Answer:
13.2
Step-by-step explanation:
Answer:
-4
Step-by-step explanation:
This looks like point-slope form, which I find personally hideous. Let's change it to slope-intercept form to ease my conscience. (remember that slope-intercept form is y=mx+b, where m=slope and b=y-intercept!)
y - 5 = -4(x-8)
y - 5 = -4x + 32
y = -4x + 37
It's in slope-intercept form now! And -4 looks to be our m.
<u>So the slope is -4.</u>
Answer:
3003 ways
Step-by-step explanation:
You can basically choose 6 games from 14 games in total. This is essential a combination problem. We want the number of ways to choose 6 things from 14 things. The general formula for combinations is:

Which tells us the number of ways to choose "r" things from a total of "n" things.
The factorial notation is:
n! = n * (n-1) * (n-2) * ....
Example: 3! = 3 * 2 * 1
Now, we know from the problem,
n = 14
r = 6
So, substituting, we get:

You can choose in 3003 ways
Answer:
Step-by-step explanation:
Answer:
<h2>

</h2>
Step-by-step explanation:
According to the question,
∝
.......(1)
∝
.......(2)
From equation 1,2 let constant of proportionality be
respectively.
⇒
.......(3)
⇒
.......(4)
From the above equations putting 4 into 3,

Let the new constant to the above equation be
,

Given,if x=1, when z=4

⇒
Now if x=27, then z=?

⇒
⇒
