National University of Singapore (NUS) Questions

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OTH396: Determine the maximum weight of the uniform bar ADB that can be supported in the position: Civil Engineering Entrance Examination, Assignment, NUS

Question 1 The cable ABCD supports vertical loads PB and PC applied at B and C, respectively, as shown in Figure Q1. Obtain an expression for the ratio P P B C in terms of, , θθθ AB BC CD and determine the (a) ratio P P B C for which the segment BC will be horizontal, (b) maximum tension in the cable, if 45o θ CD = and P P B C = = 600 N. c

OTH396: Determine the forces on member ECD. Present your answers by indicating the magnitudes: Civil Engineering Entrance Examination, Assignment, NUS

Question 1 Figure Q1 shows a frame structure loaded as shown. Determine the forces on member ECD. Present your answers by indicating the magnitudes and directions of these forces on the free body diagram of member ECD. cta_question_2 Question 2 Identify all special joints and zero force members in the truss structure shown in Figure Q2. Deter

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OTH396: A simply supported beam of span L = 4m is used to support an elevated stage at the local theatre: Civil Engineering – Statics And Mechanics Of Materials Home Work, NUS

Question 1 A simply supported beam of span L = 4m is used to support an elevated stage at the local theatre. The expected loading on the beam is 4.8 kN/m. The stage manager thinks a simple wood beam, 60 mm by 120 mm, will do just fine. The consulting engineer however thinks it needs more support and recommends rigidly attaching a 4mm and 8mm thick

OTH396: A solid rectangular cross-section beam, 80mm wide by 120mm deep, is loaded as shown in Figure Q1: Civil Engineering – Statics and Mechanics of Materials Home Work, NUS

Question 1 A solid rectangular cross-section beam, 80mm wide by 120mm deep, is loaded as shown in Figure Q1. Calculate (a) the distance of the location of the maximum bending moment from point A and (b) the magnitude of the maximum bending stress in the beam. cta_question_1 Question 2 A box beam supports the loads shown in Figure Q2. Compute

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OTH396: An axial force of P = 60 kN is applied to the composite column shown in Figure Q3 by means of rigid endplates: Civil Engineering Assignment, NUS

Question 3 An axial force of P = 60 kN is applied to the composite column shown in Figure Q3 by means of rigid endplates. Determine (a) the normal stress in the brass casing and (b) the deformation of the column. cta_question_2

OTH396: The steel truss shown in Figure Q2 is loaded by P = 228 kN. Determine the stresses and deformations: Civil Engineering Assignment, NUS

Question  The steel truss shown in Figure Q2 is loaded by P = 228 kN. Determine the stresses and deformations of members AB and AD, given that their cross-sectional areas are 2400 mm2 and 1800 mm2, respectively. The Young’s modulus of Steel is E=200 GPa. cta_question_3

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OTH396: The 36mm diameter steel rod ABC and brass rod CD of the same diameter are joined at point C to form the 7.5m rod: Civil Engineering Assignment, NUS

Question 1 The 36mm diameter steel rod ABC and brass rod CD of the same diameter are joined at point C to form the 7.5m rod ABCD as shown in Figure Q1. For the loads shown, determine the deflections of C and D. Neglect the weight of the rod. Home Work cta_question_3

OTH396: Using the method of joints, determine the force in members BE, AD and BD for the truss shown in Figure Q1.: Civil Engineering Assignment, NUS, Singapore

OTH396 BTech Engineering Bridging/Preparatory Unit: Civil Engineering Question 1 Using the method of joints, determine the force in members BE, AD and BD for the truss shown in Figure Q1. cta_question_2 Question 2 Determine the force in members DE and DJ of the truss shown in Figure Q2 Question 3 Determine the force in members AB, BD and BC

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OTH396: Q1 The force F of magnitude 240 N is to be resolved into two components along lines a-a and b-b as shown in Figure Q1: Civil Engineering Assignment, NUS

OTH396 BTech Engineering Bridging/Preparatory Unit: Civil Engineering Question 1 The force F of magnitude 240 N is to be resolved into two components along lines a-a and b-b as shown in Figure Q1. Determine by trigonometry the angle α in degrees, knowing that the component F along the line b-b is to be 90 N. cta_question_1 Question 2 A disab

Your rub your eyes and settle in for a long evening at your desk in Capital Tower: Portfolio Management Report, NUS

Overview:  Your rub your eyes and settle in for a long evening at your desk in Capital Tower, first taking a slightly jealous look out at all the people headed out to dinner on Telok Ayer and Amoy Streets. As a newly minted vice-president in portfolio management, you’ve been tasked with your first major assignment: a large private investment is

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