The song-length of tunes in the Big Hair playlist of a Statistics professor's mp3-player varies from song to song. This variation can be modeled by the Normal distribution, with a mean song-length of µ = 4.3 minutes and a standard deviation of o = 0.65 minutes. Note that a song that has a length of 4.5 minutes is a song that lasts for 4 minutes and 30 seconds. While listening to a song, the professor decides to shuffle the playlist, which means the mp3-player is to randomly pick a song within this particular playlist, and play this next. If using/working with z-values, use three decimals. (a) What is the probability that the next song to be played is between 3.6 and 4.6 minutes long? Answer to four decimals. (b) What proportion of all the songs in this playlist are longer than 5 minutes? Use four decimals in your answer.

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The song-length of tunes in the Big Hair playlist of a
Statistics professor's mp3-player varies from song to
song. This variation can be modeled by the Normal
distribution, with a mean song-length of u = 4.3 minutes
and a standard deviation of o 0.65 minutes. Note that a
song that has a length of 4.5 minutes is a song that lasts
for 4 minutes and 30 seconds.
=
While listening to a song, the professor decides to shuffle
the playlist, which means the mp3-player is to randomly
pick a song within this particular playlist, and play this
next.
If using/working with z-values, use three decimals.
(a) What is the probability that the next song to be played
is between 3.6 and 4.6 minutes long? Answer to four
decimals.
(b) What proportion of all the songs in this playlist are
longer than 5 minutes? Use four decimals in your answer.
(c) 10% of all the songs in this playlist are at most how
long, in minutes? Enter your answer to two decimals, and
keep your answer consistent with how the song length has
been expressed in this problem.
minutes
(d) There are 218 songs in the Big Hair playlist. How many
of these would you expect to be longer than 5 minutes in
length? Use two decimals in your answer.
Transcribed Image Text:The song-length of tunes in the Big Hair playlist of a Statistics professor's mp3-player varies from song to song. This variation can be modeled by the Normal distribution, with a mean song-length of u = 4.3 minutes and a standard deviation of o 0.65 minutes. Note that a song that has a length of 4.5 minutes is a song that lasts for 4 minutes and 30 seconds. = While listening to a song, the professor decides to shuffle the playlist, which means the mp3-player is to randomly pick a song within this particular playlist, and play this next. If using/working with z-values, use three decimals. (a) What is the probability that the next song to be played is between 3.6 and 4.6 minutes long? Answer to four decimals. (b) What proportion of all the songs in this playlist are longer than 5 minutes? Use four decimals in your answer. (c) 10% of all the songs in this playlist are at most how long, in minutes? Enter your answer to two decimals, and keep your answer consistent with how the song length has been expressed in this problem. minutes (d) There are 218 songs in the Big Hair playlist. How many of these would you expect to be longer than 5 minutes in length? Use two decimals in your answer.
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