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lyudmila [28]
4 years ago
15

BRAINLIESTTTTTTTTT!

Mathematics
1 answer:
VARVARA [1.3K]4 years ago
4 0
Summarize categorical data for two categories in two-way frequency tables. Interpret relative frequencies in the context of the data (including joint, marginal, and conditional relative frequencies). Recognize possible associations and trends in the data.
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Which ordered pair is a solution of the equation?
DedPeter [7]

9514 1404 393

Answer:

  B. only (-2, 9)

Step-by-step explanation:

A graph of the equation makes it easy to see that (-2, 9) is a solution and (2, -9) is not.

You can try these values of x in the equation to see what the corresponding y-values are.

  y = -2{-2, 2} +5 = {4, -4} +5 = {9, 1}

Points on the line are (-2, 9) and (2, 1).

(2, -9) is not a solution.

5 0
3 years ago
Brainlyist for the right answer
muminat

Answer:

A and C are the correct answers

Step-by-step explanation:

4 0
3 years ago
Read 2 more answers
Simplify 3(2x - 5). whats the answer?
Irina18 [472]

so to solve this you would distribute the 3 to the (2x-5)

(6x-15)

so the answer is (6x-15)

3 0
4 years ago
Read 2 more answers
Prove the segments joining the midpoint of consecutive sides of an isosceles trapezoid form a rhombus. use the distance formula
riadik2000 [5.3K]
In order to prove this, we have to put the trapezoid to the coordinate system. In the attached photo you can see how it has to be put. The coordinates for the vertices of trapezoid written according to the midpoint principle. By using the distance between two points formula, we can find the coordinates for the vertices of the rhombus. 
D_{x} = \frac{-2b-2a}{2}=-b-a and D_{y}= \frac{2c+0}{2}=c. The coordinates of D is (-b-a, c)
E_{x} = \frac{-2b+2b}{2}=0 and E_{y}= \frac{2c+2c}{2}=2c. The coordinates of E is (0,2c)
Since we have the reflection in this graph, the coordinates of F is (b+a, c)
And the coordinates of G is (0,0).

Using the distance formula, we can find that 
DE= \sqrt{(-b-a)^{2}+ c^{2}}=\sqrt{(b+a)^{2} + c^{2}}
EF= \sqrt{(b+a)^{2} + c^{2} }
GF= \sqrt{(b+a )^{2} + c^{2} }
DG= \sqrt{(b+a)^{2}+ c^{2} 

Since all the sides are equal this completes our proof. Additionally, we can find the distances of EG and DF in order to show that the diagonals of this rhombus are not equal. So that it is not a square, but rhombus. 

6 0
3 years ago
Read 2 more answers
Perform the indicated operations:
Damm [24]

Answer:

A= -40

B= 16

C= 40

D= 50

Step-by-step explanation:

8 0
3 years ago
Read 2 more answers
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