Math, asked by cristy29, 7 months ago

Easy one ..
I hope everyone able to answer this question....
So,Answer it I am waiting​

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Answers

Answered by Anonymous
15

 \bf \huge {\underline {\underline \red{QuEsTiOn}}}

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 \bf \huge\pink{ \frac{ {5}^{3}  \times  {7}^{2} \times  {22}^{2}  }{ {35}^{2} \times  {22}^{11}  } }

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 \bf \huge {\underline {\underline \red{AnSwEr}}}

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 \bf \implies\frac{ {5}^{3} \times  {7}^{2}  \times  {22}^{13}  }{ {7}^{2}  \times  {5}^{2}  \times  {22}^{11} }

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 \bf \implies \frac{ {5}^{3} \times  {7}^{2}  \times  {22}^{2}  }{ {7}^{2}  \times  {5}^{2} }

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 \bf \implies \frac{ {5}^{3}  \times  {22}^{2} }{ {5}^{2} }

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 \bf \implies5 \times  {22}^{2}

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 \bf \implies5 \times 484

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 \bf \implies2420

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Additionally

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  • Exponent - The power is called exponent.

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  • Radical - The root is called radical.

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  • Laws of Exponent

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  \bf{a}^{0}  = 1

Where a is any non- zero no.

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 \bf {a}^{m}  \times  {a}^{n}  =  {a}^{m + n}

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 \bf {a}^{m}  \div  {a}^{n}  =  {a}^{m - n}

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 \bf( {a}^{m} ) {}^{n}  =  {a}^{m \times n}

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 \bf {(ab)}^{n}  =  {a }^{n}  {b}^{n}

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 \bf (\frac{a}{b} ) {}^{n}  =  \frac{ {a}^{n} }{ {b}^{n} }

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 \bf {a}^{ \frac{m}{n} }  =  \sqrt[n]{ {a}^{m} }

Answered by Anonymous
18

 \huge {\underline {\underline \pink{ƛƝƧƜЄƦ}}}

 \bf \implies\frac{ {5}^{3} \times  {7}^{2}  \times  {22}^{13}  }{ {7}^{2}  \times  {5}^{2}  \times  {22}^{11} }

 \bf \implies \frac{ {5}^{3} \times  {7}^{2}  \times  {22}^{2}  }{ {7}^{2}  \times  {5}^{2} }

 \bf \implies \frac{ {5}^{3}  \times  {22}^{2} }{ {5}^{2} }

 \bf \implies5 \times  {22}^{2}

 \bf \implies5 \times 484

 \bf \implies2420

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