Suppose Ted is creating a football team in a video game that features many NFL players. He decides to identify players who are outliers in a few statistics he has chosen. Currently, he's looking at wide receivers. The game includes the top 100 receivers in 2012 by number of receptions. Ted, however, is more interested in receiving yards, and the table shows the five-number summary of the available players in the game (in yards): Minimum 1st quartile (Q1) Median 3rd quartile (Q3) Maximum 258.0 549.5 743.0 936.5 1964.0 The mean is 787.6 yds with a standard deviation of 311.3 yds. Ted first calculates the interquartile range (IQR). Next, to determine suspected outliers, he calculates Q1 – 1.5 - IQR and Q3 + 1.5 IQR. Specify those results to at least one decimal place. 387 Q1 - 1.5 - IQR= Q3 + 1.5 - IQR = 1517 Incorrect Ted identified the top five receivers available in the game by the number of receiving yards. Player Yards Calvin Johnson 1964 Andre Johnson 1598 Brandon Marshall 1508 Demaryius Thomas 1434 Vincent Jackson 1384

College Algebra
1st Edition
ISBN:9781938168383
Author:Jay Abramson
Publisher:Jay Abramson
Chapter9: Sequences, Probability And Counting Theory
Section9.7: Probability
Problem 55SE: Use the following scenario for the exercises that follow: In the game of Keno, a player starts by...
icon
Related questions
Question
O Attempt 2
1 of 17
Suppose Ted is creating a football team in a video game that features many NFL players. He decides to identify players who
are outliers in a few statistics he has chosen.
Currently, he's looking at wide receivers. The game includes the top 100 receivers in 2012 by number of receptions. Ted,
however, is more interested in receiving yards, and the table shows the five-number summary of the available players in the
game (in yards):
Minimum
1st quartile (Q1)
Median
3rd quartile (Q3)
Maximum
258.0
549.5
743.0
936.5
1964.0
The mean is 787.6 yds with a standard deviation of 311.3 yds.
Ted first calculates the interquartile range (IQR). Next, to determine suspected outliers, he calculates Q1 – 1.5 IQR and
Q3 + 1.5 - IQR. Specify those results to at least one decimal place.
387
Q1 – 1.5 IQR =
Q3+ 1.5 1QR=
1517
Incorrect
Ted identified the top five receivers available in the game by the number of receiving yards.
Player
Yards
Calvin Johnson
1964
Andre Johnson
1598
Brandon Marshall
1508
Demaryius Thomas
1434
Vincent Jackson
1384
Transcribed Image Text:O Attempt 2 1 of 17 Suppose Ted is creating a football team in a video game that features many NFL players. He decides to identify players who are outliers in a few statistics he has chosen. Currently, he's looking at wide receivers. The game includes the top 100 receivers in 2012 by number of receptions. Ted, however, is more interested in receiving yards, and the table shows the five-number summary of the available players in the game (in yards): Minimum 1st quartile (Q1) Median 3rd quartile (Q3) Maximum 258.0 549.5 743.0 936.5 1964.0 The mean is 787.6 yds with a standard deviation of 311.3 yds. Ted first calculates the interquartile range (IQR). Next, to determine suspected outliers, he calculates Q1 – 1.5 IQR and Q3 + 1.5 - IQR. Specify those results to at least one decimal place. 387 Q1 – 1.5 IQR = Q3+ 1.5 1QR= 1517 Incorrect Ted identified the top five receivers available in the game by the number of receiving yards. Player Yards Calvin Johnson 1964 Andre Johnson 1598 Brandon Marshall 1508 Demaryius Thomas 1434 Vincent Jackson 1384
Expert Solution
trending now

Trending now

This is a popular solution!

steps

Step by step

Solved in 2 steps

Blurred answer
Recommended textbooks for you
College Algebra
College Algebra
Algebra
ISBN:
9781938168383
Author:
Jay Abramson
Publisher:
OpenStax
Glencoe Algebra 1, Student Edition, 9780079039897…
Glencoe Algebra 1, Student Edition, 9780079039897…
Algebra
ISBN:
9780079039897
Author:
Carter
Publisher:
McGraw Hill
Big Ideas Math A Bridge To Success Algebra 1: Stu…
Big Ideas Math A Bridge To Success Algebra 1: Stu…
Algebra
ISBN:
9781680331141
Author:
HOUGHTON MIFFLIN HARCOURT
Publisher:
Houghton Mifflin Harcourt