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find the missing side length (include units). round to the nearest hund…

Question

find the missing side length (include units). round to the nearest hundredth, if necessary.
find the missing side length (include units). round to the nearest hundredth, if necessary.

Explanation:

Step1: Apply Pythagorean theorem

For a right - triangle with sides \(a\), \(b\) and hypotenuse \(c\), \(a^{2}+b^{2}=c^{2}\). In the first triangle, if \(a = 20\) mi, \(c=29\) mi, and we want to find \(b=x\). Then \(x=\sqrt{c^{2}-a^{2}}\).
\[x=\sqrt{29^{2}-20^{2}}=\sqrt{(29 + 20)(29 - 20)}=\sqrt{49\times9}=\sqrt{441}=21\text{ mi}\]

Step2: Apply Pythagorean theorem to the second triangle

In the second triangle, if \(a=x\), \(b = 30\) m, \(c = 34\) m. Then \(x=\sqrt{c^{2}-b^{2}}\).
\[x=\sqrt{34^{2}-30^{2}}=\sqrt{(34 + 30)(34 - 30)}=\sqrt{64\times4}=\sqrt{256}=16\text{ m}\]

Answer:

The first side length is \(21\) mi and the second side length is \(16\) m.