Situation 4: For the first three items, consider the following: A car having a weight of 40 KN is moving at a certain speed around the curve. Assuming no lateral pressure between the tire and pavement and considering a centrifugal ratio of 0.30. 52. If the degree of curve is 4° determine the maximum speed that the car could move around the curve. a. 104.53 kph b. 193.16 kph c. 162.24 kph d. 240.41 kph 53. Compute the angle of embankment to be provided for this speed if the skid resistance is 0.12. a. 10.21 b. 12.01 C. 21.10 d. 11.20

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Situation 4:
For the first three items, consider the following: A car having a weight of 40 KN is moving at a certain speed
around the curve. Assuming no lateral pressure between the tire and pavement and considering a centrifugal
ratio of 0.30.
52. If the degree of curve is 4° determine the maximum speed that the car could move around the curve.
a.
104.53 kph
b. 193.16 kph
C.
162.24 kph
d. 240.41 kph
53. Compute the angle of embankment to be provided for this speed if the skid resistance is 0.12.
a. 10.21
b. 12.01
C. 21.10
d. 11.20
Transcribed Image Text:Situation 4: For the first three items, consider the following: A car having a weight of 40 KN is moving at a certain speed around the curve. Assuming no lateral pressure between the tire and pavement and considering a centrifugal ratio of 0.30. 52. If the degree of curve is 4° determine the maximum speed that the car could move around the curve. a. 104.53 kph b. 193.16 kph C. 162.24 kph d. 240.41 kph 53. Compute the angle of embankment to be provided for this speed if the skid resistance is 0.12. a. 10.21 b. 12.01 C. 21.10 d. 11.20
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