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https://careertrend.com/how-10017936-calculate-support-beam-sizes.html
Calculate the size of the support beam for F2 using the formula R2 = [(F1 * a) + (F2 * a)]/2 where R2 is the support beam for F2. It's the same formula as R1 since F1 is equal to F2: R2 = [(300)(9.82) + (300)(9.82)]/2 = (2946 + 2946)/2 = 2,946 Newtons.
http://learnframing.com/wood-beam-calculator/
Calculate the size needed for a beam, girder, or header made from No. 2 pine or LVL. Covers any span and every load with pin point accuracy.
https://www.hunker.com/12484662/how-to-calculate-load-bearing-beams
Calculate the beam's section modulus by dividing the maximum bending moment by the allowable fiber stress for wooden beams. The latter is 1,150 pounds per square inch. Multiply the maximum bending moment of 900 foot pounds by 12 to get 10,800 inch-pounds.
https://www.decksgo.com/beam-size.html
This beam gets its load from the joists, and in particular half the span of the joists goes to this beam. The other half of the joist's load goes to the beam on the other side of the deck. So the tributary width for this beam is half of the joist's span: 8/2 = 4'. Done, now let's check results.
http://www.betterheader.com/Calculating-Spans
Calculating Spans Instructions for Calculating Beam & Carried Spans. Refer to the above illustration to determine the beam / header needed for your application. Determine the beam / header span (length) and the span carried (supported) by the beam / header. Click on the appropriate beam, this will take you to the calculation table for your project.
https://www.engineeringtoolbox.com/beams-support-forces-d_1311.html
A 10 m long beam with two supports is loaded with two loads, 500 kg is located 1 m from the end (R 1 ), and the other load of 1000 kg is located 6 m from the same end.
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