Assume that a procedure yields a binomial distribution with a trial repeated n = 5 times. Use some form of technology to find the probability distribution given the probability p = 0.317 of success on a single trial. (Report answers accurate to 4 decimal places.) k 0 1 2 3 P(X = k)

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Assume that a procedure yields a binomial distribution with a trial repeated \( n = 5 \) times. Use some form of technology to find the probability distribution given the probability \( p = 0.317 \) of success on a single trial.

(Report answers accurate to 4 decimal places.)

| \( k \) | \( P(X = k) \) |
|---------|----------------|
| 0       |                |
| 1       |                |
| 2       |                |
| 3       |                |
| 4       |                |
| 5       |                |

This table is used to calculate the probability \( P(X = k) \) for each possible value of \( k \) (from 0 to 5), where \( k \) is the number of successful trials.
Transcribed Image Text:Assume that a procedure yields a binomial distribution with a trial repeated \( n = 5 \) times. Use some form of technology to find the probability distribution given the probability \( p = 0.317 \) of success on a single trial. (Report answers accurate to 4 decimal places.) | \( k \) | \( P(X = k) \) | |---------|----------------| | 0 | | | 1 | | | 2 | | | 3 | | | 4 | | | 5 | | This table is used to calculate the probability \( P(X = k) \) for each possible value of \( k \) (from 0 to 5), where \( k \) is the number of successful trials.
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