Given are five observations for two variables, a and y. 2 7 11 14 18 19 10 22 20 Develop the 90% confidence and prediction intervals when a = 6. 5.3099 (to 4 decimals) t-value 2.353 (to 3 decimals)...


Given are five observations for two variables, X and Y.


Develop the 90% confidence and prediction intervals when x = 6.


Given are five observations for two variables, a and y.<br>2<br>7<br>11<br>14<br>18<br>19<br>10<br>22<br>20<br>Develop the 90% confidence and prediction intervals when a = 6.<br>5.3099<br>(to 4 decimals)<br>t-value<br>2.353<br>(to 3 decimals)<br>3.0335<br>(to 4 decimals)<br>Spred<br>6.1153<br>(to 4 decimals)<br>Confidence Interval for æ = 6<br>6.08<br>20.35<br>) (to 2 decimals)<br>Prediction Interval for æ = 6<br>-0.76<br>) (to 2 decimals)<br>27.19<br>The two intervals are different because there is more variability associated with predicting an individual<br>value than there is<br>a mean<br>value.<br>

Extracted text: Given are five observations for two variables, a and y. 2 7 11 14 18 19 10 22 20 Develop the 90% confidence and prediction intervals when a = 6. 5.3099 (to 4 decimals) t-value 2.353 (to 3 decimals) 3.0335 (to 4 decimals) Spred 6.1153 (to 4 decimals) Confidence Interval for æ = 6 6.08 20.35 ) (to 2 decimals) Prediction Interval for æ = 6 -0.76 ) (to 2 decimals) 27.19 The two intervals are different because there is more variability associated with predicting an individual value than there is a mean value.

Jun 11, 2022
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