Deck 20: Tilings
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Deck 20: Tilings
1
Create a tiling with a nonconvex quadrilateral. Is it regular?

2
Create a tiling of the plane using triangles and octagons, if possible.

3
Tile the plane with a nonsquare rhombus.

4
Create an Escher-like tiling that uses only translations and half-turns.
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5
Create a nonregular tiling with a right triangle tile.
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6
Create a tiling with a parallelogram. Is it regular?
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7
Why are regular pentagons not usable to tile the plane?
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8
Create a nonregular tiling with octagons and squares.
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9
Why are Penrose tilings of interest to chemists?
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10
Tile the plane with a (tileable) pentagon.
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11
Tile the plane with an equilateral triangle.
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12
Use the figure below to tile the plane, if possible. 

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13
Use the figure below to tile the plane, if possible. 

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14
Create an Escher-like tiling that uses only translations.
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15
Use the figure below to tile the plane, if possible. 

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16
Choose one of Marjorie Rice's pentagon tiles, and use it to tile the plane.
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17
Tile the plane with a (tileable) hexagon.
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18
Create an Escher-like tiling that uses only translations and reflections.
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19
Why are regular octagons not useable to tile the plane?
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20
Create a tiling of the plane using squares and hexagons, if possible.
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21
At the vertex of a tiling of the plane there is a regular octagon, a square, and one other regular polygon. Which regular polygon is it?
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22
Explain why the tiling below does not form a semiregular tiling of the plane. 

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23
List all regular tilings.
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24
What is a nonperiodic tiling?
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25
What are the possible rotational symmetries of a crystal?
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26
Which of the following polygons can tile the plane? I: regular pentagon
II: regular hexagon
A) I only
B) II only
C) both I and II
D) neither
II: regular hexagon
A) I only
B) II only
C) both I and II
D) neither
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27
Which of the following polygons can tile the plane? I: regular octagon
II: nonrectangle parallelogram
A) I only
B) II only
C) both I and II
D) neither
II: nonrectangle parallelogram
A) I only
B) II only
C) both I and II
D) neither
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28
Give a numerical explanation of why a regular decagon (10 sides) cannot tile the plane by itself.
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29
How many edge-to-edge tilings with regular polygons are possible when we allow different vertex types?
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30
If a tiling has only translations, how could it be classified in wallpaper pattern notation?
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31
Explain why the tiling below does not form a semiregular tiling of the plane. 

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32
Can you "tile" space with any regular polyhedron other than a cube?
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33
In a semiregular tiling, what is the maximum possible number of sides of a regular polygon?
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34
Write the vertex type of this semiregular tiling: 

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35
What is a regular tiling?
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36
Which of the following polygons can tile the plane? I: nonsquare rhombus
II: nonequilateral isosceles triangle
A) I only
B) II only
C) both I and II
D) neither
II: nonequilateral isosceles triangle
A) I only
B) II only
C) both I and II
D) neither
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37
Illustrate a tiling with the L-tetromino that uses both reflection and rotation.
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38
Write the vertex type of this semiregular tiling: 

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39
What is the vertex type?
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40
What is a semiregular tiling?
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41
The exterior angle of a regular octagon (8-gon) has a measure of:
A) 18°.
B) 30°.
C) 45°.
D) 60°.
A) 18°.
B) 30°.
C) 45°.
D) 60°.
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42
Regular octagons and squares can form a tiling of the plane that has at every vertex:
A) two octagons and two squares.
B) two octagons and one square.
C) one octagon and two squares.
D) one octagon and three squares.
A) two octagons and two squares.
B) two octagons and one square.
C) one octagon and two squares.
D) one octagon and three squares.
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43
_____ pentagons can form a tiling of the plane.
A) All
B) Some
C) No
A) All
B) Some
C) No
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44
Regular hexagons and equilateral triangles can form a tiling of the plane that has at every vertex:
A) three hexagons and one triangle.
B) two hexagons and two triangles.
C) two hexagons and three triangles.
D) one hexagon and five triangles.
A) three hexagons and one triangle.
B) two hexagons and two triangles.
C) two hexagons and three triangles.
D) one hexagon and five triangles.
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45
A semiregular tiling has one square, one regular hexagon, and one regular p-gon at each vertex. What is p?
A) 8
B) 9
C) 10
D) 12
A) 8
B) 9
C) 10
D) 12
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46
Semiregular tilings can tile with: I: three different regular polygons.
II: three different vertex combinations.
A) I only
B) II only
C) both I and II
D) neither
II: three different vertex combinations.
A) I only
B) II only
C) both I and II
D) neither
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47
_____ hexagons can form a tiling of the plane.
A) All
B) Some
C) No
A) All
B) Some
C) No
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48
Regular dodecagons (12-gons) and equilateral triangles can form a tiling of the plane that has at every vertex:
A) two dodecagons and two triangles.
B) two dodecagons and one triangle.
C) one dodecagon and two triangles.
D) one dodecagon and three triangles.
A) two dodecagons and two triangles.
B) two dodecagons and one triangle.
C) one dodecagon and two triangles.
D) one dodecagon and three triangles.
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49
A semiregular tiling has four equilateral triangles and one p-gon at each vertex. What is p?
A) 3
B) 4
C) 5
D) 6
A) 3
B) 4
C) 5
D) 6
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50
A semiregular tiling has one equilateral triangle and two regular p-gons at each vertex. What is p?
A) 8
B) 9
C) 10
D) 12
A) 8
B) 9
C) 10
D) 12
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51
A semiregular tiling has two regular octagons and one regular p-gon at each vertex. What is p?
A) 3
B) 4
C) 5
D) 6
A) 3
B) 4
C) 5
D) 6
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52
A scalene triangle ABC tiles the plane. What is a possible configuration of the angles at the vertices? I: three types of vertices: 6 As, or 6 Bs, or 6 Cs
II: one type of vertex: 2 As, 2 Bs, and 2 Cs
A) I only
B) II only
C) both I and II
D) neither I nor II
II: one type of vertex: 2 As, 2 Bs, and 2 Cs
A) I only
B) II only
C) both I and II
D) neither I nor II
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53
Squares and equilateral triangles can form a tiling that has at every vertex:
A) three squares and two triangles.
B) two squares and three triangles.
C) one square and four triangles.
D) one square and five triangles.
A) three squares and two triangles.
B) two squares and three triangles.
C) one square and four triangles.
D) one square and five triangles.
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54
The exterior angle of a regular pentagon has a measure of:
A) 18°.
B) 30°.
C) 60°.
D) 72°.
A) 18°.
B) 30°.
C) 60°.
D) 72°.
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55
A semiregular tiling has one square and two regular p-gons at each vertex. What is p?
A) 5
B) 6
C) 8
D) 10
A) 5
B) 6
C) 8
D) 10
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56
_____ nonconvex quadrilaterals can form a tiling of the plane.
A) All
B) Some
C) No
A) All
B) Some
C) No
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57
Which of the following polygons can tile the plane? I: scalene triangle
II: equilateral triangle
A) I only
B) II only
C) both I and II
D) neither
II: equilateral triangle
A) I only
B) II only
C) both I and II
D) neither
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58
The exterior angle of a regular hexagon has a measure of:
A) 18°.
B) 30°.
C) 45°.
D) 60°.
A) 18°.
B) 30°.
C) 45°.
D) 60°.
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59
_____ convex quadrilaterals can form a tiling of the plane.
A) All
B) Some
C) No
A) All
B) Some
C) No
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60
The exterior angle of a regular decagon (10-gon) has a measure of:
A) 18°.
B) 36°.
C) 45°.
D) 54°.
A) 18°.
B) 36°.
C) 45°.
D) 54°.
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61
A non-convex quadrilateral ABCD tiles the plane. What is a possible configuration of the angles at the vertices? I: two types of vertices: 2 As and 2 Cs; 2 Bs and 2 Ds
II: one type of vertex: A, B, C, D
A) I only
B) II only
C) both I and II
D) neither I nor II
II: one type of vertex: A, B, C, D
A) I only
B) II only
C) both I and II
D) neither I nor II
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62
What is a possible way to tile the plane with a general isosceles triangle? I: six at a vertex
II: four or eight at a vertex
A) I only
B) II only
C) both I and II
D) neither I nor II
II: four or eight at a vertex
A) I only
B) II only
C) both I and II
D) neither I nor II
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63
Which of the following form the faces of a regular polyhedron? I: six equilateral triangles
II: eight equilateral triangles
A) I only
B) II only
C) both I and II
D) neither I nor II
II: eight equilateral triangles
A) I only
B) II only
C) both I and II
D) neither I nor II
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64
A regular polyhedron with six faces has what regular polygon as faces?
A) triangle
B) square
C) pentagon
D) hexagon
A) triangle
B) square
C) pentagon
D) hexagon
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65
Can the tile below be used to tile the plane? 
A) no
B) yes, with translations only
C) yes, with translations and half-turns only
D) yes, but reflections must be included

A) no
B) yes, with translations only
C) yes, with translations and half-turns only
D) yes, but reflections must be included
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66
Is 3.10.16 a possible vertex type for a vertex surrounded by regular polygons?
A) Yes
B) No
A) Yes
B) No
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67
If 4.8.n is a possible vertex type for a vertex surrounded by regular polygons, what is n?
A) 6
B) 8
C) 11
D) 12
A) 6
B) 8
C) 11
D) 12
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68
If 4.5.n is a possible vertex type for a vertex surrounded by regular polygons, what is n?
A) 10
B) 18
C) 20
D) 22
A) 10
B) 18
C) 20
D) 22
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69
Can the tile below be used to tile the plane? 
A) no
B) yes, with translations only
C) yes, with translations and half-turns only
D) yes, but reflections must be included

A) no
B) yes, with translations only
C) yes, with translations and half-turns only
D) yes, but reflections must be included
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70
Can the tile below be used to tile the plane? 
A) no
B) yes, with translations only
C) yes, with translations and half-turns only
D) yes, but reflections must be included

A) no
B) yes, with translations only
C) yes, with translations and half-turns only
D) yes, but reflections must be included
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71
What is a possible way to tile the plane with a pentagon with three 90° angles and two equal obtuse angles? I: three at a vertex
II: three or four at a vertex
A) I only
B) II only
C) both I and II
D) neither I nor II
II: three or four at a vertex
A) I only
B) II only
C) both I and II
D) neither I nor II
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72
Can the tile below be used to tile the plane? 
A) no
B) yes, with translations only
C) yes, with translations and half-turns only
D) yes, but reflections must be included

A) no
B) yes, with translations only
C) yes, with translations and half-turns only
D) yes, but reflections must be included
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73
A regular polyhedron with 12 faces has what regular polygon as faces?
A) triangle
B) square
C) pentagon
D) hexagon
A) triangle
B) square
C) pentagon
D) hexagon
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74
Is 3.3.4.12 a possible vertex type for a vertex surrounded by regular polygons?
A) Yes
B) No
A) Yes
B) No
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75
What is a possible way to tile the plane with a parallelogram with 60° and 120° angles? I: four at a vertex
II: three or six at a vertex
A) I only
B) II only
C) both I and II
D) neither I nor II
II: three or six at a vertex
A) I only
B) II only
C) both I and II
D) neither I nor II
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76
Which of the following form the faces of a regular polyhedron? I: eight squares
II: four equilateral triangles
A) I only
B) II only
C) both I and II
D) neither I nor II
II: four equilateral triangles
A) I only
B) II only
C) both I and II
D) neither I nor II
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77
What is a possible way to tile the plane with a pentagon with two 90° angles and three equal obtuse angles? I: three at a vertex
II: three or four at a vertex
A) I only
B) II only
C) both I and II
D) neither I nor II
II: three or four at a vertex
A) I only
B) II only
C) both I and II
D) neither I nor II
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78
A regular polyhedron with 20 faces has what regular polygon as faces?
A) triangle
B) square
C) pentagon
D) hexagon
A) triangle
B) square
C) pentagon
D) hexagon
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79
Which of the following form the faces of a regular polyhedron? I: six squares
II: 10 pentagons
A) I only
B) II only
C) both I and II
D) neither I nor II
II: 10 pentagons
A) I only
B) II only
C) both I and II
D) neither I nor II
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80
What is a possible way to tile the plane with a right triangle? I: six at every vertex
II: four or eight at every vertex
A) I only
B) II only
C) both I and II
D) neither I nor II
II: four or eight at every vertex
A) I only
B) II only
C) both I and II
D) neither I nor II
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