The stresses shown act at a point in a stressed body. Assume stress magnitudes of Sx = 18 MPa, S, = 65 MPa, Sxy = 20 MPa, a = 1, and b = 3. Using the equilibrium equation approach, determine the normal and shear stresses o (positive if tensile, negative if compressive) and t (magnitude only) at this point on the inclined plane shown. Answers: O = i MPa, t = i MPа.
The stresses shown act at a point in a stressed body. Assume stress magnitudes of Sx = 18 MPa, S, = 65 MPa, Sxy = 20 MPa, a = 1, and b = 3. Using the equilibrium equation approach, determine the normal and shear stresses o (positive if tensile, negative if compressive) and t (magnitude only) at this point on the inclined plane shown. Answers: O = i MPa, t = i MPа.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![The stresses shown act at a point in a stressed body. Assume stress magnitudes of Sx = 18 MPa, Sy = 65 MPa, Sxy = 20 MPa, a = 1, and
b = 3. Using the equilibrium equation approach, determine the normal and shear stresses o (positive if tensile, negative if
compressive) and t (magnitude only) at this point on the inclined plane shown.
S,
Answers:
O =
i
MРа, т %3
i
MPa.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F6c8979d8-92eb-4f8e-b3c8-2d132b46cf92%2F4ad6e514-df5e-4ea7-b49f-bd704850750a%2Fmjsmftb_processed.png&w=3840&q=75)
Transcribed Image Text:The stresses shown act at a point in a stressed body. Assume stress magnitudes of Sx = 18 MPa, Sy = 65 MPa, Sxy = 20 MPa, a = 1, and
b = 3. Using the equilibrium equation approach, determine the normal and shear stresses o (positive if tensile, negative if
compressive) and t (magnitude only) at this point on the inclined plane shown.
S,
Answers:
O =
i
MРа, т %3
i
MPa.
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