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    Asst. Prof. Pang Sze Dai

    Associate Head (Academic)Dept of Civil & Environmental Engineering

    CE3155 Structural Analysis

    email: [email protected]

    phone: 65162799

    office: E1 07-11

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    attended Jalan Teck Whye Primary School, Bukit Panjang GovtHigh School, National Junior College

    enrolled in NUS B.Eng. (Civil Engineering) in 1997

    completed NUS M.Eng. (Civil Engineering) in 2001

    went to Northwestern University (USA) for Ph.D. in 2002

    joined NUS CEE Family again in 2006

    have taught Statics and Mechanics, Differential Equations and

    Systems, Structural Steel Design and System, Structural Stabilityand Dynamics,Analysis and Design of Buildings Against Hazards.

    A bit more about myself...

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    1 Module Facilitators

    Teaching Assistants for Tutorials:

    Teaching Assistants for Labs:

    Teo Fwu Chyiemail: [email protected]: E1A-02-04B.Eng. NUS 2010-2014

    Ph.D. candidate 2014-now

    Huang Zhenyuemail: [email protected]: E1A-02-18Ph.D. candidate 2011-now

    Zhang Jinemail: [email protected]: E1A-02-04B.Eng. NUS 2009-2013

    Ph.D. candidate 2013-now

    Chua Yie Sueemail: [email protected]: E1A-02-04Ph.D. candidate 2012-now

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    2 Aims & ObjectivesThis module aims to equip undergraduate civil engineeringstudents with a good understanding of structural behaviorgood understanding of structural behaviorand the skillset to efficiently perform structural analysisefficiently perform structural analysis.

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    How important is this module for your

    NUS study?

    CE3155

    CE3165Structural Concrete Design

    CE3166Structural Steel Design and System

    CE4103Design Project

    CE4104B.Eng. Dissertation

    CE4257Linear Finite Element Analysis

    CE4258Structural Stability & Dynamics

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    More importantly, civil engineers carries

    the responsibility to design and build safe

    infrastructures for the society.

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    3 SyllabusPart I (taught by Dr. Pang Sze Dai)

    Introduction to Structural Analysis ( 4 hrs)

    Method of Virtual Work ( 3 hrs)

    Force Method ( 5 hrs)

    Displacement Method ( 5 hrs)

    Part II (taught by Dr. Poh Leong Hien)

    Introduction / Basic Matrix Analysis ( 3 hrs)

    Matrix Stiffness Method ( 4 hrs)

    Direct Stiffness Method ( 5 hrs)

    Approximate methods for lateral load analysis ( 5 hrs)

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    4 Teaching Modes

    LecturesLecturesMonday 1400-1500 hrs @ LT1

    Wednesday 1500-1700 hrs @ LT1TutorialsTutorialsMonday 1500-1600 hrs @ E3-06-08

    Thursday 1700-1800 hrs @ E1-06-07Friday 1000-1100 hrs @ E3-06-08Friday 1100-1200 hrs @ E1-06-07

    Computer Lab Sessions for Mini Design ProjectSchedule to be announced soon

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    Available at

    NUS Co-op @ Forum!!

    Structural AnalysisSI Units, 8/e

    Author : HIBBELER

    Publisher :Pearson

    ISBN : 9789810687137

    5 Textbook

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    Register via IVLE:

    Click on Groups on the left side of the page in theIVLE workspace, click on Sign Up, choose moduleCE3155, and sign up for one of the four ClassGroups.

    Maximum of 30 students per tutorial slot.Registration opens at 12 pm on August 12

    (Tuesday).Please register by August 17 (Sunday).

    Tutorial classes will begin on August 25 (Monday).

    6 Tutorials

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    Design a multi-storey steel frame.

    Use of ETABS for analysis.

    Find your own group members. 3 persons per group.

    (email list of group members to [email protected])

    More details will be announced soon.

    7 Mini Design Project

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    You will have an opportunity to learn ETABS, a commercial

    structural analysis software which is widely used by industry.

    Proficiency in this software will help you in other designmodules and also in your internship+career.

    The problem given will be used for CE3166 so that you can see

    more continuity and connection in the different modules.

    More about ETABS

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    You can download an evaluation version of ETABS Version 2013 onto your laptop.

    More about ETABS

    Instructions on how to download ETABS 2013 will be sent to you this week.

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    8 Assessment

    Quiz 1 15%

    Quiz 2 15%

    Lab Assignment (Mini Design Project) 15%

    Exams 55%