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Sonbull [250]
3 years ago
5

87. What is the volume of the rectangular prism? Use the formula V = lwh

Mathematics
1 answer:
nikdorinn [45]3 years ago
7 0

The volume of the rectangular prism is 20.7 inches

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Jack is buying a new stereo system for his car he sets up a layaway plan. $75 down and $10 each week. Write an equation using fu
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S=75+10x is the correct answer
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3 years ago
What is the following number in scientific notation?<br><br> 56.71
Lubov Fominskaja [6]
Your answer is 5.671 x 10 to the first power. I dont know how to write to a power on here

6 0
3 years ago
Which expressions are equivalent?
koban [17]

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The answer should be A

Step-by-step explanation:

Because 1/5k - 2/3j would be -2/3 j with 1/5 k missing which would mean it's the same as if you added it on instead of removing it

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3 years ago
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The specifications for manufacturing a steel rod stipulate that the length must be 8.225 ± 0.125 inches. The Minimum allowable l
zmey [24]

Answer:

Minimum - 8.1 inches

Maximum - 8.35 inches

Step-by-step explanation:

The specifications for manufacturing a steel rod stipulate that the length must be 8.225 ± 0.125 inches.

This means that the minimum length must not be 0.125 inches less than 8.225 inches and the maximum length must not be 0.125 inches greater than 8.225 inches.

The minimum length is therefore:

8.225 - 0.125 = 8.1 inches

The maximum length is therefore:

8.225 + 0.125 = 8.35 inches

6 0
3 years ago
A 125-mL container of amoxicillin contains 600 mg/5 mL. How many milliliters would be used to administer 400 mg of amoxicillin?
Dovator [93]

Answer:

3.33 milliliters.

Step-by-step explanation:

We have been given that a 125-mL container of amoxicillin contains 600 mg/5 mL.

First of all, we will find amount of mg's of amoxicillin per ml as:

\text{Concentration of amoxicillin per ml}=\frac{\text{600 mg}}{\text{5 ml}}

\text{Concentration of amoxicillin per ml}=\frac{\text{120 mg}}{\text{ml}}

Now, we will use proportions as:

\frac{\text{1 ml}}{\text{120 mg}}=\frac{x}{\text{400 mg}}

\frac{\text{1 ml}}{\text{120 mg}}\times \text{400 mg}=\frac{x}{\text{400 mg}}\times \text{400 mg}

\frac{\text{400 ml}}{120 }=x

\text{3.33 ml}=x

Therefore, 3.33 milliliters would be used to administer 400 mg of amoxicillin.

5 0
4 years ago
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