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Leya [2.2K]
3 years ago
15

Solve for x ln 5 + ln x + 3

Mathematics
2 answers:
Leno4ka [110]3 years ago
6 0
Ln(5) + ln(x) = 3
ln(x) = -1.609...+3
ln(x) = 1.39056209
Now, solve the logarithm.
Remember that ln = log base e.
e^(ln(x)) = e^1.39056209
x = e^1.39056209
x = 4.017107-ish

Hope that helps!

olchik [2.2K]3 years ago
5 0
4 is the correct answer i believe! :) sorry if wrong.
please put brainliest!
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If we inscribe a circle such that it is touching all six corners of a regular hexagon of side 10 inches, what is the area of the
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Answer:

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Step-by-step explanation:

<h3>Area of the Inscribed Hexagon</h3>

Refer to the first diagram attached. This inscribed regular hexagon can be split into six equilateral triangles. The length of each side of these triangle will be 10 inches (same as the length of each side of the regular hexagon.)

Refer to the second attachment for one of these equilateral triangles.

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The area (in square inches) of this equilateral triangle will be:

\begin{aligned}&\frac{1}{2} \times \text{Base} \times\text{Height} \\ &= \frac{1}{2} \times 10 \times 5\sqrt{3}= 25\sqrt{3} \end{aligned}.

Note that the inscribed hexagon in this question is made up of six equilateral triangles like this one. Therefore, the area (in square inches) of this hexagon will be:

\displaystyle 6 \times 25\sqrt{3} = 150\sqrt{3}.

<h3>Area of of the circle that is not covered</h3>

Refer to the first diagram. The length of each side of these equilateral triangles is the same as the radius of the circle. Since the length of one such side is 10 inches, the radius of this circle will also be 10 inches.

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The area (in square inches) of the circle that the hexagon did not cover would be:

\begin{aligned}&\text{Area of circle} - \text{Area of hexagon} \\ &= 100\pi - 150\sqrt{3}\end{aligned}.

3 0
3 years ago
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