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Q: What is the name of this regular tessellation and why?

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A regular tessellation or semi-regular tessellation or none.

Semi-regular tessellation is a tessellation of the plane by 2 or more different convex regular polygons. A semi-regular tessellation combines two or more regular polygons. Each semi-regular tessellation has a tupelo, which designates what kind of regular polygon is used.

A tessellation that uses more than one kind of regular polygon is called a semi-regular tessellation.

A regular tessellation uses only one regular polygon. A semi-regular tessellation is based on two or more regular polygons.

A regular tessellation is based on only one regular polygonal shape. A semi-regular tessellation is based on two or more regular polygons.

A regular polygon has 3 to 5 or more sides and angles, they should be all equaled. A regular tessellation means a tessellation made up of congruent regular polygons.

look it upp

It is a regular tessellation.

There is no such thing as a seni-regular tessellation. A semi-regular tessllation is a tessellation using two regular polygons: for example, octagons and squares together.

It can have 3, 4 or 6 sides.

one

It is a semi-regular tessellation.

regular

a tessellation that uses more than one type of regular polygon

Strictly speaking, no, because a semi-regular tessellation must be based on regular polygons and rhombi are not regular polygons. However, octagons and rhombi can be used to make a non-regular tessellation.

A regular tessellation is one in which a plane is covered, without gaps or overlaps, using copies of a regular polygon.

Semi-regular tessellation.

Semi-regular tessellation

true.. and polygon

It is a regular tessellation.

It is a semi-regular tessellation.

It is a tessellation which uses two regular polygons. For example, octagons and squares.

A regular tessellation.

Only if the quadrilateral is a square.

Tessellations are named based on the number of polygons located at a vertex. For example: A regular tessellation, made from only triangles is named 3.3.3