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yarga [219]
3 years ago
6

Can anyone please help me under this and what I'm supposed to do. Thank you in advance

Mathematics
1 answer:
pav-90 [236]3 years ago
8 0
Answer:

n = 31

Explanation:

Solve the equation by rewriting in exponential form using the definition of logarithm and simplifying. In other words, solve for n.
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Answer:

f( \frac{3}{ {x}^{2} - 16 } ) =  ({\frac{3}{ {x}^{2} - 16 }})^{2}  - 7(\frac{3}{ {x}^{2} - 16 }) + 12 \\  =  \frac{9}{ {x}^{4} - 32 {x}^{2}  + 256 }  -  \frac{21}{ {x}^{2}  - 16}  + 12

4 0
3 years ago
Suppose the sediment density (g/cm) of a randomly selected specimen from a certain region is normally distributed with mean 2.65
erma4kov [3.2K]

Answer:

Probability that the sample average is at most 3.00 = 0.98030

Probability that the sample average is between 2.65 and 3.00 = 0.4803

Step-by-step explanation:

We are given that the sediment density (g/cm) of a randomly selected specimen from a certain region is normally distributed with mean 2.65 and standard deviation 0.85.

Also, a random sample of 25 specimens is selected.

Let X bar = Sample average sediment density

The z score probability distribution for sample average is given by;

               Z = \frac{Xbar-\mu}{\frac{\sigma}{\sqrt{n} } } ~ N(0,1)

where, \mu = population mean = 2.65

           \sigma  = standard deviation = 0.85

            n = sample size = 25

(a) Probability that the sample average sediment density is at most 3.00 is given by = P( X bar <= 3.00)

    P(X bar <= 3) = P( \frac{Xbar-\mu}{\frac{\sigma}{\sqrt{n} } } <= \frac{3-2.65}{\frac{0.85}{\sqrt{25} } } ) = P(Z <= 2.06) = 0.98030

(b) Probability that sample average sediment density is between 2.65 and 3.00 is given by = P(2.65 < X bar < 3.00) = P(X bar < 3) - P(X bar <= 2.65)

P(X bar < 3) = P( \frac{Xbar-\mu}{\frac{\sigma}{\sqrt{n} } } < \frac{3-2.65}{\frac{0.85}{\sqrt{25} } } ) = P(Z < 2.06) = 0.98030

 P(X bar <= 2.65) = P( \frac{Xbar-\mu}{\frac{\sigma}{\sqrt{n} } } <= \frac{2.65-2.65}{\frac{0.85}{\sqrt{25} } } ) = P(Z <= 0) = 0.5

Therefore, P(2.65 < X bar < 3)  = 0.98030 - 0.5 = 0.4803 .

                                                                             

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4 years ago
What is the probability that out of 75 babies born, at least 37 will be girls?
docker41 [41]

Answer:

49.3%

Step-by-step explanation:

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3 0
3 years ago
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Drupady [299]

Divide both sides by 2.

<span><span><span>‌<span><span>2<span>(<span>|<span>x+5</span>|</span>)</span></span>2</span></span>‌</span>=<span><span>‌<span>162
</span></span>‌</span></span><span><span>|<span>x+5</span>|</span>=8

</span>Solve Absolute Value.

<span><span>|<span>x+5</span>|</span>=8

</span>We know either<span><span>x+5</span>=8</span> or <span><span>x+5</span>=<span>−8

</span></span><span><span>x+5</span>=8 </span>

<span><span><span>x+5</span>−5</span>=<span>8−5</span></span>(Subtract 5 from both sides)

<span>x=3</span><span><span>

</span></span>Answer:<span><span>x=<span><span><span><span>3‌</span>‌ </span></span></span></span></span>
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