QUESTION IMAGE
Question
ty and gajge are both football players who averaged 4 yards per run in yesterday’s football game. the statistics from that game are shown in the table below.
| player name | # of carries | average yards gained per run | longest run (yards) | shortest run (yards) |
|---|---|---|---|---|
| gajge | 10 | 4.0 | 19 | 2 |
which statement best describes the data?
- the lengths of ty’s runs have greater variability because ty had more rushing attempts.
- the lengths of gajge’s runs have greater variability because there is a greater difference between his longest and shortest runs.
- ty’s and gajge’s runs have the same variability because they both average 4.0 yards per carry.
- ty’s and gajge’s runs have the same variability because they both had the same length shortest run.
Step1: Analyze Variability Concept
Variability in data can be assessed by the range (difference between maximum and minimum values) or other measures. Here, we check the range (longest - shortest run) for each player.
For Ty: Range = \( 6 - 2 = 4 \) yards.
For Gajge: Range = \( 19 - 2 = 17 \) yards.
Step2: Evaluate Each Option
- Option 1: Number of carries doesn't directly determine variability. Ty's range is smaller, so this is wrong.
- Option 2: Gajge's range (17) is greater than Ty's (4), so his runs have more variability. This matches the range analysis.
- Option 3: Same average doesn't mean same variability. Gajge's range is larger, so this is wrong.
- Option 4: Same shortest run doesn't mean same variability. Gajge's longest run is much larger, so range differs. This is wrong.
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The lengths of Gajge's runs have greater variability because there is a greater difference between his longest and shortest runs.