A wooden beam carries the loading shown. Determine the smallest allowable width b of the beam if the working stress in bending is 10 MPa. 2 kN/m 5 kN you 200 mm 1.0 m B 2m 1.0 m C
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- A rectangular beam has a dimension of 210 mm x 260 mm. The simply supported beam is 5-m long and carries a concentrated load of 25 KN at the midspan. What is the maximum flexural stress of the beam? Blank 1 (use two decimal places)A simply supported rectangular beam of length 6.45m has a width of 437.5 and an effective depth of692.5. The beam is to be reinforced using 12 ?? bars. The beam supports service dead loads of31 kN/m and 39.5kN/m., respectively. 1. Calculate the ultimate moment capacity of the beam.2. Calculate the height of the equivalent stress block.3. Determine the number of bars required for this beamA bearing pad is a device which is used to support a bridge or other heavystructure in a way that permits the load to shift slightly in a horizontal directionrelative to the ground or foundation. If a horizontal force af 528 kN is applied tothe top surface of the bearing pad, and that a = 700 mm, b = 550 mm, h = 75m and the modulus of elasticity G = 1.25 MPa. Determine the following: a. The average shear stress on the bearing pad.b. The horizontal displacemant of tne bearing pad. Note: Draw the Free Body Diagram, include the proper units and round-off the answers to 3 decimal places.
- A cast iron beam 12m long and supported as shown carries a uniformly distributed load of intensity wo, N/m, (including its own weight). The allowable stresses are ??? ≤ 25 MPa and ??? ≤ 90 MPa. Determine the maximum safe value of wo, in N/m, if x= 1.2m.A 5-m simply-supported beam supports a uniformly distributed load equal to 40 kN/m applied throughout the beam. What is the maximum flexural stress if the beam has a rectangular cross-section with b = 300 mm and h = 600 mm? (in MPa) answer in 3 decimal placesThe cantilever beam has a circular cross section of 263 mm diameter. If the working bending stress is 199 MPa, determine the largest allowable intensity wo of the uniformly distributed load that can be applied to the beam. Round your answer to 2 decimal places.
- A simply supported rectangular beam of length 6.45m has a width of 437.5 and an effective depth of 692.5. The beam is to be reinforced using 12 mm bars. The beam supports service dead loads of 31 kN/m and 39.5kN/m., respectively. the fc' is 28MPa, fy is 420MPa and Wu is 89.9kN/m. 1. what is the ultimate moment capacity of the beam? 2. what is the height of the equivalent stress block? 3. Determine the number of bars required for this beam18. Determine the maximum bending stress (in MPa, numerical value only) of the beam shown below with the given cross section. For the beam: F1 = 1.44 kN, F2 = 6.26 kN, a = 1 meters, b = 2.4 meters For the cross section: x = 40 mm, y = 90 mm, z = 140 mm ROUND OFF TO TWO DECIMAL PLACES.A simply supported 4-m long beam is made up of 80% grade Malugai. The beam is carrying a uniform load of 10 KN/m all through out its length and a concentrated load of 500 N at the midspan. The cross-sectional area of the beam is indicated below. What is the actual bending stress of the beam in MPa? (use two decimal places, no need for unit) What is the actual shearing stress of the beam in MPa? (use two decimal places, no need for unit)
- As shown in the figure below, determine the internal loadings at points A,B and. Consider the uniform weight of thewhole structure which is SN lbs per ft complete solution and drawing. if u can please add some explanation thankyou FN = 49 MN = 101 SN = 94Determine the maximum bending stress (in MPa, numerical value only) of the beam shown below with the given cross section. For the beam: F1 = 1.3 kN, F2 = 6.78 kN, a = 1.2 meters, b = 2.3 meters For the cross section: x = 30 mm, y = 90 mm, z = 130 mmDetermine the maximum bending stress (in MPa, numerical value only) of the beam shown below with the given cross section. For the beam: F1 = 1.95 kN, F2 = 6.41 kN, a = 1 meters, b = 2.2 meters. For the cross section: x = 30 mm, y=90mm, z=120mm