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harkovskaia [24]
3 years ago
5

The slope of a vertical line is _____ the slope of a horizontal line is ______

Mathematics
1 answer:
kiruha [24]3 years ago
4 0

Answer:

The slope of a vertical line is <u>undefined</u>

The slope of a horizontal line is <u>zero</u>

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Heather is saving for retirement and has been doing a lot of research on how much she should put aside each month. The newest ar
tino4ka555 [31]
If Heather puts in 1.36% of her salary into a retirement account and she makes $63,000 in a year, this can be solved by 1.36% x 63000. First convert 1.36% into a decimal. To do this, divide by 100.

1.36/100=0.0136

1.36% x 63000
=0.0136 x 63000
=856.8
Heather would put $856.8 in for the whole year. To find how much per month, divide by 12.

856.8/12=71.<span>4
</span>Rounded to the nearest dollar is $71.

Heather would put $71 into a retirement account each month.
<em>
</em><em>Note: This was solved by multiply the percent and then dividing by 12 months. You could also do this by dividing by 12 months first and then multiplying the percent.</em>


6 0
3 years ago
What is the formula for the following geometric sequence? -5, -10, -20, -40, ... an = -5 · 2n - 1 an = -5 · (-2)n - 1 an = -2 ·
vazorg [7]
-5 * 2^{n-1}
8 0
3 years ago
X<br> 41<br> 40<br> What’s the answer
Nina [5.8K]

Answer:

Papi

Step-by-step explanation:

3 0
3 years ago
Danny has a rectangular rose garden that measures 8m by 12.5m. One bag of fertilizer can cover 16m2 . How many bags will he need
mrs_skeptik [129]

Answer:

we will need 7 bags

Step-by-step explanation:

To solve this problem we first have to calculate the total area of ​​the garden

a = area

b = base = 8m

h = height = 12.5m

a = b * h

we replace with the known values

a = 8m * 12.5m

a = 100m²

Now that we know the total area of ​​the garden and the area occupied by a single bag, we divide the total area by what a bag covers.

100m² / 16m² = 6.25 bags

because we cannot buy a fraction of a bag we will need 7 bags

5 0
4 years ago
Write an expression in factored form to represent the volume in the canister not occupied by the tennis balls.
olya-2409 [2.1K]

Answer:

\implies V=\pi r^2(h-4 r)

Step-by-step explanation:

Volume of the canister LESS the volume of 3 tennis balls:

V=\pi r^2h-3\left(\dfrac43\pi r^3\right)

Expand brackets:

\implies V=\pi r^2h-4\pi r^3

Factor:

\implies V=\pi r^2(h-4 r)

3 0
2 years ago
Read 2 more answers
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