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arsen [322]
3 years ago
12

7. Find the missing length. A. 36 B. 48 C. 49 D. 80 ​

Mathematics
1 answer:
Irina-Kira [14]3 years ago
5 0

Answer:

A. 36

Step-by-step explanation:

100-64= 36

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Please Help! will give brainlest!
zzz [600]

Answer:

\theta  = \frac{\pi}{3} ,  \pi, \frac{5\pi}{ 3}

Step-by-step explanation:

we want to solve the following trigonometric equation:

\displaystyle  - 2 { \sin}^{2}  (\theta )+  \cos( \theta)  + 1 = 0,  \:  \theta \in [0,2\pi)

The first step of solving trigonometric equation is to rewrite the equation in terms of one trigonometric function . With Pythagorean theorem, we know that sin²x=1-cos²x . It will be helpful to rewrite the equation in terms of one trig functions. Therefore, substitute 1-cos²\theta in the place of sin²\theta:

\displaystyle  - 2 (1 -  \cos  ^{2} ) +  \cos( \theta)  + 1 = 0,  \:  \theta \in [0,2\pi)

simplify:

\displaystyle\implies  - 2 (1 -  \cos  ^{2} (\theta) +  \cos( \theta)  + 1 = 0,  \:  \theta \in [0,2\pi)\\\implies- 2  +  \cos  ^{2} (\theta)+  \cos( \theta)  + 1 = 0,  \:  \theta \in [0,2\pi)\\\implies\cos  ^{2} (\theta)+  \cos( \theta)  -1 = 0

Consider cos² \theta\implies x. Thus,

2 {x}^{2}  + x  - 1 = 0

solving the quadratic equation yields:

{x}^{}   =  \frac{1}{2}    \\  x  =  - 1

back-substitute:

\begin{cases}  \cos( \theta)     =  \dfrac{1}{2}    \\    \cos( \theta)   =  - 1  \end{cases}  \theta \in[0,2\pi)

take inverse trig in both sides

\implies \begin{cases}   \theta  =   \dfrac{\pi}{3}   + 2n\pi\\\theta= \frac{5\pi}{3}   +  2n\pi   \\    \theta   =  \pi + 2n\pi\end{cases}  \theta \in[0,2\pi)  \\\\\implies\theta= \frac{\pi}{3}+\dfrac{2n\pi}{3},\theta\in [0,2\pi)\\\text{when n=0}\\ \implies   \theta  = \frac{\pi}{3} \\ \text{when n=1}\\ \theta= \pi\\ \text{when n=2}\\\theta=\frac{5\pi}{ 3}

In conclusion,

\displaystyle\theta  = \frac{\pi}{3} ,  \pi, \frac{5\pi}{ 3}

7 0
2 years ago
Plz do question 8 asap
RideAnS [48]
It's D, hope I helped ;)
8 0
3 years ago
3 out of 4 = ____% ?!
Ainat [17]
<span>3 out of 4 = _75___% </span>
3 0
3 years ago
Point P(5,0) is on the terminal arm of an angle k in standard position.
7nadin3 [17]

The value of the cosine of angle k is 1.

Given a point (x,y) that is a terminal arm of an angle k in standard position, by trigonometric relations we have the following expression for the cosine:

\cos k = \frac{x}{\sqrt{x^{2}+y^{2}}} (1)

Where:

  • k - Angle measure, in sexagesimal degrees.
  • x - Horizontal position of the point of the terminal arm, no unit.
  • y - Vertical position of the point of the terminal arm, no unit.

If we know that x = 5 and y = 0, then the cosine of the angle k is:

\cos k = \frac{5}{\sqrt{5^{2}+0^{2}}}

\cos k = 1

The value of the cosine of angle k is 1.

To learn more on trigonometric relations, we kindly invite to check this verified question: brainly.com/question/6904750

5 0
3 years ago
Find the equation of the linear function represented by the table below in slope intercept form
7nadin3 [17]

Answer:

the slope is "1"

the y-intercept is "5"

y = x + 5

Step-by-step explanation:

In order to find the slope, we use the slope formula with any pair of points, for example: (1, 6) and (3, 8):

slope = (y2-y1) / (x2 - x1)

in our case:

slope = (8 - 6) / (3 - 1) = 2/2 = 1

then the slope is "1".

Now we write the general "slope-intercept" equation of a line using the slope we found:

y = m x + b

y = 1 x + b

and now use one of the points (for example (3, 8) to find the intercept "b":

(8) = 1 (3) + b

8 - 3 = b

b = 5 (y intercept)

Then the equation of the line can be written as:

y = x + 5

5 0
4 years ago
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