4 because the diagonals bisect each other at 90 degrees
No. Think of a triangle with two 45o angles. These must be opposite equal sides which in turn form a right angle. Imagine a square divided into 4 by diagonals, forming 4 isosceles right-angled triangles.
It's not possible
You would have 8 right-angled triangles inside the square.
Yes, if you count four congruencies as six pairs.
The way to find the missing side of a triangle-THIS ONLY WORKS ON RIGHT ANGLED TRIANGLES-is square both sides seperately and then add them together to give you the square of the missing side-find the square root and that is the size of the missing side-eg. if you have a RIGHT ANGLED TRIANGLE with sides of 3inch and 4inch then (3x3) + (4x4) = 25 so the square root of 25 is 5 meaning the missing side is 5inch.
A right-angled triangle can have equal sides, but does not have to. A right-angled triangle with two equal sides CANNOT be an equilateral triangle. A right-angled triangle cannot be an equilateral triangle.Divide a square along the diagonal, and you are left with two right-angled triangles with two sides of equal length.
No. Think of a triangle with two 45o angles. These must be opposite equal sides which in turn form a right angle. Imagine a square divided into 4 by diagonals, forming 4 isosceles right-angled triangles.
It's not possible
longest side of the sum of the other tworight angled triangle = small sidesSQUARED SQUAREDto find sidessimplifyc square =a square + b square
You can do it only of the triangle is right angled and if one of its legs is the same length as the side of the square. In that case, let that side of the triangle abut a side of the square.
In a right angled triangle its hypotenuse when squared is equal to the sum of its squared sides which is Pythagoras' theorem for a right angle triangle.
longest side of the sum of the other tworight angled triangle = small sidesSQUARED SQUAREDto find sidessimplifyc square =a square + b square
The converse of Pythagoras's theorem states :- "If the square of one side of a triangle is equal to the sum of square of other two sides then the triangle is a right angled triangle""
Because it is the sum of square of base and perpendicular
a square root spiral is a spiral formed by many right angled triangles, where, the hypotenuse of each triangle is the square root of a number.the first triangle is always an isoseles triangle, with its hypotenuse equal to square root of 2.
For a right angled triangle, sum of squares of two sides of a triangle equals square of the third side. For example - In triangle ABC, AB2 + BC2 = AC2
a square root spiral is a spiral formed by many right angled triangles, where, the hypotenuse of each triangle is the square root of a number.the first triangle is always an isoseles triangle, with its hypotenuse equal to square root of 2.