A 1.6-m-long cantilever beam supports a concentrated load of P = 7.2 kN. The beam is made of a rectangular timber having a width of 120 mm and a depth of 280 mm. Calculate the shear stress due to the applied load at a point located d = 131 mm below the top surface of the beam. P d 280 mm A 1.6 m 120 mm O 258 kPa O 230 kPa O 303 kPa O 320 kPa O 433 kPa
A 1.6-m-long cantilever beam supports a concentrated load of P = 7.2 kN. The beam is made of a rectangular timber having a width of 120 mm and a depth of 280 mm. Calculate the shear stress due to the applied load at a point located d = 131 mm below the top surface of the beam. P d 280 mm A 1.6 m 120 mm O 258 kPa O 230 kPa O 303 kPa O 320 kPa O 433 kPa
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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
Transcribed Image Text:A 1.6-m-long cantilever beam supports a concentrated load of P = 7.2 kN. The beam is made of a rectangular timber having a width of
120 mm and a depth of 280 mm. Calculate the shear stress due to the applied load at a point located d = 131 mm below the top surface
of the beam.
280 mm
A
B
1.6 m
120 mm
O 258 kPa
O 230 kPa
О 303 КРa
О 320 kPa
О 433 КPa
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