Maximum stress in the plate is,
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Q: shear stress in the wall?
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- Calculate the longitudinal stress at the anchor location for a silicon cantilever with the length L = 150 pm, the height b = 4 μm, and the tip displacement r = 1 μm. Assume E= 170 GPa and p = 0.1.A 3m long steel plate having a cross section of 25mm by 300mm is use as a hanger and subjectedto a tensile load of 1070 kN. The proportional limit of the steel is assumed to be 200 MPa. If thePoisson’s ratio is 0.25, determine the following;a. The transverse strain,b. The total axial deformation, andc. The transverse dimensional change along 300mm.A solid steel tube must carry a tensile load of 40KN. Determine the diameter of the tube if the stress is limited to 120 Nm/m²
- d. Calculate the bending stress in a layer 80 mm below the top surface of the beam at section B. e. Find the maximum bending stress.Find the lightest S-shape for the beam shown if the working stress in bending is 120 MPa. What is the maximum bending stress in the beam selected? Lightest S-shape beam =Maximum bending stress (MPa) =Find the lightest S-shape for the beam shown if the working stress in bending is 120 MPa. What is the maximum bending stress in the beam selected?
- A bronze bar 3 m long with a cross-sectional area of 320 mm² is placed between two rigid walls as shown in the figure below. At a temperature of -20°C, the gap A = 2.5 mm. Find the temperature at which the compressive stress in the bar will be 35 MPa. Use a = 18.0 x 10-6 m/(m-°C) and E = 80 GPa.Q- A uniform prismatic circular bar made up of rigid material is subjected to a tensile force of 5000 N at one end. If the diameter of the cross-section is 7 mm, then find the stress and strain in the bar.If the block is subjected to the centrally applied force of 600kN, determine the average normal stress in the material. Show the stress acting on a differential volume element of the material
- A cube (E - 20OGPA) is experiencing stress from all directions. Along the x-direction, there is a compressive stress of 50MPA. Along the y-direction, there is a tensile stress of 80MPA. Along the z-direction, there is a tensile stress of 100MPA. Solve the strain along the z-axis if the Poisson's Ratio is 0.3. O 0.000520 O 0.000455 O 0.000416 0.000325Steel Tank with an outside diameter of 600 mm has a wall thickness of 8 mm. The tank is used as storage of gas under pressure of 2.2 MPa. a. Determine the value of the tangential stress in the tank wall Determine the value of the longitudinal stress in the tank wall b. 30 mm helt handA homogenous isotropic material of size 20 cm x cm x 20 cm is placed inside a rigid box of internal dimension 20 x 20 x 20 cm. The top of the box is open and the material inside is subjected to a uniform compressive stress of 10 N/mm² from the top. Assuming there is no friction between the surface of contact, find the stresses on the side faces of the material. Also find maximum shear stress, the normal stresses on the plane of maximum shear stress and the change of volume of the material. Young's modulus E is 1 x 105 N/mm² and Poisson's ratio, m = 0.3 for the material. S 10 N/mm² 20 cm 20 cm-