Sample Question 1 (25 marks) A simply supported rectangular beam that is 150 mm deep and 100 mm wide is subjected to an

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Sample Question 1 (25 marks) A simply supported rectangular beam that is 150 mm deep and 100 mm wide is subjected to an

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Sample Question 1 25 Marks A Simply Supported Rectangular Beam That Is 150 Mm Deep And 100 Mm Wide Is Subjected To An 1
Sample Question 1 25 Marks A Simply Supported Rectangular Beam That Is 150 Mm Deep And 100 Mm Wide Is Subjected To An 1 (43.96 KiB) Viewed 51 times
Sample Question 1 25 Marks A Simply Supported Rectangular Beam That Is 150 Mm Deep And 100 Mm Wide Is Subjected To An 2
Sample Question 1 25 Marks A Simply Supported Rectangular Beam That Is 150 Mm Deep And 100 Mm Wide Is Subjected To An 2 (46.3 KiB) Viewed 51 times
Sample Question 1 (25 marks) A simply supported rectangular beam that is 150 mm deep and 100 mm wide is subjected to an axial tensile force of 10 kN and a uniformly distributed loading of w = 2 kN/m acting as shown in Figure Q1 below. The beam span L = 5 m. (a) Determine: i. The bending moment at beam midspan (5 marks) ii. The maximum bending stress (in units of MPa) that occurs in the beam at midspan (5 marks) And hence: iii. Sketch the bending stress distribution at beam midspan (3 marks) (b) Using the principle of superposition: 1. Determine the location and magnitude of the maximum resultant stress in the beam (9 marks) il Sketch the resultant stress distribution (3 marks)
And hence: iii. Sketch the bending stress distribution at beam midspan (3 marks) (b) Using the principle of superposition: i. Determine the location and magnitude of the maximum resultant stress in the beam (9 marks) ii. Sketch the resultant stress distribution (3 marks) W TOWN TOUN 2 Figure Q1
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