The following table shows the rate R of vehicular involvement in traffic accidents (per 100,000,000 vehicle-miles) as a function of vehicular speed s, in miles per hour, for commercial vehicles driving at night on urban streets. Speed s Accident rate R 20 1700 25 800 30 350 35 200 40 600 45 1400 (a) Use regression to find a quadratic model for the data. (Round the regression parameters to two decimal places.) R=   (b) Calculate  R(55).  (Round your answer to two decimal places.) R(55) =  Explain what your answer means in practical terms. Commercial vehicles driving at night on urban streets at ___________ miles per hour have traffic accidents at a rate of _________ per 100,000,000 vehicle miles. (c) At what speed is vehicular involvement in traffic accidents (for commercial vehicles driving at night on urban streets) at a minimum? (Round your answer to the nearest whole number.)  mph

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ISBN:9781938168383
Author:Jay Abramson
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Chapter4: Linear Functions
Section4.3: Fitting Linear Models To Data
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The following table shows the rate R of vehicular involvement in traffic accidents (per 100,000,000 vehicle-miles) as a function of vehicular speed s, in miles per hour, for commercial vehicles driving at night on urban streets.

Speed s Accident rate R
20 1700
25 800
30 350
35 200
40 600
45 1400
(a) Use regression to find a quadratic model for the data. (Round the regression parameters to two decimal places.)
R=
 
(b) Calculate 
R(55).
 (Round your answer to two decimal places.)
R(55) = 


Explain what your answer means in practical terms.
Commercial vehicles driving at night on urban streets at ___________ miles per hour have traffic accidents at a rate of _________ per 100,000,000 vehicle miles.

(c) At what speed is vehicular involvement in traffic accidents (for commercial vehicles driving at night on urban streets) at a minimum? (Round your answer to the nearest whole number.)
 mph
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