
(v) Riley Polynomials at the component
Crossings Riley Polynomials at each crossing
c
1
y
108
+ 17y
107
+ ··· 324y + 1
c
2
, c
7
y
108
+ 53y
107
+ ··· + 24y + 1
c
3
, c
9
y
108
53y
107
+ ··· 210y + 25
c
4
y
108
+ 31y
107
+ ··· 307924380910y + 652547025
c
5
, c
6
, c
11
y
108
99y
107
+ ··· + 4y + 1
c
8
y
108
+ 11y
107
+ ··· + 17950y + 625
c
10
y
108
+ 37y
107
+ ··· + 17887794312y + 1831240849
c
12
y
108
7y
107
+ ··· 323416y + 9801
4
(vi) Complex Volumes and Cusp Shapes
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 1.078510 + 0.066384I
a = 0.74913 + 2.91711I
b = 0.159122 1.375640I
1.75904 2.65358I 0
u = 1.078510 0.066384I
a = 0.74913 2.91711I
b = 0.159122 + 1.375640I
1.75904 + 2.65358I 0
u = 1.091430 + 0.244782I
a = 0.49231 + 2.62431I
b = 0.860462 0.916898I
0.96511 4.47596I 0
u = 1.091430 0.244782I
a = 0.49231 2.62431I
b = 0.860462 + 0.916898I
0.96511 + 4.47596I 0
u = 1.133480 + 0.015855I
a = 1.05659 + 3.14794I
b = 0.06419 1.93882I
0.45128 + 2.17405I 0
u = 1.133480 0.015855I
a = 1.05659 3.14794I
b = 0.06419 + 1.93882I
0.45128 2.17405I 0
u = 1.099430 + 0.302544I
a = 0.38080 2.61193I
b = 1.083300 + 0.814934I
1.19055 + 9.20491I 0
u = 1.099430 0.302544I
a = 0.38080 + 2.61193I
b = 1.083300 0.814934I
1.19055 9.20491I 0
u = 1.164780 + 0.108311I
a = 0.637076 0.329305I
b = 0.785331 + 0.058134I
1.56546 + 0.67321I 0
u = 1.164780 0.108311I
a = 0.637076 + 0.329305I
b = 0.785331 0.058134I
1.56546 0.67321I 0
5
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.691156 + 0.445702I
a = 0.57421 + 2.25405I
b = 0.881318 + 0.430710I
2.28872 9.22034I 8.40055 + 5.38134I
u = 0.691156 0.445702I
a = 0.57421 2.25405I
b = 0.881318 0.430710I
2.28872 + 9.22034I 8.40055 5.38134I
u = 0.312027 + 0.742416I
a = 0.599810 0.003658I
b = 2.50501 + 0.43469I
0.94501 + 13.40950I 5.88106 10.27839I
u = 0.312027 0.742416I
a = 0.599810 + 0.003658I
b = 2.50501 0.43469I
0.94501 13.40950I 5.88106 + 10.27839I
u = 0.304870 + 0.721074I
a = 0.533307 + 0.121712I
b = 2.43367 0.20539I
1.48238 8.19805I 2.90543 + 6.87933I
u = 0.304870 0.721074I
a = 0.533307 0.121712I
b = 2.43367 + 0.20539I
1.48238 + 8.19805I 2.90543 6.87933I
u = 0.345057 + 0.699162I
a = 0.286884 0.018001I
b = 1.97972 + 0.27664I
3.40555 + 5.22912I 9.21272 5.28491I
u = 0.345057 0.699162I
a = 0.286884 + 0.018001I
b = 1.97972 0.27664I
3.40555 5.22912I 9.21272 + 5.28491I
u = 0.338529 + 0.700114I
a = 0.176477 0.453278I
b = 0.044291 + 0.534112I
3.32780 7.81069I 9.09509 + 6.82204I
u = 0.338529 0.700114I
a = 0.176477 + 0.453278I
b = 0.044291 0.534112I
3.32780 + 7.81069I 9.09509 6.82204I
6
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.651351 + 0.404173I
a = 0.34954 2.24628I
b = 0.828682 0.267745I
0.17377 + 4.20459I 5.40595 1.84900I
u = 0.651351 0.404173I
a = 0.34954 + 2.24628I
b = 0.828682 + 0.267745I
0.17377 4.20459I 5.40595 + 1.84900I
u = 0.098301 + 0.756192I
a = 0.582497 0.315067I
b = 2.05472 + 0.23854I
1.85912 5.30654I 4.29467 + 5.82125I
u = 0.098301 0.756192I
a = 0.582497 + 0.315067I
b = 2.05472 0.23854I
1.85912 + 5.30654I 4.29467 5.82125I
u = 1.209590 + 0.269103I
a = 0.44287 2.25971I
b = 1.16164 + 1.17315I
2.86997 + 2.24160I 0
u = 1.209590 0.269103I
a = 0.44287 + 2.25971I
b = 1.16164 1.17315I
2.86997 2.24160I 0
u = 0.583376 + 0.482300I
a = 0.37395 + 1.83053I
b = 0.557650 + 0.305960I
4.32970 1.18610I 11.36506 0.65831I
u = 0.583376 0.482300I
a = 0.37395 1.83053I
b = 0.557650 0.305960I
4.32970 + 1.18610I 11.36506 + 0.65831I
u = 0.584735 + 0.471879I
a = 0.824618 0.223152I
b = 0.381146 + 0.027264I
4.29184 + 3.79474I 11.40196 0.85477I
u = 0.584735 0.471879I
a = 0.824618 + 0.223152I
b = 0.381146 0.027264I
4.29184 3.79474I 11.40196 + 0.85477I
7
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.395123 + 0.635568I
a = 0.198792 0.793432I
b = 0.094136 + 0.219436I
4.88640 + 0.26560I 11.56392 + 0.30422I
u = 0.395123 0.635568I
a = 0.198792 + 0.793432I
b = 0.094136 0.219436I
4.88640 0.26560I 11.56392 0.30422I
u = 1.229210 + 0.242947I
a = 0.896086 + 1.028220I
b = 1.278550 0.286411I
3.00417 4.91856I 0
u = 1.229210 0.242947I
a = 0.896086 1.028220I
b = 1.278550 + 0.286411I
3.00417 + 4.91856I 0
u = 0.486434 + 0.557533I
a = 0.532437 0.172628I
b = 0.699156 0.094278I
5.23596 4.22319I 11.96155 + 6.69488I
u = 0.486434 0.557533I
a = 0.532437 + 0.172628I
b = 0.699156 + 0.094278I
5.23596 + 4.22319I 11.96155 6.69488I
u = 0.321740 + 0.658812I
a = 0.033716 + 0.539334I
b = 0.190501 0.454927I
0.71793 + 2.99181I 5.99049 3.37437I
u = 0.321740 0.658812I
a = 0.033716 0.539334I
b = 0.190501 + 0.454927I
0.71793 2.99181I 5.99049 + 3.37437I
u = 0.116202 + 0.710518I
a = 0.459041 + 0.428398I
b = 1.92755 0.02931I
3.89427 + 0.88977I 0.482474 1.035537I
u = 0.116202 0.710518I
a = 0.459041 0.428398I
b = 1.92755 + 0.02931I
3.89427 0.88977I 0.482474 + 1.035537I
8
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.010129 + 0.719466I
a = 0.417716 0.122153I
b = 1.55361 + 0.38676I
0.79600 + 1.37844I 6.81642 0.64656I
u = 0.010129 0.719466I
a = 0.417716 + 0.122153I
b = 1.55361 0.38676I
0.79600 1.37844I 6.81642 + 0.64656I
u = 0.263626 + 0.654252I
a = 0.325800 + 0.611267I
b = 2.25097 + 0.64555I
3.32605 5.48665I 1.87864 + 8.65808I
u = 0.263626 0.654252I
a = 0.325800 0.611267I
b = 2.25097 0.64555I
3.32605 + 5.48665I 1.87864 8.65808I
u = 1.280520 + 0.227409I
a = 0.454469 + 1.305840I
b = 1.051990 0.686908I
2.98007 4.88539I 0
u = 1.280520 0.227409I
a = 0.454469 1.305840I
b = 1.051990 + 0.686908I
2.98007 + 4.88539I 0
u = 1.309160 + 0.119036I
a = 1.13476 2.30065I
b = 1.28347 + 2.10489I
2.32381 + 3.02952I 0
u = 1.309160 0.119036I
a = 1.13476 + 2.30065I
b = 1.28347 2.10489I
2.32381 3.02952I 0
u = 0.268902 + 0.619610I
a = 0.347657 1.143590I
b = 1.69801 0.61561I
2.24602 + 4.56963I 4.51511 7.48692I
u = 0.268902 0.619610I
a = 0.347657 + 1.143590I
b = 1.69801 + 0.61561I
2.24602 4.56963I 4.51511 + 7.48692I
9
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.194915 + 0.638039I
a = 0.292126 + 0.821408I
b = 1.77808 + 0.35167I
4.08493 0.24577I 0.63553 + 2.29038I
u = 0.194915 0.638039I
a = 0.292126 0.821408I
b = 1.77808 0.35167I
4.08493 + 0.24577I 0.63553 2.29038I
u = 1.33579
a = 0.0187117
b = 0.474558
5.83646 0
u = 1.305020 + 0.308818I
a = 1.51515 + 1.58378I
b = 2.37848 0.48598I
2.51934 + 1.46324I 0
u = 1.305020 0.308818I
a = 1.51515 1.58378I
b = 2.37848 + 0.48598I
2.51934 1.46324I 0
u = 0.485149 + 0.445066I
a = 0.763623 + 0.056116I
b = 0.504700 0.143811I
1.53101 + 0.65365I 8.18643 3.61177I
u = 0.485149 0.445066I
a = 0.763623 0.056116I
b = 0.504700 + 0.143811I
1.53101 0.65365I 8.18643 + 3.61177I
u = 0.245646 + 0.610621I
a = 0.053515 0.881772I
b = 1.91700 1.11447I
2.50666 + 0.26869I 3.56195 3.97481I
u = 0.245646 0.610621I
a = 0.053515 + 0.881772I
b = 1.91700 + 1.11447I
2.50666 0.26869I 3.56195 + 3.97481I
u = 1.327250 + 0.276931I
a = 1.40522 1.82470I
b = 2.37206 + 0.99248I
0.62962 + 2.67287I 0
10
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 1.327250 0.276931I
a = 1.40522 + 1.82470I
b = 2.37206 0.99248I
0.62962 2.67287I 0
u = 1.373750 + 0.243039I
a = 1.40305 2.13535I
b = 2.56082 + 1.71267I
0.89903 + 3.44486I 0
u = 1.373750 0.243039I
a = 1.40305 + 2.13535I
b = 2.56082 1.71267I
0.89903 3.44486I 0
u = 1.380940 + 0.198807I
a = 0.708088 + 0.977587I
b = 0.892045 0.010544I
3.39614 4.59399I 0
u = 1.380940 0.198807I
a = 0.708088 0.977587I
b = 0.892045 + 0.010544I
3.39614 + 4.59399I 0
u = 0.119251 + 0.591860I
a = 0.493502 + 0.220355I
b = 0.685302 0.330415I
1.34471 + 1.97131I 4.36318 4.94300I
u = 0.119251 0.591860I
a = 0.493502 0.220355I
b = 0.685302 + 0.330415I
1.34471 1.97131I 4.36318 + 4.94300I
u = 1.387350 + 0.167078I
a = 1.219680 0.388168I
b = 1.009460 0.799919I
3.31742 0.59461I 0
u = 1.387350 0.167078I
a = 1.219680 + 0.388168I
b = 1.009460 + 0.799919I
3.31742 + 0.59461I 0
u = 1.400760 + 0.187653I
a = 1.26496 + 2.30774I
b = 2.25958 2.39901I
3.93453 0.63802I 0
11
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 1.400760 0.187653I
a = 1.26496 2.30774I
b = 2.25958 + 2.39901I
3.93453 + 0.63802I 0
u = 1.39769 + 0.23851I
a = 2.84149 0.84830I
b = 2.65758 0.54537I
2.74784 3.38218I 0
u = 1.39769 0.23851I
a = 2.84149 + 0.84830I
b = 2.65758 + 0.54537I
2.74784 + 3.38218I 0
u = 1.40662 + 0.24260I
a = 1.46311 + 2.26771I
b = 2.85804 2.03183I
3.11491 7.73415I 0
u = 1.40662 0.24260I
a = 1.46311 2.26771I
b = 2.85804 + 2.03183I
3.11491 + 7.73415I 0
u = 1.40477 + 0.25503I
a = 2.81208 + 1.44750I
b = 3.09899 + 0.06696I
2.00366 + 8.80571I 0
u = 1.40477 0.25503I
a = 2.81208 1.44750I
b = 3.09899 0.06696I
2.00366 8.80571I 0
u = 1.42740 + 0.25561I
a = 0.265370 + 0.774547I
b = 0.230532 0.576712I
6.31895 6.33913I 0
u = 1.42740 0.25561I
a = 0.265370 0.774547I
b = 0.230532 + 0.576712I
6.31895 + 6.33913I 0
u = 1.44137 + 0.16472I
a = 0.917777 0.491847I
b = 0.614103 + 0.432152I
7.63096 2.89779I 0
12
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 1.44137 0.16472I
a = 0.917777 + 0.491847I
b = 0.614103 0.432152I
7.63096 + 2.89779I 0
u = 1.44903 + 0.11745I
a = 0.605643 + 0.825539I
b = 0.01844 1.83441I
6.39373 2.52928I 0
u = 1.44903 0.11745I
a = 0.605643 0.825539I
b = 0.01844 + 1.83441I
6.39373 + 2.52928I 0
u = 1.42656 + 0.28196I
a = 2.35252 + 2.19395I
b = 3.43850 0.89248I
4.05548 + 11.84760I 0
u = 1.42656 0.28196I
a = 2.35252 2.19395I
b = 3.43850 + 0.89248I
4.05548 11.84760I 0
u = 1.43204 + 0.29068I
a = 2.24646 2.37108I
b = 3.54962 + 1.12717I
6.5247 17.1645I 0
u = 1.43204 0.29068I
a = 2.24646 + 2.37108I
b = 3.54962 1.12717I
6.5247 + 17.1645I 0
u = 1.43777 + 0.26929I
a = 0.443434 0.787351I
b = 0.425283 + 0.761627I
9.0213 + 11.3443I 0
u = 1.43777 0.26929I
a = 0.443434 + 0.787351I
b = 0.425283 0.761627I
9.0213 11.3443I 0
u = 1.44010 + 0.26769I
a = 2.03984 1.94093I
b = 2.94110 + 1.01445I
9.12994 8.75266I 0
13
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 1.44010 0.26769I
a = 2.03984 + 1.94093I
b = 2.94110 1.01445I
9.12994 + 8.75266I 0
u = 1.44751 + 0.23678I
a = 0.258180 0.468103I
b = 0.490091 + 0.204809I
10.79720 + 2.91953I 0
u = 1.44751 0.23678I
a = 0.258180 + 0.468103I
b = 0.490091 0.204809I
10.79720 2.91953I 0
u = 1.46243 + 0.14469I
a = 0.587301 + 0.574641I
b = 0.255699 0.699484I
10.81440 1.67028I 0
u = 1.46243 0.14469I
a = 0.587301 0.574641I
b = 0.255699 + 0.699484I
10.81440 + 1.67028I 0
u = 1.46406 + 0.14706I
a = 0.276285 0.558000I
b = 0.37933 + 1.43135I
10.86460 0.98163I 0
u = 1.46406 0.14706I
a = 0.276285 + 0.558000I
b = 0.37933 1.43135I
10.86460 + 0.98163I 0
u = 1.46834 + 0.10526I
a = 0.438230 1.041400I
b = 0.24048 + 2.09534I
9.17034 + 7.53278I 0
u = 1.46834 0.10526I
a = 0.438230 + 1.041400I
b = 0.24048 2.09534I
9.17034 7.53278I 0
u = 1.46153 + 0.18829I
a = 1.008240 + 0.914479I
b = 0.978642 0.870160I
11.49880 + 6.90459I 0
14
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 1.46153 0.18829I
a = 1.008240 0.914479I
b = 0.978642 + 0.870160I
11.49880 6.90459I 0
u = 0.447001 + 0.170577I
a = 0.60361 2.65934I
b = 0.763007 + 0.045905I
1.99045 + 2.33467I 4.94783 3.24934I
u = 0.447001 0.170577I
a = 0.60361 + 2.65934I
b = 0.763007 0.045905I
1.99045 2.33467I 4.94783 + 3.24934I
u = 0.271412 + 0.385217I
a = 0.55786 1.78537I
b = 1.127460 0.377063I
1.42196 1.69809I 8.03714 0.07727I
u = 0.271412 0.385217I
a = 0.55786 + 1.78537I
b = 1.127460 + 0.377063I
1.42196 + 1.69809I 8.03714 + 0.07727I
u = 0.378359
a = 0.988497
b = 0.211165
0.761657 13.7450
u = 0.158976 + 0.327036I
a = 2.49132 + 0.81649I
b = 0.941699 0.463379I
1.56493 + 2.24938I 7.49091 5.30893I
u = 0.158976 0.327036I
a = 2.49132 0.81649I
b = 0.941699 + 0.463379I
1.56493 2.24938I 7.49091 + 5.30893I
15
II.
I
u
2
= h−u
4
+u
2
a+2u
2
+ba1, 4u
4
a+u
5
+· · ·+a
2
2a, u
6
3u
4
+2u
2
+1i
(i) Arc colorings
a
6
=
0
u
a
11
=
1
0
a
12
=
1
u
2
a
2
=
a
u
4
u
2
a 2u
2
+ a + 1
a
7
=
u
u
3
+ u
a
3
=
u
4
u
2
+ a 1
u
2
a + a + 1
a
8
=
u
5
a + 2u
3
a au + u
u
5
+ u
3
a + 2u
3
2au u
a
5
=
u
u
a
1
=
u
4
+ u
2
+ 1
u
4
2u
2
a
4
=
u
5
a 2u
3
a + 2u
4
+ au 3u
2
+ a 2u 1
u
5
a u
5
+ 2u
3
a u
4
u
2
a + 3u
3
au + 2u
2
+ a + 1
a
10
=
u
4
+ u
2
+ 1
u
4
u
2
1
a
9
=
u
5
a + u
5
+ 3u
3
a 2u
3
2au
2u
5
+ 4u
3
au
(ii) Obstruction class = 1
(iii) Cusp Shapes = 4u
5
4u
3
a 4u
4
4u
3
+ 8au + 8u
2
+ 4
16
(iv) u-Polynomials at the component
Crossings u-Polynomials at each crossing
c
1
(u 1)
12
c
2
, c
7
(u
2
+ 1)
6
c
3
, c
4
, c
9
(u
4
u
2
+ 1)
3
c
5
, c
6
, c
11
(u
6
3u
4
+ 2u
2
+ 1)
2
c
8
(u
2
+ u + 1)
6
c
10
(u
3
+ u
2
1)
4
c
12
(u
6
+ u
4
+ 2u
2
+ 1)
2
17
(v) Riley Polynomials at the component
Crossings Riley Polynomials at each crossing
c
1
(y 1)
12
c
2
, c
7
(y + 1)
12
c
3
, c
4
, c
9
(y
2
y + 1)
6
c
5
, c
6
, c
11
(y
3
3y
2
+ 2y + 1)
4
c
8
(y
2
+ y + 1)
6
c
10
(y
3
y
2
+ 2y 1)
4
c
12
(y
3
+ y
2
+ 2y + 1)
4
18
(vi) Complex Volumes and Cusp Shapes
Solutions to I
u
2
1(vol +
1CS) Cusp shape
u = 1.307140 + 0.215080I
a = 0.03980 1.84565I
b = 0.88885 + 1.98972I
1.37919 + 0.79824I 5.50976 + 0.48465I
u = 1.307140 + 0.215080I
a = 1.47997 3.13579I
b = 2.62090 + 1.98972I
1.37919 + 4.85801I 5.50976 6.44355I
u = 1.307140 0.215080I
a = 0.03980 + 1.84565I
b = 0.88885 1.98972I
1.37919 0.79824I 5.50976 0.48465I
u = 1.307140 0.215080I
a = 1.47997 + 3.13579I
b = 2.62090 1.98972I
1.37919 4.85801I 5.50976 + 6.44355I
u = 1.307140 + 0.215080I
a = 0.705065 + 0.968214I
b = 0.888852 0.989724I
1.37919 4.85801I 5.50976 + 6.44355I
u = 1.307140 + 0.215080I
a = 2.22483 + 2.25835I
b = 2.62090 0.98972I
1.37919 0.79824I 5.50976 0.48465I
u = 1.307140 0.215080I
a = 0.705065 0.968214I
b = 0.888852 + 0.989724I
1.37919 + 4.85801I 5.50976 6.44355I
u = 1.307140 0.215080I
a = 2.22483 2.25835I
b = 2.62090 + 0.98972I
1.37919 + 0.79824I 5.50976 + 0.48465I
u = 0.569840I
a = 0.838781 + 0.377439I
b = 0.643730 + 0.500000I
2.75839 + 2.02988I 1.01951 3.46410I
u = 0.569840I
a = 0.468706 + 0.377439I
b = 2.37578 + 0.50000I
2.75839 2.02988I 1.01951 + 3.46410I
19
Solutions to I
u
2
1(vol +
1CS) Cusp shape
u = 0.569840I
a = 0.838781 0.377439I
b = 0.643730 0.500000I
2.75839 2.02988I 1.01951 + 3.46410I
u = 0.569840I
a = 0.468706 0.377439I
b = 2.37578 0.50000I
2.75839 + 2.02988I 1.01951 3.46410I
20
III. u-Polynomials
Crossings u-Polynomials at each crossing
c
1
((u 1)
12
)(u
108
+ 53u
107
+ ··· + 24u + 1)
c
2
, c
7
((u
2
+ 1)
6
)(u
108
+ u
107
+ ··· 6u 1)
c
3
, c
9
((u
4
u
2
+ 1)
3
)(u
108
+ u
107
+ ··· + 21u
2
5)
c
4
((u
4
u
2
+ 1)
3
)(u
108
+ 3u
107
+ ··· 461530u 25545)
c
5
, c
6
, c
11
((u
6
3u
4
+ 2u
2
+ 1)
2
)(u
108
+ u
107
+ ··· + 4u 1)
c
8
((u
2
+ u + 1)
6
)(u
108
53u
107
+ ··· 210u + 25)
c
10
((u
3
+ u
2
1)
4
)(u
108
23u
107
+ ··· 841432u + 42793)
c
12
((u
6
+ u
4
+ 2u
2
+ 1)
2
)(u
108
3u
107
+ ··· 334u + 99)
21
IV. Riley Polynomials
Crossings Riley Polynomials at each crossing
c
1
((y 1)
12
)(y
108
+ 17y
107
+ ··· 324y + 1)
c
2
, c
7
((y + 1)
12
)(y
108
+ 53y
107
+ ··· + 24y + 1)
c
3
, c
9
((y
2
y + 1)
6
)(y
108
53y
107
+ ··· 210y + 25)
c
4
((y
2
y + 1)
6
)(y
108
+ 31y
107
+ ··· 3.07924 × 10
11
y + 6.52547 × 10
8
)
c
5
, c
6
, c
11
((y
3
3y
2
+ 2y + 1)
4
)(y
108
99y
107
+ ··· + 4y + 1)
c
8
((y
2
+ y + 1)
6
)(y
108
+ 11y
107
+ ··· + 17950y + 625)
c
10
(y
3
y
2
+ 2y 1)
4
· (y
108
+ 37y
107
+ ··· + 17887794312y + 1831240849)
c
12
((y
3
+ y
2
+ 2y + 1)
4
)(y
108
7y
107
+ ··· 323416y + 9801)
22