(a) A X LAB B 7777 LBC P (b) hi Cross-section hi y Figure Q5: (a) The boundary condition of the wooden beam (b) cross-section of the beam B₁ Bo ho H Qa a) Determine the 2nd moment of area of the I-beam cross-section with respect to z-axis in Figure (b)? Iz = mm4 Y

Structural Analysis
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Chapter2: Loads On Structures
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hi im stuck in this please help me out

A wooden beam is loaded by a concentrated load ?P = 5000 N and supported by boundary conditions as shown in Figure Q5(a). The cross-section of the beam is shown in Figure Q5(b). Given that ???LAB = 3000 mm, ???LBC = 2000 mm, ?0B0=10 mm, ?1B1 = 30 mm, and ?H = 240 mm, ℎ0h0=200 mm, ℎ1h1=20 mm, determine the following quantities below:

last two sub parts of question didnt fit in so i will type here- theres no question d 

e) Determine the maximum magnitude of shear force and bending moment, neglecting the sign.

The maximum magnitude of internal shear force, positive value: N

The maximum magnitude of internal bending moment, positive value: N*mm

f) Determine the magnitude of the maximum bending stress in the beam, neglecting the sign.

Maximum bending stress, positive value: MPa

b) Calculate support reactions in A and B, following the defined sign convection.
Reaction forces at point A, considering the sign:
x-direction: XA=
N, y-direction: YA=
Reaction forces at point B, considering the sign:
x-direction: XB =
N, y-direction: YB=
N
N
Qc
c) Calculate the equations of internal shear force V(x) and bending moment M(x). Type the mather
expressions or constants, following the defined sign convection.
Section AB:
Internal shear force equation: V(x) =
Internal bending moment equation: M(x) =
Section BC:
Internal shear force equation: V(x) =
Internal bending moment equation: M(x) =
N
N
N*mm
N*mm
Transcribed Image Text:b) Calculate support reactions in A and B, following the defined sign convection. Reaction forces at point A, considering the sign: x-direction: XA= N, y-direction: YA= Reaction forces at point B, considering the sign: x-direction: XB = N, y-direction: YB= N N Qc c) Calculate the equations of internal shear force V(x) and bending moment M(x). Type the mather expressions or constants, following the defined sign convection. Section AB: Internal shear force equation: V(x) = Internal bending moment equation: M(x) = Section BC: Internal shear force equation: V(x) = Internal bending moment equation: M(x) = N N N*mm N*mm
(a)
→ X
LAB
B
LBC
P
(b)
hi
Cross-section
hi
Y
Figure Q5: (a) The boundary condition of the wooden beam (b) cross-section of the beam
B₁
Во
ho
Qa
a) Determine the 2nd moment of area of the I-beam cross-section with respect to z-axis in Figure (b)?
Iz =
mmª
H
Y↓
Transcribed Image Text:(a) → X LAB B LBC P (b) hi Cross-section hi Y Figure Q5: (a) The boundary condition of the wooden beam (b) cross-section of the beam B₁ Во ho Qa a) Determine the 2nd moment of area of the I-beam cross-section with respect to z-axis in Figure (b)? Iz = mmª H Y↓
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