Tessellation is a pattern of shapes without gaps or overlapping shapes. Examples would be floor tiles, bricks, ceiling tiles etc.
Yes a quadrilateral will tessellate.
No, but an octagon and a square can tessellate.
There is no general relationship.All triangles will tessellate. All quadrilaterals will tessellate There are 15 classes of convex pentagons (the latest discovered in 2015) which will tessellate. Regular hexagons will tessellate. In addition, there are 3 classes of irregular convex hexagons which will tessellate. No convex polygon with 7 or more sides will tessellate.
All triangles will tessellate. All quadrilaterals will tessellate There are 15 classes of convex pentagons (the latest discovered in 2015) which will tessellate. Regular hexagons will tessellate. In addition, there are 3 classes of irregular convex hexagons which will tessellate. No convex polygon with 7 or more sides will tessellate.
Yes. Any triangle will tessellate.
Polygons will tessellate if when joined together there is no gaps or overlaps
No cones can not tessellate.
Yes * * * * * No. A star will not tessellate.
A square will tessellate leaving no gaps or overlaps but a circle does not tessellate.
No, it can't be tessellate.
yes * * * * * No, they do not tessellate.
Yes a quadrilateral will tessellate.
yes... this figure does tessellate
No, but an octagon and a square can tessellate.
Tessellate is a verb. You were correct
No, there is no polygon with 7 or more sides can tessellate.
No it does not tessellate you have to pentagons in order for it to tessellate. * * * * * It is not at all clear what "have to pentagons" has to do with this. No polygon with 7 or more sides will tessellate. Octagons will tessellate if mixed with squares but that is not "proper" tessellation since it involved more than one shape.