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hichkok12 [17]
3 years ago
10

Find the number missing from the following equivalent fractions:4/11= ?/66

Mathematics
2 answers:
lisabon 2012 [21]3 years ago
6 0

<em>The</em><em> </em><em>missing</em><em> </em><em>number</em><em> </em><em>is</em><em> </em><em>2</em><em>4</em><em>.</em>

<em>pl</em><em>ease</em><em> </em><em>see</em><em> the</em><em> attached</em><em> picture</em><em> for</em><em> full</em><em> solution</em>

<em>H</em><em>ope</em><em> </em><em>this</em><em> </em><em>helps</em><em>.</em><em>.</em>

<em>Good</em><em> luck</em><em> on</em><em> your</em><em> assignment</em><em>.</em><em>.</em>

nekit [7.7K]3 years ago
5 0

Answer:

24

Step-by-step explanation:

whatever you add or divide to the numerator, you do to the denominator. the same occurs the other way round,too.

If 11 is multiplied by 6 to give 66.

then, 4 should also be multiplied by 6, for the equivalent fraction. This gives you 24.

Hope this helps. Good Luck

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The correct answer is:   " \frac{33,611}{1,000} " .

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<u>Step-by-step explanation</u>:

Based on the assumption that the "1" repeats infinitely; in the given value:

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Note that the "611" ; after the decimal point;  this goes to the "thousandths";  

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As such; we rewrite the number as:

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  →  " \frac{(33.611)*(1000)}{(1)*(1000)} " ;

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  →  " \frac{33611}{1000} " ;  →  which cannot be reduced any further.

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Can someone please take the time out of their day and help me with this question
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f(x) = 3 cos(x) 0 ≤ x ≤ 3π/4 evaluate the Riemann sum with n = 6, taking the sample points to be left endpoints. (Round your ans
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Answer:

\int_{0}^{\frac{3 \pi}{4}}3 \cos{\left(x \right)}\ dx\approx 3.099558

Step-by-step explanation:

We want to find the Riemann sum for \int_{0}^{\frac{3 \pi}{4}}3 \cos{\left(x \right)}\ dx with n = 6, using left endpoints.

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\int_{a}^{b}f(x)dx\approx\Delta{x}\left(f(x_0)+f(x_1)+2f(x_2)+...+f(x_{n-2})+f(x_{n-1})\right)

where \Delta{x}=\frac{b-a}{n}.

Step 1: Find \Delta{x}

We have that a=0, b=\frac{3\pi }{4}, n=6

Therefore, \Delta{x}=\frac{\frac{3 \pi}{4}-0}{6}=\frac{\pi}{8}

Step 2: Divide the interval \left[0,\frac{3 \pi}{4}\right] into n = 6 sub-intervals of length \Delta{x}=\frac{\pi}{8}

a=\left[0, \frac{\pi}{8}\right], \left[\frac{\pi}{8}, \frac{\pi}{4}\right], \left[\frac{\pi}{4}, \frac{3 \pi}{8}\right], \left[\frac{3 \pi}{8}, \frac{\pi}{2}\right], \left[\frac{\pi}{2}, \frac{5 \pi}{8}\right], \left[\frac{5 \pi}{8}, \frac{3 \pi}{4}\right]=b

Step 3: Evaluate the function at the left endpoints

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Step 4: Apply the Left Riemann Sum formula

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