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Olin [163]
3 years ago
12

Is .584 greater than .58

Mathematics
1 answer:
Kamila [148]3 years ago
8 0
Yes because it would read five hundred eighty four thousandths
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Answer:80%

Step-by-step explanation:

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3 years ago
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PLEASE HELP! What is the value of x in the equation below?
Svetlanka [38]

Answer:

C. 20

Step-by-step explanation:

We have to isolate x.

6(x - 8) = 72

Distribute 6.

6x - 48 = 72

Add 48 to both sides.

6x = 120

Divide both sides by 6.

x = 20

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3 years ago
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2. At the test center giving the exam from the previous problem, the firm needs to plan for proper staffing. Historical data sug
kozerog [31]

Answer:

a) I would use the following distribution fir the amount of applicants arriving in a 20 minute period

P_X(k) = \frac{e^{-1.5} \, * \, 1.5^k}{k!}

b) In a 50 hour period, we will expect to need 0.4679*50 = 23.3948 hours with the extra staff member

Step-by-step explanation:

a) For a total amount of arrivals in a 20 minute period i would use a Poisson distribution with parameter λ = 1.5 (the average). The distribution X is given by this formula

P_X(k) = \frac{e^{-1.5} \, * \, 1.5^k}{k!}

b) For one hour, the average will be 1.5*60/20 = 4.5 applicants. The distribution Y for the amount of applicants in one hour is given by the following formula

P_Y(k) = \frac{e^{-4.5} \, * \, 4.5^k}{k!}

First, we want to find the probability of Y being greater then or equal to 5. We can obtain the probability of the complementary event and substract it from 1. That event is equal to the probability of Y being equal to 0,1,2,3 or 4

P(Y=0) = e^{-4.5}

P(Y=1) = e^{-4.5}* 4.5

P(Y=2) = e^{-4.5} * 4.5²/2 = e^{-4.5} * 10.125

P(Y=3) = e^{-4.5} * 4.5³/6 = e^{-4.5} * 15.1875

P(Y=4) = e^{-4.5} * 4.5⁴/24 = e{-4.5} * 17.08594

Thus,

P(Y < 5) = P(Y=0)+P(Y=1)+P(Y=2)+P(Y=3)+P(Y=4) = e^{-4.5} * (1+4.5+10.125+15.1875+17.08594) = 0.5321

Therefore,

P(Y ≥ 5) = 1-0.5321 = 0.4679

In a 50 hour period, we will expect to need 0.4679*50 = 23.3948 hours with the extra staff member.

5 0
4 years ago
Need help 8387.02 + 744.8
vivado [14]
The answer would be <span>9131.82</span>
5 0
3 years ago
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The weights of a pack of chewing gum for a certain brand have a mean of 47.1 grams and a standard deviation of
frozen [14]

Answer:

54.6 grams

Step-by-step explanation:

https://quizlet.com/530747948/statistics-unit-2-the-normal-distribution-test-review-flash-cards/

5 0
3 years ago
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