F=20 kN single load, M=30 kN.m moment and w=10 kN/m distributed load are acting on the beam whose loading condition is given in the figure. The length L is given as L=3 m. The cross-sectional characteristics of the beam are body height yg=200 mm, body thickness xg=15 mm, flange width xf=150 mm, flange height yf=15 mm. Point E on the beam section is located just below the flange-body junction. According to this; a) Find the support response in the y direction at point A. (Write your result in kN) Answer b) Find the support response in the y direction at point D. (Write your result in kN). Response c) Find the shear force at point B. (Write your result in kN) Answer d) Find the bending moment at point B. (Write your result in kN). Response e) Find the normal stress due to the bending moment at point E in the section taken from the B line of the beam. (Write your result in MPa). Response f) Find the shear stress due to the shear force at point E in the section taken from the B line of the beam. (Write your result in MPa). Response

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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F=20 kN single load, M=30 kN.m moment and w=10 kN/m distributed load are acting on the beam whose loading condition is given in the figure. The length L is given as L=3 m. The cross-sectional characteristics of the beam are body height yg=200 mm, body thickness xg=15 mm, flange width xf=150 mm, flange height yf=15 mm. Point E on the beam section is located just below the flange-body junction. According to this;

a) Find the support response in the y direction at point A. (Write your result in kN) Answer

b) Find the support response in the y direction at point D. (Write your result in kN). Response
c) Find the shear force at point B. (Write your result in kN) Answer

d) Find the bending moment at point B. (Write your result in kN). Response

e) Find the normal stress due to the bending moment at point E in the section taken from the B line of the beam. (Write your result in MPa). Response

f) Find the shear stress due to the shear force at point E in the section taken from the B line of the beam. (Write your result in MPa). Response

A
F KN
-L-
w kN/m
B
+³+
-L
2L-
MkN.m
D
12+
-xp.
E
I
xg
Yg
Transcribed Image Text:A F KN -L- w kN/m B +³+ -L 2L- MkN.m D 12+ -xp. E I xg Yg
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