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kow [346]
4 years ago
6

The probability that Roger wins a tennis tournament is 0.75 (event A), and the probability that Stephan wins a golf tournament i

s 0.64 (event B). The probability that both Roger and Stephan win their respective tournaments is 0.48.
Which statement is true?
A. Events A and B are independent because P(A and B) = P(A) P(B).
B. Events A and B are independent because P(A and B) = P(A) + P(B).
C. Events A and B are dependent because P(A and B) = P(A) P(B).
D. Events A and B are dependent because P(A and B) = P(A) + P(B).
E. Events A and B are dependent because P(A and B) P(A) P(B).
Mathematics
1 answer:
Natasha_Volkova [10]4 years ago
6 0
According to the fact than tennis (A) and golf (B) turnaments don't rely on each other, this formula that I have attached can help you to figure it out. 
The right answer is A. Events A and B are independent because P(A and B) = P(A) P(B).

Let: P = probability
 
Let: P(A and B) = joint probability

So, P(A and B) = P(A^B) = P(A) * P(B) = (0.75) * (0.64) = 0.48 

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For a polygon with 10 sides, which equation below represents the sum of the interior angles in the polygon?
Vlad1618 [11]

Answer:

Its Sum And The Is sum Is Sum

5 0
3 years ago
A cola-dispensing machine is set to dispense 8 ounces of cola per cup, with a standard deviation of 1.0 ounce. The manufacturer
pshichka [43]

Answer:

Step-by-step explanation:

Hello!

The variable of interest is X: ounces per cup dispensed by the cola-dispensing machine.

The population mean is known to be μ= 8 ounces and its standard deviation σ= 1.0 ounce. Assuming the variable has a normal distribution.

A sample of 34 cups was taken:

a. You need to calculate the Z-values corresponding to the top 5% of the distribution and the lower 5% of it. This means you have to look for both Z-values that separates two tails of 5% each from the body of the distribution:

The lower value will be:

Z_{o.o5}= -1.648

You reverse the standardization using the formula Z= \frac{X[bar]-Mu}{\frac{Sigma}{\sqrt{n} } } ~N(0;1)

-1.648= \frac{X[bar]-8}{\frac{1}{\sqrt{34} } }

X[bar]= 7.72ounces

The lower control point will be 7.72 ounces.

The upper value will be:

Z_{0.95}= 1.648

1.648= \frac{X[bar]-8}{\frac{1}{\sqrt{34} } }

X[bar]= 8.28ounces

The upper control point will be 8.82 ounces.

b. Now μ= 7.6, considering the control limits of a.

P(7.72≤X[bar]≤8.28)= P(X[bar]≤8.28)- P(X[bar]≤7.72)

P(Z≤(8.28-7.6)/(1/√34))- P(Z≤7.72-7.6)/(1/√34))

P(Z≤7.11)- P(Z≤0.70)= 1 - 0.758= 0.242

There is a 0.242 probability of the sample means being between the control limits, this means that they will be outside the limits with a probability of 1 - 0.242= 0.758, meaning that the probability of the change of population mean being detected is 0.758.

b. For this item μ= 8.7, the control limits do not change:

P(7.72≤X[bar]≤8.28)= P(X[bar]≤8.28)- P(X[bar]≤7.72)

P(Z≤(8.28-8.7)/(1/√34))- P(Z≤7.72-8.7)/(1/√34))

P(Z≤-2.45)- P(Z≤-5.71)=0.007 - 0= 0.007

There is a 0.007 probability of not detecting the mean change, which means that you can detect it with a probability of 0.993.

I hope it helps!

5 0
3 years ago
Read 2 more answers
Does anyone know this?
zzz [600]

Answer:

-3

Step-by-step explanation:

Since x=1, we can simplify the equation to 9+7y=-12.

To find the value of 7y, we first have to find what is missing.

-12-9=-21, so 7y has to be equal to -21. -21/7 equals -3, so y=-3.

7 0
3 years ago
HELP PLZ!!!!!!!!!!!!!!!!!!!!!
Anna35 [415]

Answer:

30

Step-by-step explanation:

9 + 13 = 22

22 + 43 = 65

65 + 55 = 120

120 ÷ 4 = 30

hope this helps

3 0
3 years ago
Which expression is equivalent to the square root of 2^5/18
blsea [12.9K]
1.77777777778 would be the answer you are looking for I think.
6 0
4 years ago
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