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Shalnov [3]
2 years ago
9

Please answer and explain

Mathematics
1 answer:
andre [41]2 years ago
7 0

Answer:

( -oo, oo )

Step-by-step explanation:

The domain is left and right, since there is so boundary to stop the parabola, the domain is all real numbers / (-oo, oo).

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Which relationships describe angles 1 and 2? <br><br> Select each correct answer.
Svet_ta [14]

Answer:

vertical angle

Step-by-step explanation:

hope this helps a little

4 0
2 years ago
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State the x- and y-intercepts.
Rufina [12.5K]

1. Y-Intercepts are where the graph crosses the y-axis. For a parabola, this occurs once, at (0, -3) in the graph shown.

2. X-Intercepts are where the graph crosses the x-axis. For a parabola, this occurs twice, at (-1, 0) and (3, 0) in the graph shown.

3. A parabola that is positive opens upwards, while a parabola that is negative opens downwards. Therefore, this parabola is positive.

Hope this helps!! :)

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3 years ago
NOTE: Angles not necessarily drawn to scale.<br> X = ____ degrees
Varvara68 [4.7K]

Answer:

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Step-by-step explanation:

GOOD QUESTION BRO

7 0
3 years ago
145+ (-15) + (-188) =<br> O 56<br> 0 -58<br> O 358<br> O 58
mario62 [17]

Q) 145+ (-15) + (-188) = ?

→ 145+ (-15) + (-188)

→ {145 - 15} - 188

→ 130 - 188

→ -58 is the solution.

3 0
2 years ago
Use the discriminant to describe the roots of each equation. Then select the best description. x2 - 6x + 12 = 0 double root real
Alona [7]

Answer:

  imaginary roots

Step-by-step explanation:

For a quadratic in the form ...

  ax^2+bx+c=0

the discriminant is ...

  d=b^2-4ac

You have a=1, b=-6, c=12, so the discriminant is ...

  d = (-6)² -4(1)(12) = 36 -48 = -12

When the discriminant is negative, both roots are complex. When the discriminant is not a perfect square, both roots are irrational. Here, the discriminant is negative and not a perfect square, so the roots are complex with an irrational imaginary part.

The best single descriptor is <em>imaginary root</em>.

_____

The roots are (-b±√d)/(2a) = (6 ± 2i√3)/2 = 3 ± i√3. These roots have a rational real part and an irrational imaginary part. When the number with an imaginary part has a non-zero real part, it is called "complex", rather than "imaginary."

3 0
3 years ago
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