Answer:
The interval for which <em>y</em> is a decreasing function of <em>x</em> is:

Or as an inequality:

Step-by-step explanation:
We are given the equation:

And we want to find the range of values <em>x</em> for which <em>y</em> is a decreasing function of <em>x</em>.
<em>y</em> is decreasing whenever <em>y'</em> is negative. Find <em>y'</em> using the Quotient Rule:

Differentiate:

<em>y</em> is decreasing whenever <em>y'</em> is negative. Thus:

Multiply both sides by <em>x²</em>. This is always positive so we do not need to change the sign:

Factor:

e<em>ˣ</em> is always positive. So:

Adding one to both sides produces:

Therefore, <em>y</em> is a decreasing function of <em>x</em> when <em>x</em> is less than one (and greater than 0).
In interval notation:

Or as an inequality:

Probability always sums up to 1
P(pizza) + P(cheeseburger) + P( chicken sandwich) + P(caesar salad) + P(macaroni and cheese) = 1
let P(caesar salad) be x
0.2 + 0.45 + 0.06 + x + 0.12 = 1
x= 0.17
=4ab/c x 2c/3a
= 8b / 3
hope it helps
Answer:
(- 1, - 3 )
Step-by-step explanation:
Given endpoints (x₁, y₁ ) and (x₂, y₂ ) partitioned in the ratio m : n
Then using the Section formula the coordinates of the point are
(
,
)
Here (x₁, y₁ ) = (- 4, - 9), (x₂, y₂ ) = (1, 1) and m : n = 3 : 2 , then
(
,
)
= (
,
)
= (
,
)
= ( - 1, - 3 )