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Bingel [31]
3 years ago
15

Can someone help me please ?

Mathematics
1 answer:
GREYUIT [131]3 years ago
6 0
It's neither arithmetic or geometric 
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Question 6: 17 pts
Burka [1]

Answer:

Parent function is g(x) = x² a quadratic

Step-by-step explanation:

quadratic; translation down 4 units  

-4 means the vertex will move down 4

8 0
3 years ago
position can best be described as a. the speed of an object. b. the location of an object. c. the acceleration of an object. d.
Stella [2.4K]
B. The location of an object
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3 years ago
Ryan says that the sum of any two numbers is rational. Which of the following is a counterexample?
GaryK [48]

Answer: 10 + 0.998987... = 10.998987

Step-by-step explanation:

I just took the test today and this was the answer.

5 0
3 years ago
Use synthetic division to completely factor y=x^3-3x^2-10x+24 by x – 2.A. y = (x – 2)(x – 4)(x – 3)B. y = (x – 2)(x + 4)(x + 3)C
PIT_PIT [208]

Answer:

D. y = (x – 2)(x – 4)(x + 3)

Explanation:

We want to completely factor the polynomial.

First, given the division of polynomials below:

\frac{x^3-3x^2-10x+24}{x-2}

To use synthetic division, set the denominator equal to 0 and solve for x:

x-2=0\implies x=2

Next, write the result(2) outside and the coefficients of the numerator inside as shown below:

Carry down the leading coefficient as shown below:

Multiply the carry down value(1) by the number outside (2) and write the number under the next column:

Repeat until it gets to the last column:

Therefore:

\frac{x^{3}-3x^{2}-10x+24}{x-2}=x^2-x-12

We factor the resulting quadratic expression:

\begin{gathered} x^2-x-12=x^2-4x+3x-12 \\ =x(x-4)+3(x-4) \\ =(x+3)(x-4) \end{gathered}

So, we have:

\begin{gathered} \frac{x^{3}-3x^{2}-10x+24}{x-2}=(x+3)(x-4) \\ \implies x^3-3x^2-10x+24=(x-2)\left(x-4\right)(x+3) \end{gathered}

Thus:

y=(x-2)\left(x-4\right)(x+3)

Option D is correct.

5 0
2 years ago
Select the correct answer from each drop-down menu.
Nana76 [90]

Answer:

she will not have enough money

she will have 23 more to save

Step-by-step explanation:

got it right on plato

4 0
3 years ago
Read 2 more answers
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