Using the pythagorean theorem, how do you solve for the missing side given a = 14 and b = 13?

Answer 1

#c=sqrt(a^2 + b^2) = sqrt(14^2 + 13^2) =sqrt(365) ~= 19.1 #

The Pythagorean Theorem applies to right angle triangles, where the sides #a# and #b# are those which intersect at right angle. The third side, the hypotenuse, is then #c#

In our example we know that #a=14# and #b=13# so we can use the equation to solve for the unknown side #c#:

#c^2 = a^2 + b^2#

or

#c=sqrt(a^2 + b^2) = sqrt(14^2 + 13^2) =sqrt(365) ~= 19.1 #

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Answer 2

To solve for the missing side using the Pythagorean theorem, you can use the formula c^2 = a^2 + b^2. Given that a = 14 and b = 13, you can substitute these values into the formula to find the missing side.

c^2 = 14^2 + 13^2 c^2 = 196 + 169 c^2 = 365

To solve for c, you can take the square root of both sides:

c = √365

Therefore, the missing side is approximately equal to 19.105.

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Answer from HIX Tutor

When evaluating a one-sided limit, you need to be careful when a quantity is approaching zero since its sign is different depending on which way it is approaching zero from. Let us look at some examples.

When evaluating a one-sided limit, you need to be careful when a quantity is approaching zero since its sign is different depending on which way it is approaching zero from. Let us look at some examples.

When evaluating a one-sided limit, you need to be careful when a quantity is approaching zero since its sign is different depending on which way it is approaching zero from. Let us look at some examples.

When evaluating a one-sided limit, you need to be careful when a quantity is approaching zero since its sign is different depending on which way it is approaching zero from. Let us look at some examples.

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