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Ivenika [448]
3 years ago
10

In the following experiment, determine whether or not the probabilities are binomial probabilities. If they are, identify the va

lues for n, p, and q. A die is rolled 30 times. What is the probability of getting x even numbers
Mathematics
2 answers:
Amanda [17]3 years ago
7 0

Answer:

Step-by-step explanation:

This is a binomial probability experiment. Each trial is independent of one another, ie each roll is independent. The probability of getting an even number is 3/6 = 1/2 = 0.5 and that probability does not change from roll to roll. Furthermore, the value of n is fixed and not infinitely large. Lastly, each trial outcome comes down to two choices: either you get an even number, or you don't. So we've met the requirements of a binomial probability distribution.

The values of n, p and q are:

n = 30 = sample size

p = 0.5 = probability of getting an even number

q = 0.5 = probability of not getting an even number.

VashaNatasha [74]3 years ago
4 0

This is a binomial probability experiment. Each trial is independent of one another, ie each roll is independent. The probability of getting an even number is 3/6 = 1/2 = 0.5 and that probability does not change from roll to roll. Furthermore, the value of n is fixed and not infinitely large. Lastly, each trial outcome comes down to two choices: either you get an even number, or you don't. So we've met the requirements of a binomial probability distribution.

The values of n, p and q are:

  • n = 30 = sample size
  • p = 0.5 = probability of getting an even number
  • q = 0.5 = probability of not getting an even number.

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Answer:

\huge{ \boxed{ \sf{ \frac{4}{3} }}}

Step-by-step explanation:

\star{ \sf{ \: Let \: the \: points \: be \: A \: and \: B}}

\star{ \sf{ \: Let \: a(2,-1)  \: be \: (x1 \:, y1) \: and \: b (5,3)  \: be \: (x2 \:, y2)}}

\underline{ \sf{Finding \: the \: slope \: of \: the \: line}}

\boxed{ \sf{Slope =  \frac{y2 - y1}{x2 - x1} }}

\mapsto{ \sf{Slope =  \frac{3 - ( - 1)}{5 - 2} }}

\mapsto{ \sf{Slope =  \frac{3 + 1}{5 - 2}}}

\mapsto{ \sf{Slope =  \frac{4}{3} }}

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Best regards! :D

~\text{TheAnimeGirl}

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