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Varvara68 [4.7K]
3 years ago
15

Yes or no question plz answer i’ll give brainliest

Mathematics
2 answers:
olga nikolaevna [1]3 years ago
7 0

Answer:

Yes

Step-by-step explanation:

it is

Licemer1 [7]3 years ago
3 0

Answer:

  yes

Step-by-step explanation:

Each x-value is only listed once, so the relation <em>is a function</em>.

__

A function maps each x-value to only one y-value. If an x-value is listed more than once (with different y-values), then the relation is not a function.

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Divide ( - 3 z 2 – 15z )÷<br> (<br> z<br> +<br> 5<br> )
blondinia [14]
Factor the numerator to get:

(-3z(z+5))/(z+5)  now you notice that (x+5) cancel out leaving:

-3z
4 0
4 years ago
Tell whether this equation represents a direct variation. If so, identify the constant of variation. 4y=x. Please help I really
Wittaler [7]
This equation is a direct variation. If y increases, x increases. The constant of variation is 4 I think. Hope that helped.
5 0
3 years ago
Which dot plot matches the tally chart below?
zubka84 [21]

Answer:

(A) my friend

Step-by-step explanation:

please mark Brainliest because the other answer above me is wrong

5 0
3 years ago
Read 2 more answers
I just need help cause if I don’t I don’t know what imma do
erica [24]

Answer:

P(32) = \frac{1}{90}

P(Odd) = \frac{1}{2}

P(Multiples\ 5) = \frac{1}{5}

Step-by-step explanation:

Given

Sample Space = 10 to 99

First, we calculate the sample size (n)

n = 99 - 10 + 1

n = 90

Solving (a): P(32)

In 10 to 99, there is only 1 32.

So,

P(32) = \frac{n(32)}{n}

P(32) = \frac{1}{90}

Solving (b): P(Odd)

There are 45 odd numbers between 10 and 99

i.e.

n(Odd)  = 45

So:

P(Odd) = \frac{n(Odd)}{n}

P(Odd) = \frac{45}{90}

P(Odd) = \frac{1}{2}

Solving (c): P(Multiple of 5)

There are 18 multiples of 5 between 10 and 99

i.e

P(Multiples\ 5) = \frac{18}{90}

P(Multiples\ 5) = \frac{1}{5}

4 0
3 years ago
Tell me how to do it and why please
matrenka [14]

Answer:

It would take them 6.667 minutes to paint 50 square feet together.

Step-by-step explanation:

This is a classic work problem.  If Sam can do the job in 10 minutes, she can get done 1/10 of the job in one minute.  If you can do the job in 5 minutes, you can 1/5 of the job done in one minute.  To find out how many minutes it will take them together to paint 25 square feet, set the addition of their times equal to 1/x:

\frac{1}{10}+\frac{1}{5}=\frac{1}{x}

x is how long it takes them to get the job done together.  Find the common denominator and multiply it through be everything to get rid of the denominators altogether.  That denominator is 10x:

(10x)\frac{1}{10}+(10x)\frac{1}{5}=(10x)\frac{1}{x}

Simplify to get the simple equation x + 2x = 10 and 3x = 10.  That means that x=3 1/3.  That's how long it takes to do 25 square feet.  Double that time for 50 square feet.

8 0
4 years ago
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