Aspects of creative work: Fallingwater by Frank Lloyd Wright A creative work is a manifestation of creative effort such as artwork‚ literature‚ music‚ paintings‚ and software. Creative works have in common a degree of arbitrariness‚ such that it is improbable that two people would independently create the same work. Creative works are part of property rights. A creative work depends on how you look at that particular art. Every art or craft is not creative for us or for everyone. When we say
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STEEL BEAM DESIGN Laterally Unrestrained Beam Dr. A Aziz Saim 2010 EC3 Unrestrained Beam 1 Non-dimensional slenderness Beam behaviour analogous to yielding/buckling of columns. M Wyfy Material yielding (in-plane bending) MEd MEd Elastic member buckling Mcr Lcr 1.0 Dr. A Aziz Saim 2010 EC3 Non-dimensional slenderness Unrestrained Beam LT 2 Lateral torsional buckling Lateral torsional buckling Lateral torsional buckling is the member buckling mode
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weight before breaking. The four main types of bridges are: beam‚ arch‚ suspension and cantilever. The most commonly used bridge is the beam bridge. The beam bridge is made up of a horizontal structure and two or more vertical structures on either end for the horizontal structure to rest on. Beam bridges can be as simple as a fallen log across a river. In society‚ engineers generally make beam bridges out of steel and concrete. Because beam bridges‚ or any bridge for that matter‚ are required to
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Task 1. (Word count: 800-1000 words) 1. Select one project of your interest – something that you would like to visit or discover how it works and prepare a report. Why is this project interesting from an operations management perspective? - How long it took to design it‚ plan it and build it? - How many people were involved in its design‚ planning and operationalization? - How much material and what types of material were needed? - What were the main phases of the project? - What were
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VIBRATION ANALYSIS FOR ELECTRONIC EQUIPMENT THIRD EDITION Dave S. Steinberg Steinberg & Associates and University of California‚ Los Angeles A WILEY-INTERSCIENCE PUBLICATION JOHN WILEY & SONS‚ INC. New York Chichester Weinheim Brisbane Singapore Toronto This book is printed on acid-free paper. @ Copyright G2000 by John Wiley & Sons‚ Inc. All rights reserved. Published simultaneously in Canada. No part of this publication may be reproduced‚ stored in a retrieval system or transmitted
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Md. Manjar Hussain Greater Noida‚ Uttar Pradesh‚ India Sharda University Mobie : +919891829382 23‚ Male Email : manjar.hussain1991@gmail.com OBJECTIVE
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(h) (i) (j) 2 2. A rectangular beam with a cross section 200 mm x 100 mm spans 6 metres and carries a uniform load of 2 kN/m. a) Calculate the reactions. b) Draw the shear force and bending moment diagrams. c) Calculate I for the cross section‚ about the axis of bending. d) Calculate the maximum compressive stress in the beam‚ and show where it occurs along the length‚ and on the cross section. e) Calculate the maximum tensile stress in the beam‚ and show where it occurs along the length
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(fy) 16 Shear force diagrams – Y-direction (fZ) 17 Bending moment diagrams – x-direction (MZ) 18 Bending moment diagrams – y-direction (My) 19 Reactions (fx) 20 3.2 Running the earthquake 21 Eigenvalues 22 Shear force diagrams 23 Bending moment diagrams 24 Displacement 25 3.3 Second model – static analysis 26 Shear force diagrams – x-direction (fy) 27 Shear force diagrams – z-direction (fz) 28 Bending moment diagrams – x-direction (mz) 29 Bending moment diagrams – y-direction (my) 30 Displacement
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Experiment AM1.4--Bending moments in a simply supported beam Student name JunJie Liu Student ID 1512042 Experiment Date 24 Nov 2014 Lab group Mech 7 Introduction In this lab report we show the basic methods of measuring bending moment at the “cut” assuming only simply supported beam with point loads (showed in figure 1) and illustrate the relationship among bending moment and distance between
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UNIVERSITI TUN HUSSEIN ONN MALAYSIA Faculty of Mechanical and Manufacturing Engineering __________________________________________________________________ COURSE INFORMATION COURSE TITLE: ENGINEERING LABORATORY III (BDA 27101) TOPIC 1: TENSILE TEST 1. INTRODUCTION The tensile experiment is the most common mechanical test that reveals several important mechanical properties‚ such as: modulus of elasticity‚ yield strength‚ ultimate tensile strength‚ ductility‚ and toughness. The material
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