B P A W x Calculate the Moment of Inertia about the Centroidal axis marked as y on the diagram using the transform section method, transforming all your material to Material A. Your Answer should be in Whole Numbers with the units mm^4. J-36.2 mm, P=78.7 mm, W=77.9mm, Young's Modulus of Material A = 78.0 GPa, Yield Stress of Material A = 144.2 MPa, Young's Modulus of Material B = 150.9 GPa, Yield Stress of Material B = 285.3 MPa. Your Answer:
B P A W x Calculate the Moment of Inertia about the Centroidal axis marked as y on the diagram using the transform section method, transforming all your material to Material A. Your Answer should be in Whole Numbers with the units mm^4. J-36.2 mm, P=78.7 mm, W=77.9mm, Young's Modulus of Material A = 78.0 GPa, Yield Stress of Material A = 144.2 MPa, Young's Modulus of Material B = 150.9 GPa, Yield Stress of Material B = 285.3 MPa. Your Answer:
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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
Transcribed Image Text:B
P
A
W
x
Calculate the Moment of Inertia about the Centroidal axis marked as y on the
diagram using the transform section method, transforming all your material to
Material A. Your Answer should be in Whole Numbers with the units mm^4.
J-36.2 mm, P=78.7 mm, W=77.9mm,
Young's Modulus of Material A = 78.0 GPa, Yield Stress of Material A = 144.2 MPa,
Young's Modulus of Material B = 150.9 GPa, Yield Stress of Material B = 285.3 MPa.
Your Answer:
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