A country's government has devoted considerable funding to missile defense research over the past 20 years. The latest development is the Space-Based Infrared System (SBIRS), which uses satellite imagery to detect and track missiles. The probability that an intruding object (e.g., a missile) will be detected on a flight track by SBIRS is 0.6. Consider a sample of 10 simulated tracks, each with an intruding object. Let x equal the number of these tracks where SBIRS detects the object. Complete parts a through d. a. Give the values of p and n for the binomial distribution. p = .6 (Round to one decimal place as needed.) n = 10 b. Find P(x = 3), the probability that SBIRS will detect the object on exactly 3 tracks. P(x = 3) = (Round to three decimal places as needed.)

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A country's government has devoted considerable funding to missile defense research over the past 20 years. The latest development is the Space-Based Infrared System (SBIRS), which uses satellite imagery to detect and
track missiles. The probability that an intruding object (e.g., a missile) will be detected on a flight track by SBIRS is 0.6. Consider a sample of 10 simulated tracks, each with an intruding object. Let x equal the number of
these tracks where SBIRS detects the object. Complete parts a through d.
a. Give the values of p and n for the binomial distribution.
p =
.6 (Round to one decimal place as needed.)
n =
10
b. Find P(x = 3), the probability that SBIRS will detect the object on exactly 3 tracks.
P(x = 3) =
(Round to three decimal places as needed.)
Transcribed Image Text:A country's government has devoted considerable funding to missile defense research over the past 20 years. The latest development is the Space-Based Infrared System (SBIRS), which uses satellite imagery to detect and track missiles. The probability that an intruding object (e.g., a missile) will be detected on a flight track by SBIRS is 0.6. Consider a sample of 10 simulated tracks, each with an intruding object. Let x equal the number of these tracks where SBIRS detects the object. Complete parts a through d. a. Give the values of p and n for the binomial distribution. p = .6 (Round to one decimal place as needed.) n = 10 b. Find P(x = 3), the probability that SBIRS will detect the object on exactly 3 tracks. P(x = 3) = (Round to three decimal places as needed.)
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