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ipn [44]
3 years ago
9

Which table shows y as a function of x

Mathematics
2 answers:
Korvikt [17]3 years ago
7 0
Where’s the table? If you have to make one, here’s one:

X: 1 3 7 12
Y: 4 4 4 4

Why? Because X doesn’t have the same number repeating.
viktelen [127]3 years ago
4 0

Answer:

there is no table here

Step-by-step explanation:

.....

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Quinn runs 3 miles<br>3 times every week.<br>How many miles<br>does Quinn run in<br>6 weeks?​
drek231 [11]

Answer:

54 miles.

Step-by-step explanation:

Quinn runs 3 miles 3 times every week, which means he runs 9 miles every week.

We can multiply this by 6, which we get 54, so get the amount of miles Quinn runs in 6 weeks.

4 0
3 years ago
Read 2 more answers
If 5 liters of a solution are 20% acid, how much of the solution is acid?
UkoKoshka [18]
Acid is 0.2*5 = 5* 1/5 = 1 liter. We should multiple mass and concentration (in this conditions). So, 1 liter.
5 0
4 years ago
What is the value of p?
guapka [62]

Answer:

61

Step-by-step explanation:

comment if you want a step-by-step

3 0
3 years ago
Solid A is similar to Solid B. If the volume of Solid A is 3,240 meters cubed
irina [24]

Option B: 36 : 1 is the ratio of the surface area of Solid A to Solid B

Explanation:

Given that the Solid A is similar to Solid B.

The volume of Solid A is 3240 m³

The volume of Solid B is 15 m³

We need to find the ratio of the surface area of Solid A to Solid B.

Thus, we have,

\frac{SA \ of \ Solid A}{SA \ of \ Solid B}=\sqrt[3]{\frac{3240}{15}}

Dividing the terms, we get,

\frac{SA \ of \ Solid A}{SA \ of \ Solid B}=\sqrt[3]{\frac{216}{1}}

Taking cube root, we get,

\frac{SA \ of \ Solid A}{SA \ of \ Solid B}=\frac{6}{1}

Squaring the ratios, we get,

\frac{SA \ of \ Solid A}{SA \ of \ Solid B}=(\frac{6}{1})^2

\frac{SA \ of \ Solid A}{SA \ of \ Solid B}=\frac{36}{1}

Thus, the ratio of the surface area of Solid A to Solid B is 36 : 1

Hence, Option B is the correct answer.

8 0
3 years ago
What is the volumein cubic in, of a cylinder with a height of 20in and a base radius of 6in to the nearest tenths place ?
jek_recluse [69]

Answer:

Vc = 2,261.9\ in^3

Step-by-step explanation:

<u>Volume of a Cylinder</u>

The volume of a cylinder of radius r in and a height h can be calculated by:

Vc=\pi\cdot r^2\cdot h

The height of the cylinder is h = 20 in and the base radius is r = 6 in, thus:

Vc=\pi\cdot 6^2\cdot 20

Vc = 2,261.9\ in^3

4 0
3 years ago
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