2. DETAILS DEVORESTAT9 4.1.002.MI. Suppose the reaction temperature X (in °C) in a certain chemical process has a uniform distribution with A = -6 and B = 6. (a) Compute P(X < 0). (b) Compute P(-3 < X < 3). (c) Compute P(-3 ≤ x ≤ 5). (Round your answer to two decimal places.) (d) For k satisfying -6 < k < k + 4 < 6, compute P(k < X < k + 4). (Round your answer to two decimal places.) 4

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DETAILS
DEVORESTAT9 4.1.002.MI.
Suppose the reaction temperature X (in °C) in a certain chemical process has a uniform distribution with A = -6 and B = 6.
(a) Compute P(X < 0).
(b) Compute P(-3 < X < 3).
(c) Compute P(-3 < X < 5). (Round your answer to two decimal places.)
(d) For k satisfying -6 < k < k + 4 < 6, compute P(k < X < k + 4). (Round your answer to two decimal places.)
DETAILS
DEVORESTAT9 4.2.011.MI.
Let X denote the amount of time a book on two-hour reserve is actually checked out, and suppose the cdf is the following.
0
1
1
F(x) =
2
16
0 ≤X < 4
4 SX
Use the cdf to obtain the following. (If necessary, round your answer to four decimal places.)
Transcribed Image Text:2. 3. DETAILS DEVORESTAT9 4.1.002.MI. Suppose the reaction temperature X (in °C) in a certain chemical process has a uniform distribution with A = -6 and B = 6. (a) Compute P(X < 0). (b) Compute P(-3 < X < 3). (c) Compute P(-3 < X < 5). (Round your answer to two decimal places.) (d) For k satisfying -6 < k < k + 4 < 6, compute P(k < X < k + 4). (Round your answer to two decimal places.) DETAILS DEVORESTAT9 4.2.011.MI. Let X denote the amount of time a book on two-hour reserve is actually checked out, and suppose the cdf is the following. 0 1 1 F(x) = 2 16 0 ≤X < 4 4 SX Use the cdf to obtain the following. (If necessary, round your answer to four decimal places.)
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