12n
0353
(K12n
0353
)
A knot diagram
1
Linearized knot diagam
3 6 12 9 10 2 12 3 11 5 7 9
Solving Sequence
3,12 4,9
5 1 2 8 7 6 11 10
c
3
c
4
c
12
c
1
c
8
c
7
c
6
c
11
c
10
c
2
, c
5
, c
9
Ideals for irreducible components
2
of X
par
I
u
1
= h−9.19698 × 10
252
u
72
+ 4.10952 × 10
253
u
71
+ ··· + 1.58931 × 10
253
b + 8.73323 × 10
256
,
1.50404 × 10
255
u
72
+ 6.27835 × 10
255
u
71
+ ··· + 7.16781 × 10
255
a + 2.14004 × 10
259
,
u
73
4u
72
+ ··· 7469u 4961i
I
u
2
= h−9u
21
48u
20
+ ··· + b + 11, 28u
21
+ 177u
20
+ ··· + a + 3, u
22
+ 7u
21
+ ··· + 7u + 1i
* 2 irreducible components of dim
C
= 0, with total 95 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
= h−9.20 × 10
252
u
72
+ 4.11 × 10
253
u
71
+ · · · + 1.59 × 10
253
b + 8.73 ×
10
256
, 1.50 × 10
255
u
72
+ 6.28 × 10
255
u
71
+ · · · + 7.17 × 10
255
a + 2.14 ×
10
259
, u
73
4u
72
+ · · · 7469u 4961i
(i) Arc colorings
a
3
=
1
0
a
12
=
0
u
a
4
=
1
u
2
a
9
=
0.209833u
72
0.875910u
71
+ ··· + 2329.47u 2985.62
0.578676u
72
2.58572u
71
+ ··· + 2145.74u 5494.97
a
5
=
1.50718u
72
+ 6.92175u
71
+ ··· 2293.79u + 12596.8
0.676487u
72
3.11685u
71
+ ··· + 970.426u 5595.66
a
1
=
0.754050u
72
+ 3.46435u
71
+ ··· 1139.08u + 6262.26
1.15917u
72
+ 5.32183u
71
+ ··· 1731.26u + 9700.40
a
2
=
0.405124u
72
1.85748u
71
+ ··· + 592.184u 3438.14
1.15917u
72
+ 5.32183u
71
+ ··· 1731.26u + 9700.40
a
8
=
0.368843u
72
+ 1.70981u
71
+ ··· + 183.722u + 2509.35
0.578676u
72
2.58572u
71
+ ··· + 2145.74u 5494.97
a
7
=
0.368843u
72
+ 1.70981u
71
+ ··· + 183.722u + 2509.35
0.423437u
72
1.87140u
71
+ ··· + 2066.92u 4331.94
a
6
=
0.0556736u
72
+ 0.215818u
71
+ ··· 1052.76u + 687.535
0.208916u
72
+ 1.01482u
71
+ ··· + 1183.76u + 1059.07
a
11
=
1.57181u
72
+ 7.22423u
71
+ ··· 2235.05u + 13095.6
0.607582u
72
2.79839u
71
+ ··· + 843.580u 5009.04
a
10
=
1.51645u
72
+ 7.01530u
71
+ ··· 1132.33u + 11925.2
1.75380u
72
7.99846u
71
+ ··· + 4270.33u 15380.1
(ii) Obstruction class = 1
(iii) Cusp Shapes = 5.97688u
72
27.3063u
71
+ ··· + 12628.2u 52558.5
2
(iv) u-Polynomials at the component
Crossings u-Polynomials at each crossing
c
1
u
73
+ 42u
72
+ ··· + u 1
c
2
, c
6
u
73
2u
72
+ ··· + 3u 1
c
3
u
73
4u
72
+ ··· 7469u 4961
c
4
u
73
+ u
72
+ ··· + 504u 34447
c
5
, c
10
u
73
u
72
+ ··· + 6u 19
c
7
, c
11
u
73
3u
72
+ ··· + 518u 77
c
8
u
73
u
72
+ ··· 4184u 2449
c
9
u
73
35u
72
+ ··· 3270u + 361
c
12
u
73
+ u
72
+ ··· + 9112u 2479
3
(v) Riley Polynomials at the component
Crossings Riley Polynomials at each crossing
c
1
y
73
6y
72
+ ··· + 109y 1
c
2
, c
6
y
73
+ 42y
72
+ ··· + y 1
c
3
y
73
80y
72
+ ··· + 887378547y 24611521
c
4
y
73
5y
72
+ ··· + 9963979872y 1186595809
c
5
, c
10
y
73
+ 35y
72
+ ··· 3270y 361
c
7
, c
11
y
73
25y
72
+ ··· 47222y 5929
c
8
y
73
+ 83y
72
+ ··· 316258558y 5997601
c
9
y
73
+ 15y
72
+ ··· 1105302y 130321
c
12
y
73
+ 79y
72
+ ··· 157637734y 6145441
4
(vi) Complex Volumes and Cusp Shapes
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.960694 + 0.223002I
a = 0.31701 1.62689I
b = 0.06752 1.93464I
5.68153 + 1.21562I 0
u = 0.960694 0.223002I
a = 0.31701 + 1.62689I
b = 0.06752 + 1.93464I
5.68153 1.21562I 0
u = 0.800102 + 0.544363I
a = 1.340300 0.231886I
b = 0.229015 + 0.678752I
3.32889 + 1.44969I 0
u = 0.800102 0.544363I
a = 1.340300 + 0.231886I
b = 0.229015 0.678752I
3.32889 1.44969I 0
u = 0.164338 + 1.072630I
a = 0.568772 + 0.453403I
b = 0.067159 0.480853I
3.93954 + 2.04644I 0
u = 0.164338 1.072630I
a = 0.568772 0.453403I
b = 0.067159 + 0.480853I
3.93954 2.04644I 0
u = 0.436988 + 1.059720I
a = 0.333172 + 0.259820I
b = 0.045424 + 0.670574I
0.65478 + 1.74378I 0
u = 0.436988 1.059720I
a = 0.333172 0.259820I
b = 0.045424 0.670574I
0.65478 1.74378I 0
u = 0.795078 + 0.220539I
a = 1.98401 0.60795I
b = 0.300669 0.679598I
1.18619 7.05030I 0
u = 0.795078 0.220539I
a = 1.98401 + 0.60795I
b = 0.300669 + 0.679598I
1.18619 + 7.05030I 0
5
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.802130 + 0.134868I
a = 0.306467 + 0.314014I
b = 0.350471 0.748878I
3.45310 + 2.18113I 0
u = 0.802130 0.134868I
a = 0.306467 0.314014I
b = 0.350471 + 0.748878I
3.45310 2.18113I 0
u = 0.330029 + 1.180410I
a = 0.607699 0.317572I
b = 0.032457 0.739244I
2.70715 2.50353I 0
u = 0.330029 1.180410I
a = 0.607699 + 0.317572I
b = 0.032457 + 0.739244I
2.70715 + 2.50353I 0
u = 0.661879 + 1.045090I
a = 0.806091 + 0.004427I
b = 0.145525 0.713654I
3.77152 + 3.96149I 0
u = 0.661879 1.045090I
a = 0.806091 0.004427I
b = 0.145525 + 0.713654I
3.77152 3.96149I 0
u = 0.716179 + 0.098392I
a = 0.780594 0.817015I
b = 0.982012 0.581986I
4.73461 + 4.33640I 0
u = 0.716179 0.098392I
a = 0.780594 + 0.817015I
b = 0.982012 + 0.581986I
4.73461 4.33640I 0
u = 0.632663 + 0.312150I
a = 1.67667 0.35481I
b = 0.283393 + 0.257017I
5.10442 + 3.75309I 0
u = 0.632663 0.312150I
a = 1.67667 + 0.35481I
b = 0.283393 0.257017I
5.10442 3.75309I 0
6
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.697508 + 0.042276I
a = 0.320190 + 1.056290I
b = 1.293460 + 0.457104I
3.08996 + 0.50335I 0
u = 0.697508 0.042276I
a = 0.320190 1.056290I
b = 1.293460 0.457104I
3.08996 0.50335I 0
u = 1.344490 + 0.232038I
a = 0.222248 + 0.421654I
b = 0.107848 + 1.300160I
3.26184 1.83723I 0
u = 1.344490 0.232038I
a = 0.222248 0.421654I
b = 0.107848 1.300160I
3.26184 + 1.83723I 0
u = 0.629638 + 0.051553I
a = 0.506953 + 0.948183I
b = 1.270960 0.116190I
0.96981 + 3.12263I 0. 3.92838I
u = 0.629638 0.051553I
a = 0.506953 0.948183I
b = 1.270960 + 0.116190I
0.96981 3.12263I 0. + 3.92838I
u = 0.623255 + 0.102892I
a = 0.812430 + 0.004182I
b = 1.051920 0.163847I
4.88061 + 4.25358I 7.95219 6.27359I
u = 0.623255 0.102892I
a = 0.812430 0.004182I
b = 1.051920 + 0.163847I
4.88061 4.25358I 7.95219 + 6.27359I
u = 0.570164 + 0.021414I
a = 0.589757 1.092380I
b = 1.64229 + 0.16254I
1.88323 + 7.93272I 1.77664 7.45810I
u = 0.570164 0.021414I
a = 0.589757 + 1.092380I
b = 1.64229 0.16254I
1.88323 7.93272I 1.77664 + 7.45810I
7
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.30805 + 1.39618I
a = 0.292611 + 0.126630I
b = 0.015318 + 0.602025I
0.08107 + 3.31791I 0
u = 0.30805 1.39618I
a = 0.292611 0.126630I
b = 0.015318 0.602025I
0.08107 3.31791I 0
u = 1.38600 + 0.44020I
a = 0.082384 0.995509I
b = 0.47298 1.51710I
0.98783 + 1.74704I 0
u = 1.38600 0.44020I
a = 0.082384 + 0.995509I
b = 0.47298 + 1.51710I
0.98783 1.74704I 0
u = 1.46506 + 0.00570I
a = 0.244949 + 0.905533I
b = 0.06859 + 1.83552I
4.04293 0.08034I 0
u = 1.46506 0.00570I
a = 0.244949 0.905533I
b = 0.06859 1.83552I
4.04293 + 0.08034I 0
u = 0.445112 + 0.281624I
a = 2.64254 + 1.30726I
b = 0.326600 + 0.664261I
0.18113 2.12200I 60.10 + 0.246955I
u = 0.445112 0.281624I
a = 2.64254 1.30726I
b = 0.326600 0.664261I
0.18113 + 2.12200I 60.10 0.246955I
u = 1.37711 + 0.55990I
a = 0.543341 1.220170I
b = 0.10757 1.80567I
7.78936 4.71097I 0
u = 1.37711 0.55990I
a = 0.543341 + 1.220170I
b = 0.10757 + 1.80567I
7.78936 + 4.71097I 0
8
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.503647
a = 0.984699
b = 0.808330
1.57161 5.96450
u = 0.463701 + 0.131323I
a = 1.78260 + 1.42853I
b = 0.591813 + 0.515091I
1.58882 0.32095I 2.16231 0.77182I
u = 0.463701 0.131323I
a = 1.78260 1.42853I
b = 0.591813 0.515091I
1.58882 + 0.32095I 2.16231 + 0.77182I
u = 1.48212 + 0.39520I
a = 0.466011 + 1.151950I
b = 0.06640 + 1.79340I
9.37134 + 0.19549I 0
u = 1.48212 0.39520I
a = 0.466011 1.151950I
b = 0.06640 1.79340I
9.37134 0.19549I 0
u = 0.14949 + 1.54080I
a = 0.489674 0.086157I
b = 0.047121 0.560015I
1.51048 + 8.25732I 0
u = 0.14949 1.54080I
a = 0.489674 + 0.086157I
b = 0.047121 + 0.560015I
1.51048 8.25732I 0
u = 1.56042 + 0.34674I
a = 0.010384 1.048110I
b = 0.67684 1.68437I
1.26128 7.24457I 0
u = 1.56042 0.34674I
a = 0.010384 + 1.048110I
b = 0.67684 + 1.68437I
1.26128 + 7.24457I 0
u = 1.65389 + 0.09304I
a = 0.414399 + 0.961671I
b = 0.02065 + 1.74832I
8.67096 + 2.54106I 0
9
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 1.65389 0.09304I
a = 0.414399 0.961671I
b = 0.02065 1.74832I
8.67096 2.54106I 0
u = 0.010648 + 0.336630I
a = 0.862000 + 0.884016I
b = 0.186715 + 0.375985I
0.391751 + 1.001410I 6.35526 6.56819I
u = 0.010648 0.336630I
a = 0.862000 0.884016I
b = 0.186715 0.375985I
0.391751 1.001410I 6.35526 + 6.56819I
u = 1.69732 + 0.15917I
a = 0.038668 + 1.110620I
b = 0.55120 + 1.40451I
7.69355 0.16950I 0
u = 1.69732 0.15917I
a = 0.038668 1.110620I
b = 0.55120 1.40451I
7.69355 + 0.16950I 0
u = 1.71266 + 0.01894I
a = 0.436259 + 0.898448I
b = 0.05204 + 1.71503I
6.53777 7.64853I 0
u = 1.71266 0.01894I
a = 0.436259 0.898448I
b = 0.05204 1.71503I
6.53777 + 7.64853I 0
u = 1.64149 + 0.52671I
a = 0.146618 + 0.979002I
b = 0.32106 + 1.60321I
3.98213 + 4.52901I 0
u = 1.64149 0.52671I
a = 0.146618 0.979002I
b = 0.32106 1.60321I
3.98213 4.52901I 0
u = 1.62388 + 0.66255I
a = 0.156149 1.005480I
b = 0.33974 1.66999I
1.69099 + 9.76232I 0
10
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 1.62388 0.66255I
a = 0.156149 + 1.005480I
b = 0.33974 + 1.66999I
1.69099 9.76232I 0
u = 1.75783 + 0.13522I
a = 0.154026 + 0.860113I
b = 0.14670 + 1.46011I
5.44293 + 1.91638I 0
u = 1.75783 0.13522I
a = 0.154026 0.860113I
b = 0.14670 1.46011I
5.44293 1.91638I 0
u = 1.77611 + 0.03947I
a = 0.016455 + 1.094850I
b = 0.54064 + 1.51324I
8.82927 5.92695I 0
u = 1.77611 0.03947I
a = 0.016455 1.094850I
b = 0.54064 1.51324I
8.82927 + 5.92695I 0
u = 1.80292 + 0.06963I
a = 0.205300 + 0.777815I
b = 0.03434 + 1.45649I
4.37924 + 2.95785I 0
u = 1.80292 0.06963I
a = 0.205300 0.777815I
b = 0.03434 1.45649I
4.37924 2.95785I 0
u = 1.75562 + 0.45978I
a = 0.028610 + 1.074530I
b = 0.55514 + 1.73413I
7.12058 10.34450I 0
u = 1.75562 0.45978I
a = 0.028610 1.074530I
b = 0.55514 1.73413I
7.12058 + 10.34450I 0
u = 1.73522 + 0.57056I
a = 0.041863 1.072980I
b = 0.55270 1.79198I
4.7685 16.0285I 0
11
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 1.73522 0.57056I
a = 0.041863 + 1.072980I
b = 0.55270 + 1.79198I
4.7685 + 16.0285I 0
u = 1.83475 + 0.17714I
a = 0.000375 + 0.827349I
b = 0.049312 + 0.996855I
5.37639 + 2.89949I 0
u = 1.83475 0.17714I
a = 0.000375 0.827349I
b = 0.049312 0.996855I
5.37639 2.89949I 0
12
II. I
u
2
=
h−9u
21
48u
20
+· · ·+b+11, 28u
21
+177u
20
+· · ·+a+3, u
22
+7u
21
+· · ·+7u+1i
(i) Arc colorings
a
3
=
1
0
a
12
=
0
u
a
4
=
1
u
2
a
9
=
28u
21
177u
20
+ ··· 66u 3
9u
21
+ 48u
20
+ ··· 57u 11
a
5
=
6u
21
+ 41u
20
+ ··· + 92u + 16
15u
21
100u
20
+ ··· 137u 19
a
1
=
u 1
u
21
+ 7u
20
+ ··· + 28u + 6
a
2
=
u
21
7u
20
+ ··· 29u 7
u
21
+ 7u
20
+ ··· + 28u + 6
a
8
=
37u
21
225u
20
+ ··· 9u + 8
9u
21
+ 48u
20
+ ··· 57u 11
a
7
=
37u
21
225u
20
+ ··· 9u + 8
3u
21
7u
20
+ ··· 258u 45
a
6
=
53u
21
365u
20
+ ··· 460u 65
28u
21
+ 177u
20
+ ··· + 66u + 3
a
11
=
7u
21
+ 49u
20
+ ··· + 142u + 28
7u
21
48u
20
+ ··· 120u 21
a
10
=
8u
21
+ 40u
20
+ ··· 16u 4
2u
21
+ 19u
20
+ ··· + 60u + 11
(ii) Obstruction class = 1
(iii) Cusp Shapes = 76u
21
+ 537u
20
+ 1268u
19
+ 254u
18
4506u
17
9416u
16
6062u
15
+ 8390u
14
+ 23885u
13
+ 25018u
12
+ 7101u
11
17555u
10
30785u
9
25183u
8
8290u
7
+ 6877u
6
+ 12900u
5
+ 10927u
4
+ 6127u
3
+ 2402u
2
+ 611u + 94
13
(iv) u-Polynomials at the component
14
Crossings u-Polynomials at each crossing
c
1
u
22
15u
21
+ ··· 17u + 1
c
2
u
22
u
21
+ ··· u + 1
c
3
u
22
+ 7u
21
+ ··· + 7u + 1
c
4
u
22
2u
20
+ ··· + 2u + 1
c
5
u
22
+ 6u
20
+ ··· + 4u
2
+ 1
c
6
u
22
+ u
21
+ ··· + u + 1
c
7
u
22
2u
21
+ ··· + 4u
2
+ 1
c
8
u
22
+ 8u
20
+ ··· 8u
2
+ 1
c
9
u
22
+ 12u
21
+ ··· + 8u + 1
c
10
u
22
+ 6u
20
+ ··· + 4u
2
+ 1
c
11
u
22
+ 2u
21
+ ··· + 4u
2
+ 1
c
12
u
22
+ 4u
20
+ ··· + 2u + 1
15
16
(v) Riley Polynomials at the component
Crossings Riley Polynomials at each crossing
c
1
y
22
y
21
+ ··· 19y + 1
c
2
, c
6
y
22
+ 15y
21
+ ··· + 17y + 1
c
3
y
22
15y
21
+ ··· + 7y + 1
c
4
y
22
4y
21
+ ··· + 10y + 1
c
5
, c
10
y
22
+ 12y
21
+ ··· + 8y + 1
c
7
, c
11
y
22
12y
21
+ ··· + 8y + 1
c
8
y
22
+ 16y
21
+ ··· 16y + 1
c
9
y
22
+ 4y
21
+ ··· 8y + 1
c
12
y
22
+ 8y
21
+ ··· 12y + 1
17
(vi) Complex Volumes and Cusp Shapes
Solutions to I
u
2
1(vol +
1CS) Cusp shape
u = 0.786340 + 0.565962I
a = 0.480702 0.627163I
b = 0.794404 0.189170I
5.03496 3.36076I 8.69178 1.68696I
u = 0.786340 0.565962I
a = 0.480702 + 0.627163I
b = 0.794404 + 0.189170I
5.03496 + 3.36076I 8.69178 + 1.68696I
u = 0.645075 + 0.696793I
a = 0.519121 + 0.744340I
b = 0.426535 0.029869I
2.08453 + 1.37373I 6.40548 4.04825I
u = 0.645075 0.696793I
a = 0.519121 0.744340I
b = 0.426535 + 0.029869I
2.08453 1.37373I 6.40548 + 4.04825I
u = 1.050430 + 0.104212I
a = 0.033541 + 1.394220I
b = 0.14477 + 2.02805I
6.17325 + 1.44187I 4.49643 5.78362I
u = 1.050430 0.104212I
a = 0.033541 1.394220I
b = 0.14477 2.02805I
6.17325 1.44187I 4.49643 + 5.78362I
u = 0.196664 + 0.874491I
a = 0.533665 + 1.019810I
b = 0.576578 0.060736I
1.15199 + 2.87768I 6.14711 2.75750I
u = 0.196664 0.874491I
a = 0.533665 1.019810I
b = 0.576578 + 0.060736I
1.15199 2.87768I 6.14711 + 2.75750I
u = 0.025945 + 0.804370I
a = 0.552142 1.124630I
b = 1.022830 + 0.014286I
3.28844 + 7.64426I 8.77312 6.57606I
u = 0.025945 0.804370I
a = 0.552142 + 1.124630I
b = 1.022830 0.014286I
3.28844 7.64426I 8.77312 + 6.57606I
18
Solutions to I
u
2
1(vol +
1CS) Cusp shape
u = 0.552269 + 0.511977I
a = 0.662176 0.681665I
b = 0.762642 + 0.506834I
5.76722 + 5.07165I 11.26800 7.37230I
u = 0.552269 0.511977I
a = 0.662176 + 0.681665I
b = 0.762642 0.506834I
5.76722 5.07165I 11.26800 + 7.37230I
u = 0.320236 + 0.596503I
a = 0.719182 + 0.904753I
b = 0.136570 0.890708I
2.51715 + 2.73559I 3.06423 4.00239I
u = 0.320236 0.596503I
a = 0.719182 0.904753I
b = 0.136570 + 0.890708I
2.51715 2.73559I 3.06423 + 4.00239I
u = 0.160838 + 0.633062I
a = 0.702253 1.056490I
b = 0.866556 + 0.783842I
4.58448 + 0.25572I 9.66478 + 0.84740I
u = 0.160838 0.633062I
a = 0.702253 + 1.056490I
b = 0.866556 0.783842I
4.58448 0.25572I 9.66478 0.84740I
u = 1.42190 + 0.08708I
a = 0.039113 + 0.548518I
b = 0.13321 + 1.42787I
2.62572 1.09341I 7.40708 0.45044I
u = 1.42190 0.08708I
a = 0.039113 0.548518I
b = 0.13321 1.42787I
2.62572 + 1.09341I 7.40708 + 0.45044I
u = 1.52157 + 0.14127I
a = 0.023534 + 1.285360I
b = 0.07886 + 1.61385I
8.18195 2.56207I 0.65909 + 2.77062I
u = 1.52157 0.14127I
a = 0.023534 1.285360I
b = 0.07886 1.61385I
8.18195 + 2.56207I 0.65909 2.77062I
19
Solutions to I
u
2
1(vol +
1CS) Cusp shape
u = 1.96273 + 0.15882I
a = 0.029119 + 0.703327I
b = 0.044696 + 1.062180I
5.80293 + 2.78792I 0
u = 1.96273 0.15882I
a = 0.029119 0.703327I
b = 0.044696 1.062180I
5.80293 2.78792I 0
20
III. u-Polynomials
Crossings u-Polynomials at each crossing
c
1
(u
22
15u
21
+ ··· 17u + 1)(u
73
+ 42u
72
+ ··· + u 1)
c
2
(u
22
u
21
+ ··· u + 1)(u
73
2u
72
+ ··· + 3u 1)
c
3
(u
22
+ 7u
21
+ ··· + 7u + 1)(u
73
4u
72
+ ··· 7469u 4961)
c
4
(u
22
2u
20
+ ··· + 2u + 1)(u
73
+ u
72
+ ··· + 504u 34447)
c
5
(u
22
+ 6u
20
+ ··· + 4u
2
+ 1)(u
73
u
72
+ ··· + 6u 19)
c
6
(u
22
+ u
21
+ ··· + u + 1)(u
73
2u
72
+ ··· + 3u 1)
c
7
(u
22
2u
21
+ ··· + 4u
2
+ 1)(u
73
3u
72
+ ··· + 518u 77)
c
8
(u
22
+ 8u
20
+ ··· 8u
2
+ 1)(u
73
u
72
+ ··· 4184u 2449)
c
9
(u
22
+ 12u
21
+ ··· + 8u + 1)(u
73
35u
72
+ ··· 3270u + 361)
c
10
(u
22
+ 6u
20
+ ··· + 4u
2
+ 1)(u
73
u
72
+ ··· + 6u 19)
c
11
(u
22
+ 2u
21
+ ··· + 4u
2
+ 1)(u
73
3u
72
+ ··· + 518u 77)
c
12
(u
22
+ 4u
20
+ ··· + 2u + 1)(u
73
+ u
72
+ ··· + 9112u 2479)
21
IV. Riley Polynomials
Crossings Riley Polynomials at each crossing
c
1
(y
22
y
21
+ ··· 19y + 1)(y
73
6y
72
+ ··· + 109y 1)
c
2
, c
6
(y
22
+ 15y
21
+ ··· + 17y + 1)(y
73
+ 42y
72
+ ··· + y 1)
c
3
(y
22
15y
21
+ ··· + 7y + 1)
· (y
73
80y
72
+ ··· + 887378547y 24611521)
c
4
(y
22
4y
21
+ ··· + 10y + 1)
· (y
73
5y
72
+ ··· + 9963979872y 1186595809)
c
5
, c
10
(y
22
+ 12y
21
+ ··· + 8y + 1)(y
73
+ 35y
72
+ ··· 3270y 361)
c
7
, c
11
(y
22
12y
21
+ ··· + 8y + 1)(y
73
25y
72
+ ··· 47222y 5929)
c
8
(y
22
+ 16y
21
+ ··· 16y + 1)
· (y
73
+ 83y
72
+ ··· 316258558y 5997601)
c
9
(y
22
+ 4y
21
+ ··· 8y + 1)(y
73
+ 15y
72
+ ··· 1105302y 130321)
c
12
(y
22
+ 8y
21
+ ··· 12y + 1)
· (y
73
+ 79y
72
+ ··· 157637734y 6145441)
22