0.326 - 0.221 = 0.105 (rounded to the nearest thousandth)
Mean = (0.221 + 0.316 + 0.326 + 0.296 + 0.267 + 0)/6 = 0.258 (rounded to the nearest thousandth)
Find the range and mean of the second player's batting averages
The range = 0.286 - 0.184 = 0.102 (rounded to the nearest thousandth)
Mean = (0.275 + 0.311 + 0.286 + 0.262 + 0.184)/5 = 0.2636 (rounded to the nearest thousandth)
Comparing the two players, the first player has a smaller range, but a lower mean. The second player has a larger range, but a higher mean. This suggests that the first player is more consistent, but the second player has higher potential for a good performance.
Over the past 6 seasons, one baseball player's batting averages were 0.2210.316, 0.3260.296, 0.267 and 0 A second player's batting averages were 0.275.0.3110.286, 0262, and 0.184 What are the range and mean of each player's batting averages? Use your results to compare the players Find the range and mean of the first player's batting averages The range Type an integer or a Round to the nearest thousandth as needed ) The mean is
1 answer