Structural Analysis
6th Edition
ISBN: 9781337630931
Author: KASSIMALI, Aslam.
Publisher: Cengage,
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- A weight, with an unknown mass, falls through a distance of 10 millimeters (mm) onto a collar attached to the bottom end of a vertical bar. The bar is 3 meters (m) long and has a cross-sectional area of 600 square millimeters (mm2). The impact causes the bar to instantly stretch by 2 mm. The Young's modulus of the bar material is 200,000 MPa. Determine: 1. The weight of the falling object. 2. The stress experienced by the bar due to the impact.arrow_forwardA spherical ball of volume 20 m³ is placed under a certain liquid wherein the ball is subjected to a uniform hydrostatic pressure of 200 MPa. If the material of the ball has a bulk modulus of elasticity of 2.5 x 10 x 105 MPa and a Poisson's ratio of 0.30, then due to the hydrostatic pressure, the volume of the ball will change by (1. m3arrow_forwardI need the answer as soon as possiblearrow_forward
- 1. Beam loaded as shown in the following figure: 10 kN 2 m 10 kN/m 2 m 1 m 1m R2 R1 Answer: Mmax = 13.8KN – marrow_forwardA simply supported beam, having a length of 8.5 m, is being subjected to a concentrated live load of 20 kN, and a concentrated dead load of 15 kN, both at midspan of the beam. Neglecting the weight of the beam, take Ec = 20,000 MPa, and le = %3D 4000x10^6 mm^4. a)What ks the value of Ma(DL+LL)? b.) What is the value of Instantaneous deflection at Midspan (DL+LL)arrow_forward6.6 Consider a cylindrical nickel wire 2.0 mm + (0.08 in.) in diameter and 3 × 10ª mm (1200 in.) long. Calculate its elongation when a load of 300 N (67 lb,) is applied. Assume that the defor- mation is totally elastic.arrow_forward
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- Calculate the modulus of rigidity and bulk modulus of a cylindrical bar of diameter 30 mm and of length 2.0 m if the longitudinal strain in a bar during a tensile stress is six times the lateral strain. Find the change in the volume, when the bar is subjected to a hydrostatic pressure of 120 N/mm². Take E= 1 x 105 N/mm².arrow_forwardQ1/ Calculate the centroid for the following figure 2 m =2x 2 marrow_forward(c) Consider the following conditions: Condition 1 Condition 2 A wooden cube of size 2 m and the 20% of the volume of a body is visible relative density of 0.5 floats in the over the free surface of the water. water. Calculate: (i) Volume of the cube submerged in the water, based on Condition 1. (ii) Density of the wooden cube, based on Condition 2.arrow_forward
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