Question The state of stress at a point under plane stress condition is Oxx = 40 MPa, Oyy = 100 MPa and Txy = 40 MPa The radius of Mohr's circle representing the given state of stress in MPa is
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Q: Question The state of stress at a point under plane stress condition is Oxx = 40 MPa, Oyy = 100 MPa…
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- A state of stress is specified in the figure shown below. Determine the Normal stress σy (mPa) on the Principal Plane if P1 = -5 mPa; P2 = 39 mPa and v = 21 mPaHi, i was wonderwing why with the normal stress at B the moment Mx * Cy is minus. can you explain how to set up the correct equation for the normal stress. Because often i had a correct answer but the minus and pluses different.Q3:(*b)What is meant by strain transformation? Describe two procedures for obtaining stress form Mohr’s circle for strain.
- The stresses shown in the figure act at a point in a stressed body. The stress magnitudes are Sx = 170 MPa, Sy = 85 MPa, and Sxy = 45 MPa, acting in the directions indicated in the figure. Determine the normal and shear stresses at this point on the inclined plane shown. Assume β = 48°.1. In The given figure, calculate A. The resultant force at joint C in KN B. The resultant force at joint A C. The stress at Rod BC if it has an area of 150mm x 150mm.For the stress block shown in the figure below. Determine the following by drawing Mohr’s circle. i. The magnitude of major and minor principle stresses ii. The stresses that are working on the plane AB Assume compressive stress and clockwise moment as positive while drawing Mohr’s circle of stresses.
- Consider a point in a structural member that is subjected to plane stress. Normal and shear stress magnitudes acting on horizontal and vertical planes at the point are Sx = 28 MPa, Sy = 39 MPa, and Sxy = 36 MPa. . Determine the maximum normal (principal) stress (in MPa) . Express final answer in 7 significant figures.The stresses shown in the figure act at a point on the surface of a structural element. Using Mohr’s circle, determine the following: 1. Calculate the absolute value of the normal stress x at the point in MPa. 2. Calculate the absolute value of the normal stress y at the point in MPa. 3. Calculate the absolute value of the shear stress xy at the point in MPa. 4. Calculate the absolute value of the minor principal stress in MPa. 5. Calculate the absolute value of the major principal stress in MPa. 6. Calculate the absolute value of the maximum shear stress in MPa. Kindly answer all with complete solution please. Needed ASAPA cross section of a beam is shown. If the beam is subjected to a positive moment, which bending stress will have the greater magnitude? a. TENSION BENDING STRESS b. COMPRESSION BENDING STRESS
- For the given figure below and its properties, calculate the stress at the bottom where at the fixed end (MPa)The rectangular plate is subjected to force P that causes elongation in the horizontal direction and shrinking in the vertical direction as shown with the dashed line in the figure. Assume a = 550 mm, Δx = 2 mm, and Δy = 1.1 mm. Determine the shear strain γxy at point A?in micro rad Determine the shear strain γnt at point A?in micro rad What is the normal strain in the x-direction?micro£Analyze the following stress element for principal stresses, maximum in-plane shear stress and their respective planes. Also show your results on stress elements.