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Problem 1 You are curious about the wide range of performance that you can get out of a single steel shape in compression. You choose
Problem 1 You are curious about the wide range of performance that you can get out of a single steel shape in compression. You choose a HSS8x6x4 section for your study. You are interested in looking at the effects of steel type, boundary conditions, and length. Make the following four plots on the same axis: a) Fa versus L for pinned-pinned boundary conditions and A36 steel b) Fa versus L for pinned-pinned boundary conditions and A500 Gr. B steel (Fy = 46 ksi) = c) Fa versus L for fixed-pinned boundary conditions and A36 steel d) Fa versus L for fixed-pinned boundary conditions and A500 Gr. B steel (Fy = 46 ksi) For all plots, use a range of L from 0 to 60 feet. You are encouraged to use a program such as Excel, but write out the equations that you are using. Print out all of your spreadsheets and plots. Comment on the effect of steel type and boundary conditions for different length columns based on your plot. Problem 1 You are curious about the wide range of performance that you can get out of a single steel shape in compression. You choose a HSS8x6x4 section for your study. You are interested in looking at the effects of steel type, boundary conditions, and length. Make the following four plots on the same axis: a) Fa versus L for pinned-pinned boundary conditions and A36 steel b) Fa versus L for pinned-pinned boundary conditions and A500 Gr. B steel (Fy = 46 ksi) = c) Fa versus L for fixed-pinned boundary conditions and A36 steel d) Fa versus L for fixed-pinned boundary conditions and A500 Gr. B steel (Fy = 46 ksi) For all plots, use a range of L from 0 to 60 feet. You are encouraged to use a program such as Excel, but write out the equations that you are using. Print out all of your spreadsheets and plots. Comment on the effect of steel type and boundary conditions for different length columns based on your plot
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