Q2) For the cantilever beam shown below. Draw the shear force diagram and design the beam for shear accordingly. The beam is subjected to concentrated dead load (P), and uniformly distributed (DL) and (LL). The self-weight is included in the dead load, (use two legs stirrups Ø10 and take f'c=30MPA, fyt=420MPA). h = 400 + 5 n (mm) DL & LL P = 55 + 0.5 n (kN) h-65 DL = 22 + 0.5 n (kN/m) LL = 15 + 0.5 n (kN/m) 4.6m n= student number 320-

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Referenced concrete n=1
Q2) For the cantilever beam shown below. Draw the shear force diagram and design the beam for
shear accordingly. The beam is subjected to concentrated dead load (P), and uniformly distributed
(DL) and (LL). The self-weight is included in the dead load, (use two legs stirrups Ø10 and take
f'c=30MPA, fyt=420MPA).
h = 400 + 5 n
(mm)
DL & LL
P = 55 + 0.5 n
(kN)
h-65
DL = 22 + 0.5 n (kN/m)
LL = 15 + 0.5 n (kN/m)
4.6m
n= student number
320
Transcribed Image Text:Q2) For the cantilever beam shown below. Draw the shear force diagram and design the beam for shear accordingly. The beam is subjected to concentrated dead load (P), and uniformly distributed (DL) and (LL). The self-weight is included in the dead load, (use two legs stirrups Ø10 and take f'c=30MPA, fyt=420MPA). h = 400 + 5 n (mm) DL & LL P = 55 + 0.5 n (kN) h-65 DL = 22 + 0.5 n (kN/m) LL = 15 + 0.5 n (kN/m) 4.6m n= student number 320
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