Task: A single-storey structure is shown in Figures 1 to 3. When you start the quiz, in the questions you will find the

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Task: A single-storey structure is shown in Figures 1 to 3. When you start the quiz, in the questions you will find the

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Task A Single Storey Structure Is Shown In Figures 1 To 3 When You Start The Quiz In The Questions You Will Find The 1
Task A Single Storey Structure Is Shown In Figures 1 To 3 When You Start The Quiz In The Questions You Will Find The 1 (86.37 KiB) Viewed 39 times
Task A Single Storey Structure Is Shown In Figures 1 To 3 When You Start The Quiz In The Questions You Will Find The 2
Task A Single Storey Structure Is Shown In Figures 1 To 3 When You Start The Quiz In The Questions You Will Find The 2 (93.32 KiB) Viewed 39 times
Task A Single Storey Structure Is Shown In Figures 1 To 3 When You Start The Quiz In The Questions You Will Find The 3
Task A Single Storey Structure Is Shown In Figures 1 To 3 When You Start The Quiz In The Questions You Will Find The 3 (65.96 KiB) Viewed 39 times
Please solve ASAP I will give you thumb up 10 up for sure
Task: A single-storey structure is shown in Figures 1 to 3. When you start the quiz, in the questions you will find the lengths LH and LV that you should use. The structure consists of a steel frame, with steel columns 203x203x71 UKC and primary 406x140x46 UKB and secondary beams 203x133x25 UKB, all made from S355 steel. The floor is 225 mm thick reinforced concrete slab, also in cast in place, C40 grade reinforced concrete. Figure 1 XXX LV LH LH LH 1 b Figure 2 2
FYL 4.999 FFL 2.000 Leve 1 Figure 3 Create a 3D model of this building in Revit. Apply the variable action (live load) on both floors equal to 2.0 kN/m². Transfer the Revit file into Robot Structural Analysis program and create the ultimate limit state combination of permanent and variable action (dead and live load), based on Eurocode factors. Do the calculation of this structure in Robot. Check computer results by hand calculations. Take all slabs as one-way spanning in the shorter direction, and all beams are simply supported. Required results: Q1. the sum of the support reactions for live load; For the secondary beam marked in Figure 2, find for the ULS load combination: Q2. the uniformly distributed load on this beam; Q3. the maximum bending moment and Q4. the maximum shear force; For the primary beam marked in Figure 2, between grid points B2 and B3 on Level 3, find for the ULS load combination: Q5. the value of each of the point loads on this beam, Q6. the maximum bending moment and Q7. the maximum shear force; d) For the column at grid location B3 find for the ULS load combination: Q8. the maximum axial force. Check your results by hand calculations. Enter the results in the quiz. All questions carry equal marks.
stion 1 For the steel frame structure with dimensions LH = 5.7 m and LV = 5.6 m, what is the sum of vertical reactions for live load? yet wered Answer: ced out of ag tion etion 2 For the steel frame structure with dimensions LH = 5.7 m and LV = 5.6 m, what is the maximum shear force in kN in the secondary beam highlighted? et ered ed out of Answer: ag tion tion 3 For the steel frame structure with dimensions LH = 5.7 m and LV = 5.6 m, what is the maximum bending moment in kNm in the secondary beam highlighted? et ered ed out of Answer: eg ion zion 4 For the steel frame structure with dimensions LH = 5.7 m and LV = 5.6 m, what is the maximum normal stress in MPa in the secondary beam highlighted? et ered ed out of Answer:
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