Today, the waves are crashing onto the beach every 5.8 seconds. The times from when a person arrives at the shoreline until a crashing wave is observed follows a Uniform distribution from 0 to 5.8 seconds. Round to 4 decimal places where possible. a. The mean of this distribution is 2.9 b. The standard deviation is 1.6743/ c. The probability that wave will crash onto the beach exactly 3.4 seconds after the person arrives is P(x = 3.4) = 0 d. The probability that the wave will crash onto the beach between 0.4 and 2.4 seconds after the person arrives is P(0.4 < x < 2.4) = 0.3448 e. The probability that it will take longer than 4.16 seconds for the wave to crash onto the beach after the person arrives is P(x > 4.16) = %3D f. Find the maximum for the lower quartile. seconds. Question Help: D Video 1 D Video 2 B Written Example 1 Message instructor Submit Question Jump to Answer

MATLAB: An Introduction with Applications
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ISBN:9781119256830
Author:Amos Gilat
Publisher:Amos Gilat
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I need part E and F and can you guys double check to make sure it’s accurate I get a lot of incorrect answers from you guys alot
Today, the waves are crashing onto the beach every 5.8 seconds. The times from when a person arrives at
the shoreline until a crashing wave is observed follows a Uniform distribution from 0 to 5.8 seconds. Round
to 4 decimal places where possible.
a. The mean of this distribution is 2.9
b. The standard deviation is 1.6743
c. The probability that wave will crash onto the beach exactly 3.4 seconds after the person arrives is
P(x = 3.4) = 0
d. The probability that the wave will crash onto the beach between 0.4 and 2.4 seconds after the
person arrives is P(0.4 < x < 2.4) = 0.3448/
e. The probability that it will take longer than 4.16 seconds for the wave to crash onto the beach after
the person arrives is P(x> 4.16) =
f. Find the maximum for the lower quartile.
seconds.
Question Help: D Video 1 D Video 2 e Written Example 1 O Message instructor
Submit Question
Jump to Answer
20
888
DII
F3
F4
FG
F6
F7
%23
24
2
3
4
6
7
80
10
T
Y
U
F
H.
K
SI
Transcribed Image Text:Today, the waves are crashing onto the beach every 5.8 seconds. The times from when a person arrives at the shoreline until a crashing wave is observed follows a Uniform distribution from 0 to 5.8 seconds. Round to 4 decimal places where possible. a. The mean of this distribution is 2.9 b. The standard deviation is 1.6743 c. The probability that wave will crash onto the beach exactly 3.4 seconds after the person arrives is P(x = 3.4) = 0 d. The probability that the wave will crash onto the beach between 0.4 and 2.4 seconds after the person arrives is P(0.4 < x < 2.4) = 0.3448/ e. The probability that it will take longer than 4.16 seconds for the wave to crash onto the beach after the person arrives is P(x> 4.16) = f. Find the maximum for the lower quartile. seconds. Question Help: D Video 1 D Video 2 e Written Example 1 O Message instructor Submit Question Jump to Answer 20 888 DII F3 F4 FG F6 F7 %23 24 2 3 4 6 7 80 10 T Y U F H. K SI
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