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MatroZZZ [7]
4 years ago
8

Please answer quickly

Mathematics
1 answer:
nignag [31]4 years ago
5 0

Answer: 115.60185



Step-by-step explanation:

Solution


V=4


3πr3=4


3·π·303≈1.13097×105

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For each of the following, decide if the given series is a geometric series. A. 5+25x+125x2+625x3+3125x4+⋯ : Is this a geometric
Westkost [7]

Answer:

A. Yes.

B. Yes.

C. No.

Step-by-step explanation:

A. Yes. The sum of the series, 5 + 25x + 125x^{2} + 625x^{3} + 3125x^{4} + ........... is the sum of a geometric series.

The first term of the series a_n = 5.

The common ration or the ratio between successive terms (r) = \frac{25x}{5} = 5x (Answer)

B. Yes. The sum of the series, 5x^{7} + 5x^{8} + 5x^{9} + 5x^{10} + ............ is also the sum of a geometric series.

The first term of the series a_n = 5x^{7}.

The common ration or the ratio between successive terms (r) = \frac{5x^{8} }{5x^{7} } = x (Answer)

C. No. The sum of the series, 5 + 5x + 5x^{2} + 5x^{4} + 5x^{8} + ........... is not the sum of a geometric series.

The first term of the series a_n = 5.

(Answer)

5 0
3 years ago
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777dan777 [17]
The equation is...
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iVinArrow [24]
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Butoxors [25]

Answer:

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And we can find this probability using the normal standard table and we got:

P(-1.095

Step-by-step explanation:

Let X the random variable that represent the price of a population, and for this case we know the distribution for X is given by:

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Where \mu=3.46 and \sigma=0.15

And for this case we want to find the following probability:

P(3.43 \leq \bar X \leq 3.49)

And we can use the z score formula given by:

z=\frac{\bar X -\mu}{\frac{\sigma}{\sqrt{n}}}

If we find the z score for the limits we got:

z=\frac{3.43 -3.46}{\frac{0.15}{\sqrt{30}}} = -1.095

z=\frac{3.49 -3.46}{\frac{0.15}{\sqrt{30}}} = 1.095

And we can find this probability using the normal standard table and we got:

P(-1.095

8 0
4 years ago
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grandymaker [24]

Answer:

Yes, because all regular polygons fit this definition.

Choice D is correct

Step-by-step explanation:

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Regular pentagon

Regular octagon

3 0
3 years ago
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