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Alborosie
3 years ago
14

Complete the steps to find the value of x. 118° 4 (8x + 6)

Mathematics
1 answer:
lesya692 [45]3 years ago
4 0

There are several relationships between angles within parallel lines and a transversal.

<em>The value of x is 7</em>

From the question (see attachment), we have:

\mathbf{(8x + 6)} and 118 are exterior and interior angles of the parallel lines

This means that:

\mathbf{(8x + 6) + 118 = 180}

Collect like terms

\mathbf{(8x + 6) = -118 + 180}

\mathbf{(8x + 6) = 62}

Collect like terms

\mathbf{8x= 62 - 6}

\mathbf{8x= 56}

Divide both sides by 8

\mathbf{x= 7}

Hence, the value of x is 7

Read more about angles in parallel lines at:

brainly.com/question/2279752

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Represent the following expressions as a power of the number a where a≠0 a^2*(a^4)^3÷a^13
ivann1987 [24]

Answer:

  • a

Step-by-step explanation:

  • a^2*(a^4)^3:a^{13}=
  • a^2*(a^4)^3:a^{13}=\\a^{2 + 4*3-13}=
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4 0
3 years ago
Read 2 more answers
x + 3y = 7 x - 3y = 1 Solve the system of equations. A) x = 4, y = 1 B) x = 1, y = 4 C) x = - 2 3 , y = 3 Eliminate D) x = 3, y
Anit [1.1K]

Answer:

x=4, y=1

Step-by-step explanation:

x + 3y = 7

x - 3y = 1

Add the equations together to eliminate y

x + 3y = 7

x - 3y = 1

---------------------

2x = 8

Divide by 2

2x/2 = 8/2

x = 4

Subtract the two equations to eliminate x

x + 3y = 7

-x + 3y = -1

----------------------

   6y = 6

Divide by 6

6y/6 = 6/6

y =1

6 0
3 years ago
If sin θ = cot θ, then, what is the value of cos θ + 2 cos^2 θ + 2 cos^3 θ + cos^ 4 θ ?
VARVARA [1.3K]

Notice that

cos(θ) + 2 cos²(θ) + 2 cos³(θ) + cos⁴(θ)

= cos(θ) (1 + 2 cos(θ) + 2 cos²(θ) + cos³(θ))

= cos(θ) ([1 + cos(θ)] + [cos(θ) + cos²(θ)] + [cos²(θ) + cos³(θ)])

= cos(θ) ([1 + cos(θ)] + [cos(θ) (1 + cos(θ))] + [cos²(θ) (1 + cos(θ))])

= cos(θ) (1 + cos(θ)) (1 + cos(θ) + cos²(θ))

Given that sin(θ) = cot(θ), by definition of cotangent this tells us that

sin(θ) = cos(θ)/sin(θ)   ⇒   cos(θ) = sin²(θ)

and by the Pythagorean identity

cos²(θ) + sin²(θ) = 1

it follows that

cos(θ) = sin²(θ) = 1 - cos²(θ)

Substituting these results into the factorization above gives

cos(θ) (1 + cos(θ)) (1 + cos(θ) + cos²(θ))

= cos(θ) (1 + cos(θ)) (1 + [1 - cos²(θ)] + cos²(θ))

= 2 cos(θ) (1 + cos(θ))

= 2 sin²(θ) (1 + cos(θ))

= 2 (1 - cos²(θ)) (1 + cos(θ))

= 2 (1 + cos(θ) - cos²(θ) - cos³(θ))

= 2 (cos(θ) + cos(θ) - cos³(θ))

= 2 (2 cos(θ) - cos³(θ))

= 2 cos(θ) (2 - cos²(θ))

= 2 cos(θ) (1 + cos(θ))

= 2 (cos(θ) + cos²(θ))

= 2 (1 - cos²(θ) + cos²(θ))

= 2

7 0
3 years ago
Which relation is a function?
docker41 [41]

Answer:

The top right grid

Step-by-step explanation:

The other grids have 2 y outputs for one or more x inputs.

7 0
4 years ago
Will mark bianleast
pav-90 [236]

Answer:

5 units above the dotted line

Step-by-step explanation:

The reason for this is that there is a distance of 5 units between point B and the line so we know that when it is reflected there will be a distance of 5 as well.

4 0
3 years ago
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