File: snappea.out

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regina-normal 7.4.1-1.1
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2 Z
Z + Z_5
2 Z
True

2 Z
Z + Z_5
2 Z
True

2 Z
To be changed:
    Size: 4
    Homology: 2 Z
Was changed:
    Size: 4
    Homology: Z + Z_5
Z + Z_5
To be changed:
    Size: 4
    Homology: Z + Z_5
Was changed:
    Size: 4
    Homology: 2 Z
2 Z
To be changed:
    Size: 5
    Homology: 2 Z
Was changed:
    Null
True

Ideal orientable 3-D triangulation, f = ( 2 4 8 4 ), cusps: [ vertex 1: (-3, 7), vertex 0 ]

Size of the skeleton:
  Tetrahedra: 4
  Triangles: 8
  Edges: 4
  Vertices: 2

Tetrahedron gluing:
  Tet  |  gluing:       (012)       (013)       (023)       (123)
  -----+---------------------------------------------------------
    0  |              1 (320)     3 (230)     3 (231)     1 (120)
    1  |              0 (312)     2 (213)     0 (210)     2 (023)
    2  |              3 (130)     3 (012)     1 (123)     1 (103)
    3  |              2 (013)     2 (201)     0 (301)     0 (302)

Vertices:
  Tet  |  vertex:    0   1   2   3
  -----+--------------------------
    0  |             0   1   1   1
    1  |             1   1   1   0
    2  |             1   1   1   0
    3  |             1   1   0   1

Edges:
  Tet  |  edge:   01  02  03  12  13  23
  -----+--------------------------------
    0  |           0   0   1   2   3   2
    1  |           3   2   0   2   1   0
    2  |           2   2   1   3   1   0
    3  |           2   1   3   1   2   0

Triangles:
  Tet  |  face:  012 013 023 123
  -----+------------------------
    0  |           0   1   2   3
    1  |           3   4   0   5
    2  |           6   7   5   4
    3  |           7   6   1   2

Tetrahedron shapes:
  0: ( 0.960267, 1.2835 )
  1: ( -0.0397327, 1.2835 )
  2: ( 0.381077, 0.47042 )
  3: ( 0.626279, 0.499517 )

Cusps:
  0: Vertex 1, filled (-3, 7)
  1: Vertex 0, complete

Ideal orientable 3-D triangulation, f = ( 2 4 8 4 )
Ideal orientable 3-D triangulation, f = ( 2 4 8 4 )
Ideal orientable 3-D triangulation, f = ( 2 4 8 4 ), cusps: [ vertex 0, vertex 1 ]
Ideal orientable 3-D triangulation, f = ( 2 4 8 4 ), cusps: [ vertex 0, vertex 1 ]
Closed orientable 3-D triangulation, f = ( 1 6 10 5 )
Closed orientable 3-D triangulation, f = ( 1 6 10 5 )
Ideal orientable 3-D triangulation, f = ( 1 2 4 2 ), cusps: [ vertex 0: (1, 0) ]
Ideal orientable 3-D triangulation, f = ( 1 2 4 2 ), cusps: [ vertex 0: (1, 0) ]