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lina2011 [118]
3 years ago
5

c%7B297%7D%7B11%7D%20%7D%20" id="TexFormula1" title=" \sqrt{7 \times \frac{1}{9} } - \sqrt[3]{ \frac{297}{11} } " alt=" \sqrt{7 \times \frac{1}{9} } - \sqrt[3]{ \frac{297}{11} } " align="absmiddle" class="latex-formula">
​
Mathematics
1 answer:
Viefleur [7K]3 years ago
4 0

Step-by-step explanation:

\sqrt{7 \times  \frac{1}{9} }  -  \sqrt[3]{ \frac{297}{11} }  \\  = \sqrt{ \frac{7}{9} }  -  \sqrt[3]{27}  \\   = \frac{ \sqrt{7} }{3}  - 3 \\  =  \frac{ \sqrt{7}  - 9}{3}

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Answer:

B

Step-by-step explanation:

We are given that:

f(x)\geq g(x)

For all real numbers and they form a region R that is bounded from x = 1 to x = 7. A table of values is given.

We are directed to use a Right Riemann Sum to find the area between the curves of f and g.

Since f is greater than g for all values of x, to find the approximate area between f and g, we can first find the area of f and then subtract the area of g from f.

Using a Right Riemann Sum, the area of f is approximately:

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\displaystyle \int_1^7f(x)\, dx\approx3(5)+2(2)+1(8)=27

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Our answer is B.

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