Yes the diagonals of a rectangle are equal in lengths
The diagonals of a rectangle bisect the angles only if the rectangle is a square.
The diagonals of a rectangle are congruent and they bisect each other.
The diagonals of a rectangle are never perpendicular but the diagonals of a square are perpendicular
The diagonals of a square are perpendicular whereas the diagonals of a rectangle are not perpendicular.
Sure, a square is a rectangle and the diagonals of a square are perpendicular.
The diagonals of a rectangle bisect the angles only if the rectangle is a square.
The diagonals of a rectangle are congruent and they bisect each other.
The diagonals of a rectangle are never perpendicular but the diagonals of a square are perpendicular
It has 2 diagonals
The diagonals of a square are perpendicular whereas the diagonals of a rectangle are not perpendicular.
Yes it does - they bisect each other at the exact centre of the rectangle.
Sure, a square is a rectangle and the diagonals of a square are perpendicular.
The diagonals of a square are perpendicular whereas the diagonals of a rectangle are not perpendicular.
The diagonals of a rectangle do not cross at right angles
It ha 2 diagonals
A rectangle has 2 diagonals
Yes, the diagonals of a rectangle are equal in length. This can be proven using the Pythagorean theorem. In a rectangle, the diagonals create two congruent right triangles, where the lengths of the sides are the width and height of the rectangle. Since the legs of these triangles are equal for both diagonals, their hypotenuses (the diagonals) must also be equal.