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Yes a square will tessellate on its own

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Q: Can a regular quadrilateral be used by itself to make a tessellarion?
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Can a regular quadrilateral be used by itself to make a tessellation?

Tessellation is defined as the tiling of a plane using one or more geometric shapes, called tiles, with no overlaps and no gaps. In mathematics, tessellations can be generalized to higher dimensions. A periodic tiling has a repeat pattern. A regular quadrilateral can be used by itself to make a tessellation.


Why is a rhombus a regular quadrilateral?

Because it has 4 equal sides. * * * * * No. That is not enough to make it a regular quadrilateral. A regular polygon must also have equal angles and a rhombus, in general, does not.


Can a regular hexagon be used by itself to make a tessellation?

no


Can a regular nonagon 1260 degrees be used by itself to make a tessellation?

No.


Which regular polygon can be used by itself to make a tessellation?

The only regular polygons are those with 3, 4 or 6 sides.


Can a regular polygon with an angle measure 160 be used by itself to make a tessellation?

Yes it can


Can a regular polygon with an angle measure of 160 degrees be used by itself to make a tessellation?

No, it is not possible.


What is a 4 sided quadrilateral?

A quadrilateral is a polygon with 4 sides... so if it has 4 sides it is a quadrilateral. your question doesnt make sense because a 4 sided quadrilateral could be any quadrilateral at all.


What sets of side lengths make a quadrilateral?

Any polygon with 4 sides is a quadrilateral


Can a regular polygon with an angle measure of 135 degrees be used by itself to make a tesselation?

Yes. :] Yes. :]


What shape can you make with 3 triangles and 1 trapezoid?

Depending on the individual shapes, you can make a large triangle, a square or any other quadrilateral, a regular or irregular pentagon or hexagon. If concave shapes are allowed, you can make any polygon upto a decagon.


Can a regular octagon be used by itself to make a tessellation?

No Internat angle of a regular octagon is 135°. No multiple of 135° will make 360°. Thus at any point there can be at most two octagons and a 90° gap. Ratty