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marshall27 [118]
4 years ago
14

Which line fits the data graphed below? A B C None

Mathematics
2 answers:
Over [174]4 years ago
8 0

Answer:

C

Step-by-step explanation:

the line of C follows the dots

avanturin [10]4 years ago
8 0

Answer:

C is most likely the correct answer

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Find all the subsets of each of the following sets. Number 1 is done for you.
mina [271]

Answer:

Step-by-step explanation:

B = { x, y } = { } , { x }, { y }, { x, y }

C = { 1, 2, 8 } = { } , { 1 }, { 2 }, { 8 }, { 1, 2 }, { 1, 8}, { 2, 8}, { 1, 2, 8}

. E = { a } ={ } , { a }

8 0
3 years ago
Read 2 more answers
Helppppppppppppppppp meee​
zhenek [66]

Answer:

Given

Step-by-step explanation:

As I can see, in the question the statement is already given.

3 0
3 years ago
complete the square to rewrite y=x^2-6x+14 in vertex form. then state whether the vertex is a maximum or minimium and give its c
artcher [175]

The vertex form of the Quadratic equation is y =  (x-3)^{2} +5. The vertex is (3, 5), which is a maximum point.

<h3>what is a quadratic equation?</h3>

A quadratic equation is an algebraic equation with the power of its variable 2.

it can be written in standard form which is called vertex form or in the general form.

Analysis:

y = x^{2} -6x +14

y = x^{2} -6x +9 +5

Simplifying this perfect square expression y = x^{2} -6x +9

y  = x^{2} -3x -3x +9

y = x(x-3) -3(x-3) + 5

y = (x-3)(x-3) +5

y = (x-3)^{2} + 5

In conclusion, the Vertex form of the equation is y = (x-3)^{2} + 5

Learn more about quadratic equation: brainly.com/question/1214333

#SPJ1

6 0
2 years ago
PLEASE HELP ME!
Anastasy [175]
Number one would be no because she dosent have enough money if you add everything it comes out to $78.66
7 0
3 years ago
ΔDEF ≅ ΔD'E'F'. Use the picture to answer the question below.
S_A_V [24]

Answer:

1) Translation

2) Rotation

3) Reflection  

Step-by-step explanation:

To make ΔDEF ≅ ΔD'E'F' , we will carry on the following steps:

Step 1: Translate ΔD'E'F' in upward direction, the figure will remain same but it will shift a little in upwards direction.

Step 2 : Rotate ΔD'E'F' about 180°. The figure obtained will be reflection of the original image ΔDEF.

Step 3 : Reflect ΔD'E'F'.

This implies that ΔDEF≅ΔD'E'F'.  

7 0
3 years ago
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