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nordsb [41]
3 years ago
13

George purchased a beach ball when the ball is completely filled with air it has a diameter of 12 inches which is closest to the

volume of George's beach ball
Mathematics
1 answer:
MArishka [77]3 years ago
3 0

Answer:

The volume of George's beach ball is 904.32 cubic inches.

Step-by-step explanation:

We are given the following in the question:

Diameter of beach  ball,d = 12 inches.

Radius of beach ball =

r = \dfrac{d}{2} = \dfrac{12}{2} = 6\text{ inches}

Volume of beach ball = Volume of sphere =

V = \dfrac{4}{3}\pi r^3

Putting values, we get,

V = \dfrac{4}{3}\times 3.14\times (6)^3\\\\V = 904.32\text{ cubic inches.}

Thus, the volume of George's beach ball is 904.32 cubic inches.

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There are 45 carpenters in a crew. 18 of the carpenters have children. What is the ratio of the number of carpenters to the numb
aev [14]
<h3>Answer is  5:3</h3>

==========================================================

Explanation:

There are 45 carpenters total. 18 have kids, so 45-18 = 27 do not have kids.

The ratio of the total to the number who don't have kids is 45:27. We write the numbers in the exact order mentioned. Divide both parts of that ratio by the GCF 9 to get the final answer of 5:3

This says that for every 5 carpenters total, there are 3 who don't have kids.

5 0
2 years ago
What is the supplement of 154°?
saw5 [17]

Answer:

Have u tried to look it up

Step-by-step explanation:

3 0
3 years ago
Which numbers make the comparison true? 29,651&lt;
Aleonysh [2.5K]
Charlidamelio is overrated
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3 years ago
(8.218+9.93)+(17.782+0.07)
Licemer1 [7]
First, using the order of operations(PEMDAS), you would solve what is inside the parenthesis. 
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(</span>18.148) + (17.852)
18.148 + 17.852

Now, all you would have to do is add the two sums. 
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The answer would be 36. 

I hope this helps!

5 0
3 years ago
Find all possible values of each expression. Suppose 3
Tomtit [17]

The inequality that describes the possible values of the expression is:

0 < \frac{b}{3a} - \frac{a}{3b} < \frac{9}{60}

<h3>What is the lower bound of values of the expression?</h3>

The expression is given by:

\frac{b}{3a} - \frac{a}{3b}

To find the lower bound, we try to see when the expression is negative, hence:

\frac{b}{3a} - \frac{a}{3b} < 0

\frac{b}{3a} < \frac{a}{3b}

Applying cross multiplication and simplifying the 3's, we have that:

b^2 < a^2

From the bounds given, this expression will never be true, at most they can be equal, when:

a = b = 4.

Hence the lower bound of values of the expression is of 0.

<h3>What is the upper bound of values of the expression?</h3>

The expression is a subtraction, hence we want to maximize the first term and minimize the second.

Considering that the first term is direct proportional to b and inverse to a, and the second vice versa, we want to:

  • Maximize b, hence b = 5.
  • Minimize a, hence a = 4.

Then:

\frac{b}{3a} - \frac{a}{3b} = \frac{5}{12} - \frac{4}{15} = \frac{25 - 16}{60} = \frac{9}{60}

Hence the bounds are:

0 < \frac{b}{3a} - \frac{a}{3b} < \frac{9}{60}

More can be learned about values of expressions at brainly.com/question/625174

#SPJ1

4 0
2 years ago
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