The T section shown in Fig. is the cross-section of a beam formed by joining two rectangular pieces of wood together. The beam is subjected to a maximum shearing force of 60 kN. Show that the NA is 34 mm from the top and the INA = 10.57 x 106 mm². Using these values, determine the shearing stress (a) at the neutral axis and (b) at the junction between the two pieces of wood. 200 mm
The T section shown in Fig. is the cross-section of a beam formed by joining two rectangular pieces of wood together. The beam is subjected to a maximum shearing force of 60 kN. Show that the NA is 34 mm from the top and the INA = 10.57 x 106 mm². Using these values, determine the shearing stress (a) at the neutral axis and (b) at the junction between the two pieces of wood. 200 mm
Chapter2: Loads On Structures
Section: Chapter Questions
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
Transcribed Image Text:The T section shown in Fig. is the cross-section of a beam formed by joining
two rectangular pieces of wood together. The beam is subjected to a maximum
shearing force of 60 kN. Show that the NA is 34 mm from the top and the INA = 10.57
x 106 mm4. Using these values, determine the shearing stress (a) at the neutral axis
and (b) at the junction between the two pieces of wood.
200 mm
100 mm
20 mm
40 mm
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