Well, honey, a rhombus is like that friend who always keeps it real - it has all sides equal in length. So, if you're looking for a shape with sides that are all buddy-buddy in terms of length, then the rhombus is your go-to guy. Just remember, don't mess with its sides, or it might just give you some attitude!
No because although its 4 sides are equal in length its 4 interior angles aren't equal in measurement
No, all sides are UNEQUAL. Nope, all different. All sides equal would be equilateral which means "equal sides"
A parallelogram where all sides are equal is a square.
Not unless all angles are also equal. A rhombus is a parallelogram with all sides equal. A rectangle is a parallelogram with all angles equal. A square is a rhombus with all angles equal which is a parallelogram with all sides equal and all angles equal.
Square. By definition, its sides must all be equal.
No because although its 4 sides are equal in length its 4 interior angles aren't equal in measurement
Rhoumbus
No, all sides are UNEQUAL. Nope, all different. All sides equal would be equilateral which means "equal sides"
A parallelogram where all sides are equal is a square.
A regular pentagon has 5 equal sides. An irregularpentagon has 5 sides that are not all equal.
Not unless all angles are also equal. A rhombus is a parallelogram with all sides equal. A rectangle is a parallelogram with all angles equal. A square is a rhombus with all angles equal which is a parallelogram with all sides equal and all angles equal.
A rhombus has all sides equal and opposite sides parallel. This includes a square which is a special case of a rhombus with all angles equal (90 degrees) as well. If opposirte sides are equal but not all sides are equal, it is a parallelogram
No. The opposite sides are always equal to each other. All sides are equal only if it is a square or rhombus.
3 equal sides = equilateral 2 equal sides = isosceles all sides different = scalene
All 4 sides are equal.
No, not necessarily. A parallelogram can have all sides equal, but still not be a square.
Yes