Two (2) beams are subjected to different loading condition and position as shown. A w1 w2 P x1 x2 x3 e w1 kN/m Moment at A = x1 Vertical Reaction at B = Vertical Reaction at C = 4 6 9 4 4 2 30 kN-m 3m KN KN kN B Determine the Reactions at Fixed Support A, Roller Support B and Hinge Support C. ALL ANSWERS IN ABOSULTE VALUE AND IN THREE (3) DECIMAL PLACES INCLUDING ZEROS Vertical Reaction at A = KN Horizontal Reaction at A= kN/m kN/m KN m m m deg x2 W2 kN/m 2m x3 e 1m C
Two (2) beams are subjected to different loading condition and position as shown. A w1 w2 P x1 x2 x3 e w1 kN/m Moment at A = x1 Vertical Reaction at B = Vertical Reaction at C = 4 6 9 4 4 2 30 kN-m 3m KN KN kN B Determine the Reactions at Fixed Support A, Roller Support B and Hinge Support C. ALL ANSWERS IN ABOSULTE VALUE AND IN THREE (3) DECIMAL PLACES INCLUDING ZEROS Vertical Reaction at A = KN Horizontal Reaction at A= kN/m kN/m KN m m m deg x2 W2 kN/m 2m x3 e 1m C
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Transcribed Image Text:QUESTION 2
Two (2) beams are subjected to different loading condition and position as shown.
A
w1
w2
P
x1
x2
x3
w1 kN/m
Horizontal Reaction at A=
Moment at A =
x1
Vertical Reaction at B =
Vertical Reaction at C =
Horizontal Reaction at C =
4
6
9
4
4
2
30
kN-m
3m
kN
KN
KN
Determine the Reactions at Fixed Support A, Roller Support B and Hinge Support C.
ALL ANSWERS IN ABOSULTE VALUE AND IN THREE (3) DECIMAL PLACES INCLUDING ZEROS
Vertical Reaction at A =
KN
B
KN
kN/m
kN/m
KN
m
m
m
deg
x2
W2 kN/m P
2m
x3
Ө
1m
C
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