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aleksklad [387]
4 years ago
3

A theater production group is making frames to support wall-like props. Three-foot beams form right triangles with 10-foot beams

to allow them to stand, as shown in the image.
What is x, the angle at which the diagonal beam meets the 10-foot beam at the top of the frame?
16.7°
17.5°
72.5°
73.3°

Mathematics
2 answers:
Elodia [21]4 years ago
8 0

For this case, we can use the following trigonometric relationship:

tan(x) = \frac{C.O}{C.A}

Where,

C.O: opposite leg

AC; adjacent leg

x: angle

Substituting values we have:

tan(x) = \frac{3}{10}

From here, we clear the value of x.

We have then:

x = tan^{-1}(\frac{3}{10})\\x = 16.7

Answer:

the angle at which the diagonal beam meets the 10-foot beam at the top of the frame is:

16.7°

leonid [27]4 years ago
6 0
The answer is 16.7 or answer a                                 
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Answer:

The probability that a student has a college degree or is not married is 0.8308.

Step-by-step explanation:

The information provided is:

Total number of high school seniors (<em>N</em>) = 650.

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Number of seniors who were married, (<em>n</em> (M)) = 310.

Consider the Venn diagram below.

The probability of an event, say E, is the ratio of the favorable outcomes of <em>E</em> to the total number of outcomes of the experiment.

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P(E)=\frac{n(E)}{N}

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N = total number of outcomes of the experiment.

The probability of the union of two events is:

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Compute the probability that a student has a college degree or is not married as follows:

P(C\cup M^{c})=\frac{n(C)+n(M^{c})-n(C\cap M^{c})}{N}

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n (M^{c}) = N - n (M) = 650 - 310 = 340

n (C ∩ M^{c}) = 200

The value of P (C ∪ M^{c}) is:

P(C\cup M^{c})=\frac{n(C)+n(M^{c})-n(C\cap M^{c})}{N}=\frac{400+340-200}{650}=0.83077\approx0.8308

Thus, the probability that a student has a college degree or is not married is 0.8308.

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