12n
0877
(K12n
0877
)
A knot diagram
1
Linearized knot diagam
4 8 6 11 1 2 10 2 12 5 7 8
Solving Sequence
2,8 4,9
1 12 10 7 6 3 5 11
c
8
c
1
c
12
c
9
c
7
c
6
c
3
c
5
c
11
c
2
, c
4
, c
10
Ideals for irreducible components
2
of X
par
I
u
1
= h−9.35659 × 10
83
u
36
2.27819 × 10
84
u
35
+ ··· + 9.11104 × 10
86
b + 1.23806 × 10
87
,
2.69779 × 10
87
u
36
1.19660 × 10
88
u
35
+ ··· + 1.76754 × 10
89
a 1.89107 × 10
90
,
u
37
+ 5u
36
+ ··· + 2744u + 388i
I
u
2
= h3.32625 × 10
77
au
42
3.27571 × 10
78
u
42
+ ··· + 1.71826 × 10
79
a 1.65861 × 10
80
,
5.05212 × 10
81
au
42
1.09660 × 10
82
u
42
+ ··· + 1.99839 × 10
83
a 3.99060 × 10
83
,
u
43
3u
42
+ ··· + 110u 17i
I
u
3
= h2.20191 × 10
25
u
39
+ 2.35786 × 10
25
u
38
+ ··· + 1.03004 × 10
24
b 1.37061 × 10
27
,
7.73943 × 10
26
u
39
1.52201 × 10
26
u
38
+ ··· + 1.95708 × 10
25
a + 9.28110 × 10
27
,
u
40
6u
38
+ ··· 255u
2
19i
I
u
4
= hb, a
2
a + 1, u + 1i
I
u
5
= hb 2a, a
2
a + 1, u 1i
I
v
1
= ha, b
2
+ b + 1, v + 1i
* 6 irreducible components of dim
C
= 0, with total 169 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−9.36 × 10
83
u
36
2.28 × 10
84
u
35
+ · · · + 9.11 × 10
86
b + 1.24 ×
10
87
, 2.70 × 10
87
u
36
1.20 × 10
88
u
35
+ · · · + 1.77 × 10
89
a 1.89 ×
10
90
, u
37
+ 5u
36
+ · · · + 2744u + 388i
(i) Arc colorings
a
2
=
0
u
a
8
=
1
0
a
4
=
0.0152630u
36
+ 0.0676983u
35
+ ··· + 58.5223u + 10.6989
0.00102695u
36
+ 0.00250048u
35
+ ··· 1.09050u 1.35885
a
9
=
1
u
2
a
1
=
0.0180233u
36
+ 0.0813561u
35
+ ··· + 78.6888u + 17.0783
0.00546745u
36
+ 0.0219598u
35
+ ··· + 15.1454u + 2.22914
a
12
=
0.0125559u
36
+ 0.0593963u
35
+ ··· + 63.5435u + 14.8491
0.00546745u
36
+ 0.0219598u
35
+ ··· + 15.1454u + 2.22914
a
10
=
0.00350220u
36
+ 0.0185379u
35
+ ··· + 25.9914u + 8.51953
0.00861657u
36
+ 0.0375921u
35
+ ··· + 31.1827u + 5.92203
a
7
=
0.00574521u
36
0.0232586u
35
+ ··· 14.5732u 0.619490
0.00876059u
36
+ 0.0373042u
35
+ ··· + 32.3778u + 6.99306
a
6
=
0.00574521u
36
0.0232586u
35
+ ··· 14.5732u 0.619490
0.00338316u
36
+ 0.0164838u
35
+ ··· + 19.6043u + 4.87169
a
3
=
u
u
a
5
=
0.0216125u
36
+ 0.0975640u
35
+ ··· + 96.4003u + 24.3397
0.0235451u
36
+ 0.0984750u
35
+ ··· + 81.0110u + 16.7723
a
11
=
0.0432275u
36
+ 0.192592u
35
+ ··· + 178.923u + 37.6052
0.0104986u
36
0.0434372u
35
+ ··· 34.9650u 8.38565
(ii) Obstruction class = 1
(iii) Cusp Shapes = 0.0638114u
36
0.256490u
35
+ ··· 174.364u 30.2157
2
(iv) u-Polynomials at the component
Crossings u-Polynomials at each crossing
c
1
, c
7
u
37
u
36
+ ··· + 8u 1
c
2
, c
8
u
37
+ 5u
36
+ ··· + 2744u + 388
c
3
, c
9
u
37
+ u
36
+ ··· + 2u + 1
c
4
, c
10
u
37
+ 5u
36
+ ··· + 184u + 52
c
5
, c
11
u
37
+ u
36
+ ··· 4u + 4
c
6
, c
12
u
37
u
36
+ ··· 104u 47
3
(v) Riley Polynomials at the component
Crossings Riley Polynomials at each crossing
c
1
, c
7
y
37
11y
36
+ ··· + 32y 1
c
2
, c
8
y
37
23y
36
+ ··· + 3132720y 150544
c
3
, c
9
y
37
37y
36
+ ··· + 30y 1
c
4
, c
10
y
37
+ 13y
36
+ ··· 5872y 2704
c
5
, c
11
y
37
5y
36
+ ··· 976y 16
c
6
, c
12
y
37
31y
36
+ ··· + 16456y 2209
4
(vi) Complex Volumes and Cusp Shapes
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 1.023680 + 0.207468I
a = 0.224911 + 0.827302I
b = 0.956147 + 0.338744I
5.14523 0.88050I 13.89731 1.40909I
u = 1.023680 0.207468I
a = 0.224911 0.827302I
b = 0.956147 0.338744I
5.14523 + 0.88050I 13.89731 + 1.40909I
u = 0.513603 + 0.927764I
a = 0.362915 + 1.130270I
b = 0.266581 + 1.169590I
2.71819 6.93203I 1.49325 + 6.38376I
u = 0.513603 0.927764I
a = 0.362915 1.130270I
b = 0.266581 1.169590I
2.71819 + 6.93203I 1.49325 6.38376I
u = 0.203243 + 0.874057I
a = 0.21000 + 1.77056I
b = 0.05883 + 1.53025I
5.67964 + 1.01449I 4.29448 6.92334I
u = 0.203243 0.874057I
a = 0.21000 1.77056I
b = 0.05883 1.53025I
5.67964 1.01449I 4.29448 + 6.92334I
u = 0.393345 + 0.759798I
a = 0.341465 + 0.953652I
b = 0.130643 + 0.919943I
0.18355 + 2.03501I 3.27155 3.11294I
u = 0.393345 0.759798I
a = 0.341465 0.953652I
b = 0.130643 0.919943I
0.18355 2.03501I 3.27155 + 3.11294I
u = 0.259763 + 1.213030I
a = 0.172358 + 0.907964I
b = 0.13042 + 1.58902I
5.01261 + 1.59452I 0.74857 4.14264I
u = 0.259763 1.213030I
a = 0.172358 0.907964I
b = 0.13042 1.58902I
5.01261 1.59452I 0.74857 + 4.14264I
5
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 1.255890 + 0.068162I
a = 0.132967 + 0.395325I
b = 1.177290 + 0.087112I
3.63356 + 3.81297I 10.07806 5.49647I
u = 1.255890 0.068162I
a = 0.132967 0.395325I
b = 1.177290 0.087112I
3.63356 3.81297I 10.07806 + 5.49647I
u = 0.452009 + 0.440661I
a = 1.136500 + 0.492247I
b = 0.989885 0.684757I
1.67227 + 2.60991I 2.01632 5.81175I
u = 0.452009 0.440661I
a = 1.136500 0.492247I
b = 0.989885 + 0.684757I
1.67227 2.60991I 2.01632 + 5.81175I
u = 1.381620 + 0.001380I
a = 0.716115 + 0.134351I
b = 0.596037 + 0.248959I
0.77318 + 3.37059I 2.04958 4.00982I
u = 1.381620 0.001380I
a = 0.716115 0.134351I
b = 0.596037 0.248959I
0.77318 3.37059I 2.04958 + 4.00982I
u = 1.45601
a = 0.621894
b = 0.272503
3.33967 2.87470
u = 0.473903 + 0.174617I
a = 0.614985 + 0.716675I
b = 0.514605 + 0.316308I
1.022900 + 0.779663I 7.50935 3.53502I
u = 0.473903 0.174617I
a = 0.614985 0.716675I
b = 0.514605 0.316308I
1.022900 0.779663I 7.50935 + 3.53502I
u = 0.04479 + 1.52449I
a = 0.568234 + 0.602533I
b = 0.29065 + 1.60332I
2.46403 4.84771I 7.83065 + 5.43608I
6
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.04479 1.52449I
a = 0.568234 0.602533I
b = 0.29065 1.60332I
2.46403 + 4.84771I 7.83065 5.43608I
u = 1.53849 + 0.44250I
a = 0.509830 0.453544I
b = 1.61671 1.81990I
0.30645 7.70638I 0. + 7.90475I
u = 1.53849 0.44250I
a = 0.509830 + 0.453544I
b = 1.61671 + 1.81990I
0.30645 + 7.70638I 0. 7.90475I
u = 0.353652 + 0.059931I
a = 1.80596 + 0.93479I
b = 0.562272 0.178009I
0.91481 + 3.77913I 5.64104 2.45174I
u = 0.353652 0.059931I
a = 1.80596 0.93479I
b = 0.562272 + 0.178009I
0.91481 3.77913I 5.64104 + 2.45174I
u = 1.67250
a = 0.101046
b = 2.66187
8.44157 14.5320
u = 1.45646 + 0.84376I
a = 0.737564 + 0.407660I
b = 0.303225 + 0.408038I
6.74334 2.70316I 0
u = 1.45646 0.84376I
a = 0.737564 0.407660I
b = 0.303225 0.408038I
6.74334 + 2.70316I 0
u = 1.74832
a = 0.405395
b = 3.70278
7.10544 0
u = 0.00849 + 1.76143I
a = 0.643665 + 0.717640I
b = 0.11867 + 1.49405I
0.02411 + 10.88880I 0
7
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.00849 1.76143I
a = 0.643665 0.717640I
b = 0.11867 1.49405I
0.02411 10.88880I 0
u = 1.66398 + 0.63157I
a = 0.300742 0.721731I
b = 0.84961 2.41654I
8.0218 + 12.6732I 0
u = 1.66398 0.63157I
a = 0.300742 + 0.721731I
b = 0.84961 + 2.41654I
8.0218 12.6732I 0
u = 1.66761 + 0.70883I
a = 0.330845 0.831651I
b = 0.67399 2.28474I
5.3307 19.4688I 0
u = 1.66761 0.70883I
a = 0.330845 + 0.831651I
b = 0.67399 + 2.28474I
5.3307 + 19.4688I 0
u = 1.85036 + 0.61716I
a = 0.769394 + 0.240989I
b = 0.113001 + 0.215300I
6.00980 1.88404I 0
u = 1.85036 0.61716I
a = 0.769394 0.240989I
b = 0.113001 0.215300I
6.00980 + 1.88404I 0
8
II. I
u
2
= h3.33 × 10
77
au
42
3.28 × 10
78
u
42
+ · · · + 1.72 × 10
79
a 1.66 ×
10
80
, 5.05 × 10
81
au
42
1.10 × 10
82
u
42
+ · · · + 2.00 × 10
83
a 3.99 ×
10
83
, u
43
3u
42
+ · · · + 110u 17i
(i) Arc colorings
a
2
=
0
u
a
8
=
1
0
a
4
=
a
0.00287322au
42
+ 0.0282956u
42
+ ··· 0.148423a + 1.43271
a
9
=
1
u
2
a
1
=
0.0460162au
42
+ 0.106090u
42
+ ··· 2.56707a + 5.57201
0.00293218au
42
0.0252712u
42
+ ··· + 0.473351a 0.516706
a
12
=
0.0489483au
42
+ 0.131361u
42
+ ··· 3.04042a + 6.08871
0.00293218au
42
0.0252712u
42
+ ··· + 0.473351a 0.516706
a
10
=
0.00873077au
42
+ 0.106037u
42
+ ··· 1.17990a + 5.44946
0.0460162u
42
0.137175u
41
+ ··· 10.6374u + 2.56707
a
7
=
0.0278442au
42
0.0717915u
42
+ ··· 1.80262a 7.63595
0.000873541au
42
0.0982682u
42
+ ··· 0.782275a 4.47485
a
6
=
0.0278442au
42
0.0717915u
42
+ ··· 1.80262a 7.63595
0.00293545au
42
0.0837892u
42
+ ··· 0.832122a 3.94930
a
3
=
u
u
a
5
=
0.00984394au
42
0.125943u
42
+ ··· + 1.79971a 5.22417
0.00422200au
42
0.0543645u
42
+ ··· 0.723111a 3.46387
a
11
=
0.0425359au
42
0.0109791u
42
+ ··· 3.72010a + 0.0400840
0.00613998au
42
0.0134470u
42
+ ··· 0.167347a 0.720202
(ii) Obstruction class = 1
(iii) Cusp Shapes = 0.260099u
42
0.756964u
41
+ ··· 62.4522u + 23.1375
9
(iv) u-Polynomials at the component
Crossings u-Polynomials at each crossing
c
1
, c
7
u
86
7u
85
+ ··· 55u + 3
c
2
, c
8
(u
43
3u
42
+ ··· + 110u 17)
2
c
3
, c
9
u
86
+ 4u
85
+ ··· + 3742879u + 515187
c
4
, c
10
(u
43
2u
42
+ ··· + 8u 5)
2
c
5
, c
11
u
86
+ 2u
85
+ ··· 1380u + 529
c
6
, c
12
u
86
2u
85
+ ··· + 2676206273u + 339660187
10
(v) Riley Polynomials at the component
Crossings Riley Polynomials at each crossing
c
1
, c
7
y
86
7y
85
+ ··· 31y + 9
c
2
, c
8
(y
43
39y
42
+ ··· + 4960y 289)
2
c
3
, c
9
y
86
28y
85
+ ··· 1722726646621y + 265417644969
c
4
, c
10
(y
43
+ 20y
42
+ ··· 446y 25)
2
c
5
, c
11
y
86
+ 32y
85
+ ··· + 34272852y + 279841
c
6
, c
12
y
86
10y
85
+ ··· 3384577457419862375y + 115369042632874969
11
(vi) Complex Volumes and Cusp Shapes
Solutions to I
u
2
1(vol +
1CS) Cusp shape
u = 1.115680 + 0.088438I
a = 0.530621 0.816347I
b = 0.36669 1.40614I
2.05988 4.53064I 6.07841 + 4.88354I
u = 1.115680 + 0.088438I
a = 0.016420 + 0.564275I
b = 0.685045 0.446535I
2.05988 4.53064I 6.07841 + 4.88354I
u = 1.115680 0.088438I
a = 0.530621 + 0.816347I
b = 0.36669 + 1.40614I
2.05988 + 4.53064I 6.07841 4.88354I
u = 1.115680 0.088438I
a = 0.016420 0.564275I
b = 0.685045 + 0.446535I
2.05988 + 4.53064I 6.07841 4.88354I
u = 1.194820 + 0.508478I
a = 0.529082 + 0.865996I
b = 0.128273 + 0.357532I
3.19067 + 2.37658I 0. 11.61854I
u = 1.194820 + 0.508478I
a = 0.127113 0.366982I
b = 2.67295 2.83110I
3.19067 + 2.37658I 0. 11.61854I
u = 1.194820 0.508478I
a = 0.529082 0.865996I
b = 0.128273 0.357532I
3.19067 2.37658I 0. + 11.61854I
u = 1.194820 0.508478I
a = 0.127113 + 0.366982I
b = 2.67295 + 2.83110I
3.19067 2.37658I 0. + 11.61854I
u = 1.337540 + 0.195957I
a = 0.751109 0.509623I
b = 0.64184 1.29054I
0.786358 + 1.135550I 0
u = 1.337540 + 0.195957I
a = 0.162295 0.099306I
b = 0.298914 0.668145I
0.786358 + 1.135550I 0
12
Solutions to I
u
2
1(vol +
1CS) Cusp shape
u = 1.337540 0.195957I
a = 0.751109 + 0.509623I
b = 0.64184 + 1.29054I
0.786358 1.135550I 0
u = 1.337540 0.195957I
a = 0.162295 + 0.099306I
b = 0.298914 + 0.668145I
0.786358 1.135550I 0
u = 0.294990 + 0.528224I
a = 0.435664 0.275251I
b = 0.033816 + 0.763184I
1.43197 + 1.52483I 4.77881 4.92385I
u = 0.294990 + 0.528224I
a = 1.39558 + 0.81111I
b = 0.066598 + 0.867420I
1.43197 + 1.52483I 4.77881 4.92385I
u = 0.294990 0.528224I
a = 0.435664 + 0.275251I
b = 0.033816 0.763184I
1.43197 1.52483I 4.77881 + 4.92385I
u = 0.294990 0.528224I
a = 1.39558 0.81111I
b = 0.066598 0.867420I
1.43197 1.52483I 4.77881 + 4.92385I
u = 0.213109 + 1.378840I
a = 0.083822 + 1.308350I
b = 0.326802 + 1.369390I
4.20801 + 3.81011I 0
u = 0.213109 + 1.378840I
a = 0.300600 0.256235I
b = 1.38339 1.96236I
4.20801 + 3.81011I 0
u = 0.213109 1.378840I
a = 0.083822 1.308350I
b = 0.326802 1.369390I
4.20801 3.81011I 0
u = 0.213109 1.378840I
a = 0.300600 + 0.256235I
b = 1.38339 + 1.96236I
4.20801 3.81011I 0
13
Solutions to I
u
2
1(vol +
1CS) Cusp shape
u = 1.399740 + 0.139228I
a = 0.427844 0.842577I
b = 0.44234 3.01249I
4.07903 + 8.22022I 0
u = 1.399740 + 0.139228I
a = 0.090161 0.501687I
b = 0.299763 0.437113I
4.07903 + 8.22022I 0
u = 1.399740 0.139228I
a = 0.427844 + 0.842577I
b = 0.44234 + 3.01249I
4.07903 8.22022I 0
u = 1.399740 0.139228I
a = 0.090161 + 0.501687I
b = 0.299763 + 0.437113I
4.07903 8.22022I 0
u = 1.40247 + 0.29057I
a = 0.775681 + 0.883009I
b = 0.57870 + 1.57791I
2.64500 + 3.06546I 0
u = 1.40247 + 0.29057I
a = 0.660428 0.286945I
b = 0.316631 + 0.132705I
2.64500 + 3.06546I 0
u = 1.40247 0.29057I
a = 0.775681 0.883009I
b = 0.57870 1.57791I
2.64500 3.06546I 0
u = 1.40247 0.29057I
a = 0.660428 + 0.286945I
b = 0.316631 0.132705I
2.64500 3.06546I 0
u = 1.47287 + 0.24746I
a = 0.103512 0.862014I
b = 0.58468 2.98444I
6.94974 4.89323I 0
u = 1.47287 + 0.24746I
a = 0.159985 + 0.026947I
b = 0.243337 0.145539I
6.94974 4.89323I 0
14
Solutions to I
u
2
1(vol +
1CS) Cusp shape
u = 1.47287 0.24746I
a = 0.103512 + 0.862014I
b = 0.58468 + 2.98444I
6.94974 + 4.89323I 0
u = 1.47287 0.24746I
a = 0.159985 0.026947I
b = 0.243337 + 0.145539I
6.94974 + 4.89323I 0
u = 0.285156 + 0.399219I
a = 0.815991 + 0.837097I
b = 0.906247 0.313562I
0.47321 + 2.39024I 2.04869 4.02922I
u = 0.285156 + 0.399219I
a = 1.03908 + 2.24033I
b = 0.105611 + 0.731929I
0.47321 + 2.39024I 2.04869 4.02922I
u = 0.285156 0.399219I
a = 0.815991 0.837097I
b = 0.906247 + 0.313562I
0.47321 2.39024I 2.04869 + 4.02922I
u = 0.285156 0.399219I
a = 1.03908 2.24033I
b = 0.105611 0.731929I
0.47321 2.39024I 2.04869 + 4.02922I
u = 0.26091 + 1.49221I
a = 0.742276 + 0.668844I
b = 0.036986 + 1.190880I
1.47280 1.84076I 0
u = 0.26091 + 1.49221I
a = 0.864713 + 0.676358I
b = 0.100868 + 1.121450I
1.47280 1.84076I 0
u = 0.26091 1.49221I
a = 0.742276 0.668844I
b = 0.036986 1.190880I
1.47280 + 1.84076I 0
u = 0.26091 1.49221I
a = 0.864713 0.676358I
b = 0.100868 1.121450I
1.47280 + 1.84076I 0
15
Solutions to I
u
2
1(vol +
1CS) Cusp shape
u = 0.473826 + 0.064283I
a = 1.54698 0.84528I
b = 0.25071 1.60585I
5.62558 0.60241I 3.49360 + 2.24885I
u = 0.473826 + 0.064283I
a = 2.74140 0.91558I
b = 0.206993 + 0.451612I
5.62558 0.60241I 3.49360 + 2.24885I
u = 0.473826 0.064283I
a = 1.54698 + 0.84528I
b = 0.25071 + 1.60585I
5.62558 + 0.60241I 3.49360 2.24885I
u = 0.473826 0.064283I
a = 2.74140 + 0.91558I
b = 0.206993 0.451612I
5.62558 + 0.60241I 3.49360 2.24885I
u = 0.169794 + 0.434125I
a = 2.23282 0.47524I
b = 0.511531 0.638166I
0.38058 6.28025I 0.64015 + 9.26219I
u = 0.169794 + 0.434125I
a = 2.55925 + 1.01168I
b = 0.145150 + 1.155370I
0.38058 6.28025I 0.64015 + 9.26219I
u = 0.169794 0.434125I
a = 2.23282 + 0.47524I
b = 0.511531 + 0.638166I
0.38058 + 6.28025I 0.64015 9.26219I
u = 0.169794 0.434125I
a = 2.55925 1.01168I
b = 0.145150 1.155370I
0.38058 + 6.28025I 0.64015 9.26219I
u = 0.03772 + 1.56297I
a = 0.120715 0.856591I
b = 0.05713 1.83396I
8.16558 1.16224I 0
u = 0.03772 + 1.56297I
a = 0.11469 + 1.74498I
b = 0.04099 + 1.67869I
8.16558 1.16224I 0
16
Solutions to I
u
2
1(vol +
1CS) Cusp shape
u = 0.03772 1.56297I
a = 0.120715 + 0.856591I
b = 0.05713 + 1.83396I
8.16558 + 1.16224I 0
u = 0.03772 1.56297I
a = 0.11469 1.74498I
b = 0.04099 1.67869I
8.16558 + 1.16224I 0
u = 1.53711 + 0.31414I
a = 0.768268 + 0.635630I
b = 0.056706 + 0.707806I
4.44405 + 0.89151I 0
u = 1.53711 + 0.31414I
a = 0.062562 + 0.463261I
b = 1.15312 + 3.42175I
4.44405 + 0.89151I 0
u = 1.53711 0.31414I
a = 0.768268 0.635630I
b = 0.056706 0.707806I
4.44405 0.89151I 0
u = 1.53711 0.31414I
a = 0.062562 0.463261I
b = 1.15312 3.42175I
4.44405 0.89151I 0
u = 0.194415 + 0.346795I
a = 1.065970 0.131400I
b = 0.14265 + 2.22850I
0.28736 + 3.36637I 11.88280 + 1.35996I
u = 0.194415 + 0.346795I
a = 3.21301 + 0.74244I
b = 0.589464 + 0.006918I
0.28736 + 3.36637I 11.88280 + 1.35996I
u = 0.194415 0.346795I
a = 1.065970 + 0.131400I
b = 0.14265 2.22850I
0.28736 3.36637I 11.88280 1.35996I
u = 0.194415 0.346795I
a = 3.21301 0.74244I
b = 0.589464 0.006918I
0.28736 3.36637I 11.88280 1.35996I
17
Solutions to I
u
2
1(vol +
1CS) Cusp shape
u = 1.60996 + 0.08161I
a = 0.884676 + 0.826488I
b = 0.66083 + 1.52938I
1.31869 7.19355I 0
u = 1.60996 + 0.08161I
a = 0.634090 0.080905I
b = 0.135911 + 0.270762I
1.31869 7.19355I 0
u = 1.60996 0.08161I
a = 0.884676 0.826488I
b = 0.66083 1.52938I
1.31869 + 7.19355I 0
u = 1.60996 0.08161I
a = 0.634090 + 0.080905I
b = 0.135911 0.270762I
1.31869 + 7.19355I 0
u = 1.62004 + 0.05900I
a = 0.169701 0.719649I
b = 0.24164 2.95574I
7.35319 4.35321I 0
u = 1.62004 + 0.05900I
a = 0.516824 0.337282I
b = 0.055828 0.398375I
7.35319 4.35321I 0
u = 1.62004 0.05900I
a = 0.169701 + 0.719649I
b = 0.24164 + 2.95574I
7.35319 + 4.35321I 0
u = 1.62004 0.05900I
a = 0.516824 + 0.337282I
b = 0.055828 + 0.398375I
7.35319 + 4.35321I 0
u = 1.63959 + 0.12969I
a = 0.629016 0.711882I
b = 0.62535 1.60664I
3.95952 9.14255I 0
u = 1.63959 + 0.12969I
a = 0.220903 + 0.413033I
b = 1.26345 + 3.62757I
3.95952 9.14255I 0
18
Solutions to I
u
2
1(vol +
1CS) Cusp shape
u = 1.63959 0.12969I
a = 0.629016 + 0.711882I
b = 0.62535 + 1.60664I
3.95952 + 9.14255I 0
u = 1.63959 0.12969I
a = 0.220903 0.413033I
b = 1.26345 3.62757I
3.95952 + 9.14255I 0
u = 0.256452 + 0.097043I
a = 1.72057 2.43295I
b = 0.01397 1.83611I
3.48797 + 8.65451I 10.96127 3.30272I
u = 0.256452 + 0.097043I
a = 1.71936 + 5.75556I
b = 0.717391 + 0.308677I
3.48797 + 8.65451I 10.96127 3.30272I
u = 0.256452 0.097043I
a = 1.72057 + 2.43295I
b = 0.01397 + 1.83611I
3.48797 8.65451I 10.96127 + 3.30272I
u = 0.256452 0.097043I
a = 1.71936 5.75556I
b = 0.717391 0.308677I
3.48797 8.65451I 10.96127 + 3.30272I
u = 1.64625 + 0.57157I
a = 0.206383 0.751197I
b = 0.65091 2.37486I
7.57975 5.62049I 0
u = 1.64625 + 0.57157I
a = 0.731761 + 0.237535I
b = 0.1289710 + 0.0080917I
7.57975 5.62049I 0
u = 1.64625 0.57157I
a = 0.206383 + 0.751197I
b = 0.65091 + 2.37486I
7.57975 + 5.62049I 0
u = 1.64625 0.57157I
a = 0.731761 0.237535I
b = 0.1289710 0.0080917I
7.57975 + 5.62049I 0
19
Solutions to I
u
2
1(vol +
1CS) Cusp shape
u = 1.81032
a = 0.704212
b = 1.95016
7.04633 0
u = 1.81032
a = 0.137336
b = 10.9556
7.04633 0
u = 1.63813 + 0.86204I
a = 0.940907 + 0.346569I
b = 0.275684 + 0.126572I
5.43168 + 10.49420I 0
u = 1.63813 + 0.86204I
a = 0.314823 0.765184I
b = 0.60244 2.02673I
5.43168 + 10.49420I 0
u = 1.63813 0.86204I
a = 0.940907 0.346569I
b = 0.275684 0.126572I
5.43168 10.49420I 0
u = 1.63813 0.86204I
a = 0.314823 + 0.765184I
b = 0.60244 + 2.02673I
5.43168 10.49420I 0
20
III. I
u
3
= h2.20 × 10
25
u
39
+ 2.36 × 10
25
u
38
+ · · · + 1.03 × 10
24
b 1.37 ×
10
27
, 7.74 × 10
26
u
39
1.52 × 10
26
u
38
+ · · · + 1.96 × 10
25
a + 9.28 ×
10
27
, u
40
6u
38
+ · · · 255u
2
19i
(i) Arc colorings
a
2
=
0
u
a
8
=
1
0
a
4
=
39.5458u
39
+ 7.77693u
38
+ ··· 2324.41u 474.232
21.3768u
39
22.8909u
38
+ ··· + 1244.77u + 1330.64
a
9
=
1
u
2
a
1
=
58.1679u
39
+ 3.29014u
38
+ ··· + 3449.07u 137.870
5.80256u
39
+ 11.6925u
38
+ ··· + 359.869u 685.518
a
12
=
52.3653u
39
8.40239u
38
+ ··· + 3089.20u + 547.648
5.80256u
39
+ 11.6925u
38
+ ··· + 359.869u 685.518
a
10
=
70.0334u
39
21.3768u
38
+ ··· + 4061.56u + 1244.77
7.77693u
39
+ 12.7669u
38
+ ··· 474.232u 751.370
a
7
=
36.0799u
39
5.80256u
38
+ ··· 2110.89u + 359.869
3.29014u
39
18.6530u
38
+ ··· 137.870u + 1105.19
a
6
=
36.0799u
39
5.80256u
38
+ ··· 2110.89u + 359.869
8.40239u
39
16.8892u
38
+ ··· + 547.648u + 994.941
a
3
=
u
u
a
5
=
19.8101u
39
2.40796u
38
+ ··· + 1124.82u + 148.776
21.0277u
39
13.7029u
38
+ ··· + 1259.48u + 794.359
a
11
=
41.8084u
39
21.0277u
38
+ ··· + 2425.85u + 1259.48
2.40796u
39
6.63080u
38
+ ··· + 148.776u + 376.393
(ii) Obstruction class = 1
(iii) Cusp Shapes =
149855023258607474000595971
515021663836420099366239
u
38
948392840239352276013737578
515021663836420099366239
u
36
+
···
89911988946080209745670467197
515021663836420099366239
u
2
8671019797870820314013476786
515021663836420099366239
21
(iv) u-Polynomials at the component
Crossings u-Polynomials at each crossing
c
1
, c
7
u
40
12u
39
+ ··· + 15u + 1
c
2
, c
8
u
40
6u
38
+ ··· 255u
2
19
c
3
, c
9
u
40
+ 5u
39
+ ··· 3u + 1
c
4
, c
10
u
40
+ 8u
38
+ ··· 297u
2
19
c
5
, c
11
u
40
5u
39
+ ··· 36u 36
c
6
, c
12
u
40
+ 5u
39
+ ··· 81u + 27
22
(v) Riley Polynomials at the component
Crossings Riley Polynomials at each crossing
c
1
, c
7
y
40
24y
39
+ ··· 235y + 1
c
2
, c
8
(y
20
6y
19
+ ··· 255y 19)
2
c
3
, c
9
y
40
31y
39
+ ··· + 41y + 1
c
4
, c
10
(y
20
+ 8y
19
+ ··· 297y 19)
2
c
5
, c
11
y
40
y
39
+ ··· 27216y + 1296
c
6
, c
12
y
40
+ 11y
39
+ ··· + 104247y + 729
23
(vi) Complex Volumes and Cusp Shapes
Solutions to I
u
3
1(vol +
1CS) Cusp shape
u = 0.929042I
a = 1.008700 + 0.535913I
b = 0.116734 + 0.879504I
1.39660 4.42730
u = 0.929042I
a = 1.008700 0.535913I
b = 0.116734 0.879504I
1.39660 4.42730
u = 1.178850 + 0.209458I
a = 0.703351 0.338282I
b = 0.022042 + 0.625498I
1.32275 5.63915I 0. + 7.01051I
u = 1.178850 0.209458I
a = 0.703351 + 0.338282I
b = 0.022042 0.625498I
1.32275 + 5.63915I 0. 7.01051I
u = 1.178850 + 0.209458I
a = 0.749427 + 0.898373I
b = 0.72110 + 1.23469I
1.32275 + 5.63915I 0. 7.01051I
u = 1.178850 0.209458I
a = 0.749427 0.898373I
b = 0.72110 1.23469I
1.32275 5.63915I 0. + 7.01051I
u = 1.199010 + 0.348364I
a = 0.137760 + 0.349959I
b = 2.07637 + 0.88877I
3.52609 + 1.74568I 0
u = 1.199010 0.348364I
a = 0.137760 0.349959I
b = 2.07637 0.88877I
3.52609 1.74568I 0
u = 1.199010 + 0.348364I
a = 0.548822 + 0.771359I
b = 0.239946 + 0.310271I
3.52609 1.74568I 0
u = 1.199010 0.348364I
a = 0.548822 0.771359I
b = 0.239946 0.310271I
3.52609 + 1.74568I 0
24
Solutions to I
u
3
1(vol +
1CS) Cusp shape
u = 0.136984 + 1.302140I
a = 0.305822 0.314089I
b = 1.73222 1.78973I
4.33120 + 3.94595I 0
u = 0.136984 1.302140I
a = 0.305822 + 0.314089I
b = 1.73222 + 1.78973I
4.33120 3.94595I 0
u = 0.136984 + 1.302140I
a = 0.108453 + 1.343220I
b = 0.330792 + 1.302590I
4.33120 3.94595I 0
u = 0.136984 1.302140I
a = 0.108453 1.343220I
b = 0.330792 1.302590I
4.33120 + 3.94595I 0
u = 0.050813 + 0.653192I
a = 0.54749 + 2.31274I
b = 0.068034 + 1.252060I
6.41705 0.11934I 5.06037 1.90424I
u = 0.050813 0.653192I
a = 0.54749 2.31274I
b = 0.068034 1.252060I
6.41705 + 0.11934I 5.06037 + 1.90424I
u = 0.050813 + 0.653192I
a = 0.27250 + 1.80754I
b = 0.22773 + 1.58802I
6.41705 + 0.11934I 5.06037 + 1.90424I
u = 0.050813 0.653192I
a = 0.27250 1.80754I
b = 0.22773 1.58802I
6.41705 0.11934I 5.06037 1.90424I
u = 0.226986 + 0.550089I
a = 0.27141 + 1.59457I
b = 0.11892 + 1.82807I
3.85848 8.80900I 7.98418 + 11.33270I
u = 0.226986 0.550089I
a = 0.27141 1.59457I
b = 0.11892 1.82807I
3.85848 + 8.80900I 7.98418 11.33270I
25
Solutions to I
u
3
1(vol +
1CS) Cusp shape
u = 0.226986 + 0.550089I
a = 1.45723 + 2.48719I
b = 0.511984 + 0.415389I
3.85848 + 8.80900I 7.98418 11.33270I
u = 0.226986 0.550089I
a = 1.45723 2.48719I
b = 0.511984 0.415389I
3.85848 8.80900I 7.98418 + 11.33270I
u = 0.004800 + 0.571260I
a = 1.58528 + 1.61394I
b = 0.152978 + 0.082715I
0.55712 3.66399I 1.27961 + 13.86053I
u = 0.004800 0.571260I
a = 1.58528 1.61394I
b = 0.152978 0.082715I
0.55712 + 3.66399I 1.27961 13.86053I
u = 0.004800 + 0.571260I
a = 0.712428 + 0.739925I
b = 1.00518 + 2.26941I
0.55712 + 3.66399I 1.27961 13.86053I
u = 0.004800 0.571260I
a = 0.712428 0.739925I
b = 1.00518 2.26941I
0.55712 3.66399I 1.27961 + 13.86053I
u = 1.47284 + 0.15553I
a = 0.552345 0.801614I
b = 0.36950 2.22670I
3.28324 + 7.83214I 0
u = 1.47284 0.15553I
a = 0.552345 + 0.801614I
b = 0.36950 + 2.22670I
3.28324 7.83214I 0
u = 1.47284 + 0.15553I
a = 0.152691 + 0.262120I
b = 0.285395 + 0.888432I
3.28324 7.83214I 0
u = 1.47284 0.15553I
a = 0.152691 0.262120I
b = 0.285395 0.888432I
3.28324 + 7.83214I 0
26
Solutions to I
u
3
1(vol +
1CS) Cusp shape
u = 1.51156 + 0.26431I
a = 0.355371 + 0.035389I
b = 0.0104865 0.1040000I
6.77206 + 4.79490I 0
u = 1.51156 0.26431I
a = 0.355371 0.035389I
b = 0.0104865 + 0.1040000I
6.77206 4.79490I 0
u = 1.51156 + 0.26431I
a = 0.112338 0.872812I
b = 0.51658 2.86042I
6.77206 4.79490I 0
u = 1.51156 0.26431I
a = 0.112338 + 0.872812I
b = 0.51658 + 2.86042I
6.77206 + 4.79490I 0
u = 0.05303 + 1.61259I
a = 0.082693 0.843305I
b = 0.05758 1.82287I
8.09446 1.28532I 0
u = 0.05303 1.61259I
a = 0.082693 + 0.843305I
b = 0.05758 + 1.82287I
8.09446 + 1.28532I 0
u = 0.05303 + 1.61259I
a = 0.05806 + 1.72700I
b = 0.06640 + 1.70162I
8.09446 + 1.28532I 0
u = 0.05303 1.61259I
a = 0.05806 1.72700I
b = 0.06640 1.70162I
8.09446 1.28532I 0
u = 1.83596
a = 0.0349025
b = 14.4201
7.08706 0
u = 1.83596
a = 0.765863
b = 1.76221
7.08706 0
27
IV. I
u
4
= hb, a
2
a + 1, u + 1i
(i) Arc colorings
a
2
=
0
1
a
8
=
1
0
a
4
=
a
0
a
9
=
1
1
a
1
=
a + 1
1
a
12
=
a + 2
1
a
10
=
2a
a
a
7
=
2a 1
a + 1
a
6
=
2a 1
a
a
3
=
1
1
a
5
=
2a + 1
a
a
11
=
a + 2
1
(ii) Obstruction class = 1
(iii) Cusp Shapes = 4a + 4
28
(iv) u-Polynomials at the component
Crossings u-Polynomials at each crossing
c
1
, c
9
, c
10
u
2
u + 1
c
2
, c
12
(u 1)
2
c
3
, c
4
, c
7
u
2
+ u + 1
c
5
u
2
+ 2u + 4
c
6
u
2
+ 3
c
8
(u + 1)
2
c
11
u
2
29
(v) Riley Polynomials at the component
Crossings Riley Polynomials at each crossing
c
1
, c
3
, c
4
c
7
, c
9
, c
10
y
2
+ y + 1
c
2
, c
8
, c
12
(y 1)
2
c
5
y
2
+ 4y + 16
c
6
(y + 3)
2
c
11
y
2
30
(vi) Complex Volumes and Cusp Shapes
Solutions to I
u
4
1(vol +
1CS) Cusp shape
u = 1.00000
a = 0.500000 + 0.866025I
b = 0
1.64493 2.02988I 6.00000 + 3.46410I
u = 1.00000
a = 0.500000 0.866025I
b = 0
1.64493 + 2.02988I 6.00000 3.46410I
31
V. I
u
5
= hb 2a, a
2
a + 1, u 1i
(i) Arc colorings
a
2
=
0
1
a
8
=
1
0
a
4
=
a
2a
a
9
=
1
1
a
1
=
a 1
2a 1
a
12
=
a
2a 1
a
10
=
0
a
a
7
=
1
a + 1
a
6
=
1
a + 2
a
3
=
1
1
a
5
=
1
a + 2
a
11
=
a
2a + 1
(ii) Obstruction class = 1
(iii) Cusp Shapes = 4a + 4
32
(iv) u-Polynomials at the component
Crossings u-Polynomials at each crossing
c
1
, c
9
, c
10
u
2
+ u + 1
c
2
(u + 1)
2
c
3
, c
4
, c
7
u
2
u + 1
c
5
u
2
c
6
, c
8
(u 1)
2
c
11
u
2
+ 2u + 4
c
12
u
2
+ 3
33
(v) Riley Polynomials at the component
Crossings Riley Polynomials at each crossing
c
1
, c
3
, c
4
c
7
, c
9
, c
10
y
2
+ y + 1
c
2
, c
6
, c
8
(y 1)
2
c
5
y
2
c
11
y
2
+ 4y + 16
c
12
(y + 3)
2
34
(vi) Complex Volumes and Cusp Shapes
Solutions to I
u
5
1(vol +
1CS) Cusp shape
u = 1.00000
a = 0.500000 + 0.866025I
b = 1.00000 + 1.73205I
1.64493 2.02988I 6.00000 + 3.46410I
u = 1.00000
a = 0.500000 0.866025I
b = 1.00000 1.73205I
1.64493 + 2.02988I 6.00000 3.46410I
35
VI. I
v
1
= ha, b
2
+ b + 1, v + 1i
(i) Arc colorings
a
2
=
1
0
a
8
=
1
0
a
4
=
0
b
a
9
=
1
0
a
1
=
1
b 1
a
12
=
b
b 1
a
10
=
0
b
a
7
=
1
b + 1
a
6
=
b
b + 1
a
3
=
1
0
a
5
=
0
b
a
11
=
0
b
(ii) Obstruction class = 1
(iii) Cusp Shapes = 8b 4
36
(iv) u-Polynomials at the component
Crossings u-Polynomials at each crossing
c
1
, c
6
, c
7
c
12
u
2
u + 1
c
2
, c
4
, c
8
c
10
u
2
c
3
, c
5
, c
9
c
11
u
2
+ u + 1
37
(v) Riley Polynomials at the component
Crossings Riley Polynomials at each crossing
c
1
, c
3
, c
5
c
6
, c
7
, c
9
c
11
, c
12
y
2
+ y + 1
c
2
, c
4
, c
8
c
10
y
2
38
(vi) Complex Volumes and Cusp Shapes
Solutions to I
v
1
1(vol +
1CS) Cusp shape
v = 1.00000
a = 0
b = 0.500000 + 0.866025I
4.05977I 0. 6.92820I
v = 1.00000
a = 0
b = 0.500000 0.866025I
4.05977I 0. + 6.92820I
39
VII. u-Polynomials
Crossings u-Polynomials at each crossing
c
1
, c
7
((u
2
u + 1)
2
)(u
2
+ u + 1)(u
37
u
36
+ ··· + 8u 1)
· (u
40
12u
39
+ ··· + 15u + 1)(u
86
7u
85
+ ··· 55u + 3)
c
2
, c
8
u
2
(u 1)
2
(u + 1)
2
(u
37
+ 5u
36
+ ··· + 2744u + 388)
· (u
40
6u
38
+ ··· 255u
2
19)(u
43
3u
42
+ ··· + 110u 17)
2
c
3
, c
9
(u
2
u + 1)(u
2
+ u + 1)
2
(u
37
+ u
36
+ ··· + 2u + 1)
· (u
40
+ 5u
39
+ ··· 3u + 1)(u
86
+ 4u
85
+ ··· + 3742879u + 515187)
c
4
, c
10
u
2
(u
2
u + 1)(u
2
+ u + 1)(u
37
+ 5u
36
+ ··· + 184u + 52)
· (u
40
+ 8u
38
+ ··· 297u
2
19)(u
43
2u
42
+ ··· + 8u 5)
2
c
5
, c
11
u
2
(u
2
+ u + 1)(u
2
+ 2u + 4)(u
37
+ u
36
+ ··· 4u + 4)
· (u
40
5u
39
+ ··· 36u 36)(u
86
+ 2u
85
+ ··· 1380u + 529)
c
6
, c
12
((u 1)
2
)(u
2
+ 3)(u
2
u + 1)(u
37
u
36
+ ··· 104u 47)
· (u
40
+ 5u
39
+ ··· 81u + 27)
· (u
86
2u
85
+ ··· + 2676206273u + 339660187)
40
VIII. Riley Polynomials
Crossings Riley Polynomials at each crossing
c
1
, c
7
((y
2
+ y + 1)
3
)(y
37
11y
36
+ ··· + 32y 1)
· (y
40
24y
39
+ ··· 235y + 1)(y
86
7y
85
+ ··· 31y + 9)
c
2
, c
8
y
2
(y 1)
4
(y
20
6y
19
+ ··· 255y 19)
2
· (y
37
23y
36
+ ··· + 3132720y 150544)
· (y
43
39y
42
+ ··· + 4960y 289)
2
c
3
, c
9
((y
2
+ y + 1)
3
)(y
37
37y
36
+ ··· + 30y 1)
· (y
40
31y
39
+ ··· + 41y + 1)
· (y
86
28y
85
+ ··· 1722726646621y + 265417644969)
c
4
, c
10
y
2
(y
2
+ y + 1)
2
(y
20
+ 8y
19
+ ··· 297y 19)
2
· (y
37
+ 13y
36
+ ··· 5872y 2704)(y
43
+ 20y
42
+ ··· 446y 25)
2
c
5
, c
11
y
2
(y
2
+ y + 1)(y
2
+ 4y + 16)(y
37
5y
36
+ ··· 976y 16)
· (y
40
y
39
+ ··· 27216y + 1296)
· (y
86
+ 32y
85
+ ··· + 34272852y + 279841)
c
6
, c
12
((y 1)
2
)(y + 3)
2
(y
2
+ y + 1)(y
37
31y
36
+ ··· + 16456y 2209)
· (y
40
+ 11y
39
+ ··· + 104247y + 729)
· (y
86
10y
85
+ ··· 3384577457419862375y + 115369042632874969)
41