below, find the maximum shear stress and maximum normal stress
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- Derive the following formula for the distance e from the centerline of the wall to the shear center S for the hat section of constant thickness shown in the figure: Also, check the formula for the special case of a channel section (a = 0).If a beam has a rectangular cross section of heigh 300mm and width 60mm. In one cross section plane the beam experiences a shear force of 2x10^6 N. How do I work out the; 1 - shear stress at neutral axis 2 - the bottom surface 3 - 20mm from the top surfaceCalculate the maximum normal and shear stress values for the attached beam at x = 8.5 m. Determine the distribution of the shear stress in the cross-section in the y-axis direction at y=55 mm, y=109.99 mm and y=110.01 from top. The dimensions of the beam are a = 5.5 m, b = 3.0 m and c = 2.5 m, and the cross-sectional dimensions are d = 170 mm and h = 130 mm. The distributed load of the beam has the value q = 3kN / m and the force F = 10kN.
- The composite beam in Fig. a is made of wood and reinforced with a steel strap located on its bottom side. If the beam is subjected to a bending moment of M = 2 kN # m, determine the normal stress at points B and C. Take Ew = 12 GPa and Est = 200 GPa.per the attached figure: if the applied shear force V = 14 kip, determine the maximum shear stress in the member.Determine the maximum shear stress (in ksi). AT = 654 lb ft Diameter =3.7 in J =1.5in4 G = 11,000 ksi
- Beam cross section is shown below. If a resultant shear force, V acting at the beam cross section is 40 kN, (a) Determine the shear stress due to bending at points C (b) Sketch the shear stress distribution over the beam cross section and describe the shear stress pattern at the interface between flange and web. Given I NA = 301.3 x 10-6 m4For the beam and loading shown below, determine the maximum shear stress acting at section a−a. Give your answer in psi.The internal loadings at a critical section along the steel drive shaft of a ship are calculated to be a torque of 2300 lb # ft, a bending moment of 1500 lb # ft, and an axial thrust of 2500 lb. If the yield points for tension and shear are sY = 100 ksi and tY = 50 ksi, respectively, determine the required diameter ofthe shaft using the maximum shear stress theory.
- FInd the Magnitude of the Maximum Shear Stress in the below beam and cross-section, if: w = 17 kN/m L = 8 m b = 85 mm h = 178 mm Ensure that your answers are in MPa.A 0.2 m diameter shaft is supported by a smooth journal bearing at E and a smooth thrust bearing at F. Determine the maximum shear stress developed in segment AB of the shaft. 26.63 MPa 19.01 MPa 12.73 MPa 52.25 MPaFor the connection shown, the bolt diameter is d = 30 mm. The average shear stress in the bolts must be limited to 160 MPa. Determine the maximum load P that may be applied to the connection based on the shear strength of the bolts.