The round off errors when measuring the distance that a long jumper has jumped is uniformly distributed between 0 and 5.8 mm. Round values to 4 decimal places when possible. b. The standard deviation is c. The probability that the round a. The mean of this distribution is off error for a jumper's distance is exactly 0.3 is P(x-03)-d. The probability that the round off error for the distance that a long jumper has jumped is between 0 and 5 8 mm is PC1.7 x 5.2)- that the jump's round off error is greater than 1.76 is P(x > 1.76) Find the 81st percentile. e. The probability f P(x > 1.4 x > 0.6) h. Find the mnmum for the upper quartile.

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The round off errors when measuring the distance that a long jumper has jumped is uniformly distributed between 0 and
5.8 mm. Round values to 4 decimal places when possible.
b. The standard deviation is
c. The probability that the round
a. The mean of this distribution is
off error for a jumper's distance is exactly 0.3 is P(x-03)-d. The probability that the round off error for
the distance that a long jumper has jumped is between 0 and 5 8 mm is PC1.7 x 5.2)-
that the jump's round off error is greater than 1.76 is P(x > 1.76)
Find the 81st percentile.
e. The probability
f P(x > 1.4
x > 0.6)
h. Find the mnmum for the upper quartile.
Transcribed Image Text:The round off errors when measuring the distance that a long jumper has jumped is uniformly distributed between 0 and 5.8 mm. Round values to 4 decimal places when possible. b. The standard deviation is c. The probability that the round a. The mean of this distribution is off error for a jumper's distance is exactly 0.3 is P(x-03)-d. The probability that the round off error for the distance that a long jumper has jumped is between 0 and 5 8 mm is PC1.7 x 5.2)- that the jump's round off error is greater than 1.76 is P(x > 1.76) Find the 81st percentile. e. The probability f P(x > 1.4 x > 0.6) h. Find the mnmum for the upper quartile.
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