Sunday, March 20, 2011

pythagorean theorem square

(The top corner of the blue square has the Greek letter delta (δ),

(The top corner of the blue square has the Greek letter delta (δ),

In mathematics, the Pythagorean theorem or Pythagoras' theorem

In mathematics, the Pythagorean theorem or Pythagoras' theorem

Figure 2 – The geometric interpretation of the Pythagorean theorem states

Figure 2 – The geometric interpretation of the Pythagorean theorem states

Pythagorean Theorem

Pythagorean Theorem

To prove the Pythagorean theorem, construct two identical squares from the

To prove the Pythagorean theorem, construct two identical squares from the

Proving the Pythagorean Theorem

Proving the Pythagorean Theorem

Now that you've learnt the Pythagorean theorem, learn your Pythagorean

Now that you've learnt the Pythagorean theorem, learn your Pythagorean

We can use the Pythagorean Theorem to answer a question

We can use the Pythagorean Theorem to answer a question

 of the square which is all you need to apply Pythagorean's Theorem.

of the square which is all you need to apply Pythagorean's Theorem.

Math Forum: A Proof of the Pythagorean Theorem via kwout

Math Forum: A Proof of the Pythagorean Theorem via kwout

Derivation of Pythagorean's Theorem

Derivation of Pythagorean's Theorem

Pythagorean Theorem as Used in Carpentry. Normally in carpentry points a and

Pythagorean Theorem as Used in Carpentry. Normally in carpentry points a and

Pythagoras theorem 3-D

Pythagoras theorem 3-D

The Pythagorean Theorem is known by anyone who has taken basic geometry.

The Pythagorean Theorem is known by anyone who has taken basic geometry.

The Pythagorean theorem is: a2 + b2=c2

The Pythagorean theorem is: a2 + b2=c2

Now we cut off the little square and cut across the diagonal of the two

Now we cut off the little square and cut across the diagonal of the two

The Pythagorean theorem, or Pythagoras's theorem, relates the lengths of the

The Pythagorean theorem, or Pythagoras's theorem, relates the lengths of the

Area of the bigger square = c2. So, Pythagorean theorem states

Area of the bigger square = c2. So, Pythagorean theorem states

Pythagorean Theorem: Area of the purple square equals the sum of the areas

Pythagorean Theorem: Area of the purple square equals the sum of the areas

The following figure is made up of a large square, small square and four

The following figure is made up of a large square, small square and four

 
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