Beams
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![img_1907_01.png](/components/com_remository_files/file_image_1907/img_1907_01.png)
Equialent UDL from Point Loads in Beam
Calculating the equivalent distributed load from a set of point loads in a beam can be highly beneficial to an engineer for several reasons...
![img_1855_01.png](/components/com_remository_files/file_image_1855/img_1855_01.png)
Simple Concrete Beams
the key steps for designing a reinforced concrete beam following ACI code procedures:
Determine design loads (dead, live, etc.) ba...
![img_1764_01.png](/components/com_remository_files/file_image_1764/img_1764_01.png)
Loading Calculation Sheet.xlsx
Beam bending theory is a fundamental concept in structural engineering and solid mechanics that deals with the deformation and stress distr...
![img_1569_01.png](/components/com_remository_files/file_image_1569/img_1569_01.png)
steel wide flange design
What's the difference between I-beam and wide flange beam? ... An I-beam has tapered flanges with a narrower flange than most wide flange beams, ma...
![img_1461_01.png](/components/com_remository_files/file_image_1461/img_1461_01.png)
Reinforced Beam Design ACI 318-19 v.2.1
Reinforced Beam Design that enables to calculate the number of bars and stirrups of a beam. Input the following: -Dimensions -Generated Moment ...
![img_1419_01.png](/components/com_remository_files/file_image_1419/img_1419_01.png)
Stresses in Beams - Multiple Scenarios
Stresses in Beams - Multiple Scenarios
Custom made to calculate various different shapes and scenarios as found in a standard mechanics class fo...
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