6) Determine the magnitude of the maximum shear force on the inclined member. 7) Determine the magnitude of the maximum bending moment on the inclined member. 8) Determine the magnitude of the maximum shear force on the horizontal member. 9) Determine the magnitude of the maximum bending moment on the horizontal member. 10) With respect to point B, determine the location of the maximum bending moment on the horizontal member.

Traffic and Highway Engineering
5th Edition
ISBN:9781305156241
Author:Garber, Nicholas J.
Publisher:Garber, Nicholas J.
Chapter8: Intersection Control
Section: Chapter Questions
Problem 19P
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Situation II:
6m
45
f
2 kN/m
-3 m
B
Transcribed Image Text:Situation II: 6m 45 f 2 kN/m -3 m B
6) Determine the magnitude of the maximum shear
force on the inclined member.
7) Determine the magnitude of the maximum bending
moment on the inclined member.
8) Determine the magnitude of the maximum shear
force on the horizontal member.
9) Determine the magnitude of the maximum bending
moment on the horizontal member.
10) With respect to point B, determine the location of
the maximum bending moment on the horizontal
member.
Transcribed Image Text:6) Determine the magnitude of the maximum shear force on the inclined member. 7) Determine the magnitude of the maximum bending moment on the inclined member. 8) Determine the magnitude of the maximum shear force on the horizontal member. 9) Determine the magnitude of the maximum bending moment on the horizontal member. 10) With respect to point B, determine the location of the maximum bending moment on the horizontal member.
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