The length of the spiral curve is 80 m. with a radius of 280 m. (a) Determine the offset distance from the tangent on the first quadrant of the spiral where L = 20 m. Use the formula X %3D 6R L (b) Compute the length of throw for the spiral curve. L Use the formula: X. %3D 6R. (c)What is the maximum velocity that a car could pass through the easement curve. Use the formula : Le 0.036K Re %3D
The length of the spiral curve is 80 m. with a radius of 280 m. (a) Determine the offset distance from the tangent on the first quadrant of the spiral where L = 20 m. Use the formula X %3D 6R L (b) Compute the length of throw for the spiral curve. L Use the formula: X. %3D 6R. (c)What is the maximum velocity that a car could pass through the easement curve. Use the formula : Le 0.036K Re %3D
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Answer should be 0.06,3.81,85.37 respectively

Transcribed Image Text:The length of the spiral curve is 80 m.
with a radius of 280 m.
(a) Determine the offset distance from
the tangent on the first quadrant of the
spiral where L = 20 m. Use the formula X
%3D
6R L
(b) Compute the length of throw for the
spiral curve.
Use the formula: X.
%3D
6R
(c)What is the maximum velocity that a
car could pass through the
easement curve. Use the formula :
Le
0.036K
Re
%3D
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