This "I-shaped" cross-section is often used for beams because the moment of inertia about the strong-axis is quite high, relative to the material used. Compute the moment of inertia about the strong-axis. Work smarter, not harder: you can either choose an additive method or a subtractive method. One is much faster than the other! Given: b=3"; c= 0.5" ; e = 0.3"; f = 13.4" b a b STRONG AXIS + I
This "I-shaped" cross-section is often used for beams because the moment of inertia about the strong-axis is quite high, relative to the material used. Compute the moment of inertia about the strong-axis. Work smarter, not harder: you can either choose an additive method or a subtractive method. One is much faster than the other! Given: b=3"; c= 0.5" ; e = 0.3"; f = 13.4" b a b STRONG AXIS + I
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![This “I-shaped” cross-section is often used for beams because the moment of inertia about the strong-axis is quite high, relative to the material used.
Compute the moment of inertia about the strong-axis. Work smarter, not harder: you can either choose an additive method or a subtractive method. One is much faster than the other!](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc1239def-d2da-4d72-87bf-5b25e0a39121%2F9e606a21-1424-4273-9b7c-c37136c1473a%2Fjypib5v_processed.png&w=3840&q=75)
Transcribed Image Text:This “I-shaped” cross-section is often used for beams because the moment of inertia about the strong-axis is quite high, relative to the material used.
Compute the moment of inertia about the strong-axis. Work smarter, not harder: you can either choose an additive method or a subtractive method. One is much faster than the other!
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