Question 5 The formula for the braking distance of a car is: 0.03361 v² fl d= where: . d is the braking distance (in feet) vis the initial velocity of the car (in miles per hour) is the coefficient of friction between the tires and the roadway If you are driving at 30 miles per hour on a snowy road that has a friction coefficient of = 0.27, how long will it take you to stop? feet (Round to 1 decimal place.) If you double your speed to 60 miles per hour, how long will it take you to stop? feet (Round to 1 decimal place.) d= 0/1 pt 289 Details d=

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter7: Analytic Trigonometry
Section7.6: The Inverse Trigonometric Functions
Problem 94E
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Question 5
The formula for the braking distance of a car is:
0.03361 v²
fl
d=
where:
. d
v
d=
If you are driving at 30 miles per hour on a snowy road that has a friction coefficient of = 0.27, how long
will it take you to stop?
is the braking distance (in feet)
is the initial velocity of the car (in miles per hour)
is the coefficient of friction between the tires and the roadway
d=
feet (Round to 1 decimal place.)
If you double your speed to 60 miles per hour, how long will it take you to stop?
feet (Round to 1 decimal place.)
Next Page
50/1 pt 289 Details
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Transcribed Image Text:Question 5 The formula for the braking distance of a car is: 0.03361 v² fl d= where: . d v d= If you are driving at 30 miles per hour on a snowy road that has a friction coefficient of = 0.27, how long will it take you to stop? is the braking distance (in feet) is the initial velocity of the car (in miles per hour) is the coefficient of friction between the tires and the roadway d= feet (Round to 1 decimal place.) If you double your speed to 60 miles per hour, how long will it take you to stop? feet (Round to 1 decimal place.) Next Page 50/1 pt 289 Details Submit Question
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