Write a C++ program using the information describe above that computes the maximum load in lbs(pounds) that can be placed at the end of an 8-foot (96 inches) 2” × 4” wooden beam so that the stress on...

Write a C++ program using the information describe above that computes the maximum load in lbs(pounds) that can be placed at the end of an 8-foot (96 inches) 2” × 4” wooden beam so that the stress on the fixed end is 3000 lb/in2 . Using the same program: 2. Determine the maximum load in lbs(pounds) that can be placed at the end of an 8-foot (96 inches) 3” × 6” wooden beam so that the stress on the fixed end is 3000 lbs/in2 . L is the maximum weight in lbs(pounds) of the load placed on the beam. S is the stress in lbs/in2 . I is the beam’s rectangular moment of inertia in units of in. d is the distance in inches that the load is placed from the fixed end of the beam (the “moment arm”). c is one-half the height in inches of the symmetrical beam. 2 3. Determine the maximum load in lbs(pounds) that can be placed at the end of an 8-foot (96 inches) 4” × 8” wooden beam so that the stress on the fixed end is 3000 lbs/in2 .
Oct 04, 2021
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