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Maslowich
3 years ago
14

Simplify. 62+32 9 18 45 81

Mathematics
2 answers:
Ksju [112]3 years ago
6 0

Answer:

I believe it would be D. 81

tresset_1 [31]3 years ago
6 0

<em>Answer:</em>

<em>The correct answer is- D. 45</em>

<em></em>

<em></em>

<em>Step-by-step explanation:</em>

<em>I took the test on k12 and it said this was the correct, also pls rate and thank!:)</em>

<em />

<em>Hope this helped!!:)</em>

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Since a cube is l x w x h, find the length of one side first:

∛8,000 = 20

The length of one side is 20 feet. This can represented as "s".

To find the area of one of the faces, use s²:

20²   or   20 x 20 = 400

The area of one face is 400 ft²!

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If 8 pizzas cost $72, how much will 14 pizzas cost
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Step-by-step explanation:

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A car travels 26 1/2 miles in 45 minutes what is the car rate of speed in miles per hour​
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7. There are 1000 different components in the system that your department has just designed. The objective is that for each of t
tatyana61 [14]

Answer:

The maximum probability for each of the components in a system to fail, for you to still achieve your objective, is 0.008992

Step-by-step explanation:

- There are 1,000 different components in each system.

- The Objective:

Each system should have a 0.999 probability of functioning properly. In other words, your department (or you) expects that each system will have a high probability of functioning properly, hence the closeness of 0.999 to 1.

- Each system is such that at most 8 components out of 1,000 can be bad, for it to still function.

- Question:

What must be the maximum probability for each component in a system to fail, for the system to still have a 0.999 probability of functioning properly?

ANSWER:

When the question says maximum, you need to assume that for each system, 8 components are actually bad!

1000 - 8 = 992

So with 992 components (at least or minimum) functioning, a system will still function.

Next Step:

Since the objective (the expected probability) for a system to function is 0.999, the probability of each of the minimum 992 components to function (which is same as the maximum probability for each of the 1,000 components to function) is

992/1000 × 0.999    

=0.992 × 0.999

=0.991008

Now, remember that the question says fail, not succeed. So, if the figure above is the maximum success rate for each of the 1,000 component parts (same as the success rate for each of the minimum of 992 component parts), then the failure rate or probability is (1 - 0.991008 = 0.008992).

FINAL ANSWER:

The maximum probability for each of the components in a system to fail, for you to still achieve your objective, is 0.008992

7 0
3 years ago
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