SHOW THE DIAGRAM AND THE COMPLETE SOLUTION: 2. The breaking distance for a car moving at an initial velocity of 60kph and a final of 40kph. Slope of roadway is +5% coefficient of friction between tires and pavement = 0.15. Compute the breaking time required for the vehicle. Hint: breaking time = V g(f±G)
SHOW THE DIAGRAM AND THE COMPLETE SOLUTION: 2. The breaking distance for a car moving at an initial velocity of 60kph and a final of 40kph. Slope of roadway is +5% coefficient of friction between tires and pavement = 0.15. Compute the breaking time required for the vehicle. Hint: breaking time = V g(f±G)
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Question
![SHOW THE DIAGRAM AND THE COMPLETE SOLUTION:
2. The breaking distance for a car moving at an initial velocity of 60kph and a final of 40kph. Slope
of roadway is +5% coefficient of friction between tires and pavement 0.15. Compute the
breaking time required for the vehicle.
Hint: breaking time
V
g(f+G)
=](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F50310995-94a3-467e-84f0-b5ebea372bed%2Fee8a3fe5-93de-4e5d-a08f-06b8348a9dab%2Fmqpretm_processed.png&w=3840&q=75)
Transcribed Image Text:SHOW THE DIAGRAM AND THE COMPLETE SOLUTION:
2. The breaking distance for a car moving at an initial velocity of 60kph and a final of 40kph. Slope
of roadway is +5% coefficient of friction between tires and pavement 0.15. Compute the
breaking time required for the vehicle.
Hint: breaking time
V
g(f+G)
=
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tb = (16.67 - 11.11)9.81(0.15 + 0.05)
how did the answer became 2.83? when multiplied the following the answer is 10.32?
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