# CSM335 Course Introduction

Course Introduction for CSM335 – Structures II: Statics (CSM335) Introduction to the Course

The course offers the opportunity to develop knowledge and skills in structural analysis. The course is designed for students with a broad foundation in mechanics and engineering science and who wish to develop their knowledge of modern approaches to structural analysis. It will also be of interest to those studying higher level courses in civil, mechanical, or environmental engineering.

Learning Outcomes

By the end of the course students should:

1

# CSM335 Course Description

(Summer 2012)

Fall 2013

CSM335 Course Description for CSM335 – Structures II: Statics (CSM335) (Summer 2013)

Fall 2014

CSM335 Course Description for CSM335 – Structures II: Statics (CSM335) (Spring 2014)

Course Description – Fall 2014

Instructor:

Cindy Miller

Office Hours:

Every Monday, Wednesday and Friday from 10 am to noon.

Phone

# Universities Offering the CSM335 Course

Open Units (not for CSM335) Offered by Western University This course offers a continuation of the statics course taken in year one. It expands the material covered in the first year’s unit to include more advanced topics including finite element analysis and nonlinear structural analysis, and includes a review of fluid mechanics. The course also covers elasticity and fracture mechanics.

Course Information Syllabus Announcements Assignment Resource Comments

# CSM335 Course Outline

3 Credits Learning Objectives: Upon successful completion of this course, the student will be able to: 1. Identify the effects of load distribution on static systems and explain how loads are distributed in a system. 2. Use expressions for displacements, stresses, and strains associated with a statically determinate system. 3. Apply formulas for calculating moment, shear force, and bending moments in statically determinate structures.

4. Explain the differences between shear forces and bending moments in statically determinate

# CSM335 Course Objectives

– 1. Draw the shear and bending stress diagrams for a homogeneous, isotropic and linearly elastic material. The stresses are normal to the faces. The beam is assumed to be prismatic with the length L = 3 m and the width W = 2m.

The analysis is carried out for a square cross section. Solution: It is evident from Figure 1 that the maximum deflection is at the centre of the beam. The stiffness of beam at this point (ki) i

# CSM335 Course Pre-requisites

and CSM335 – Structures II: Dynamics (CSM335) Syllabus

How to Find Us

How to find us

Four scenarios are presented in the course, each presenting a different type of situation and scenario. All are problems based on real life engineering situations. Students must have a very good understanding of mechanics of materials, stress analysis, and stresses in structures.

The first three scenarios will be presented as lectures, and the final scenario will be presented as a group exercise.

All scenarios

# CSM335 Course Duration & Credits

– UOW. After completing the assignments in the CSM335 course, you will be required to write an essay based on a provided scenario that covers the … This paper is designed to be an examinable assignment and so it must be submitted in one sitting only, after completion of the initial assessment tasks and is not to be considered as a modelled assessment task. Students may ask for assistance from their lecturers when writing this assignment. Summarize your findings and conclusions in terms of design recommendations

# CSM335 Course Learning Outcomes

To acquire knowledge and skills to carry out all the exercises in the course. To be able to calculate the deformation of beams, columns, slabs and frames using the methods of moment, shear and torsion. To understand the stresses resulting from these loadings on the structures and their effect on the loads carrying capacity of the structures. To apply these concepts and methods in 2D or 3D element analysis (statics) for a wide range of common civil engineering structures like bridges, towers,

# CSM335 Course Assessment & Grading Criteria

Note: the grading criteria, formulas, and numerical values for each assessment or assignment in this section are as follows: 15% – 1) Final Exam: This is a major examination covering all concepts taught in the course. It includes problems that are designed to be completed in the time allotted. Problems on this exam must be solved individually, or with a partner. Problem solving under pressure requires considerable effort. Exams should be taken regularly and not rushed; all work must be well done and neatly

# CSM335 Course Fact Sheet

Course Syllabus Course Syllabus: CSM335 – Structures II: Statics (CSM335) Course Syllabus. This is a three credit course that meets for one hour each week. The material covered in this class is often on the exams and requires a lot of memorization. Student Learning Objectives After attending this class, students will be able to: understand and use the methods used to solve simple statics problems identify and understand the characteristics of equilibrium for statically determinate systems

# CSM335 Course Delivery Modes

– Lab: CSM335-Lab-02

CSM335 Course Delivery Modes for CSM335 – Structures II: Statics (CSM335) – Lab: CSM335-Lab-02 Previous Years Exam Question papers (download pdf format): 2015, 2014, 2013, 2012, 2011, 2010 & 2009 Related Courses : Mechanical Engineering Syllabus | General Engineering Syllabus

Mechanical Engineering Previous Years Papers

# CSM335 Course Faculty Qualifications

Dr. John Fleming: Ph.D., Mechanical Engineering, 2002, Texas A&M University

M.S., Mechanical Engineering, 1994, Texas A&M University

B.S., Chemical Engineering, 1986, Baylor University Areas of expertise: Statics (CSI), finite element analysis (FEA), adhesion and cohesion testing.

Dr. Fleming’s teaching experience includes the engineering mechanics of structures at Texas A&M University.

Dr. Fleming has been an invited speaker at numerous national conferences including

# CSM335 Course Syllabus

– Spring 2016 Instructor: Michael J. Aeschliman Office hours: By appointment Course Web Site: https://registrar.ucdavis.edu/csm335/ Email: mjaes@ucdavis.edu Phone: (530) 752-2138 Office hours are by appointment only. Please see the Class Schedule for a schedule of office hours and other contact information. Textbook: A Modern Introduction to Structural Analysis, Tenth Edition (ISBN 9781118094203).

# Suggested CSM335 Course Resources/Books

1) Bravais, William R. Structural Analysis: Statics and Dynamics (2nd Edition) (2011) ISBN-10: 0470519444 / ISBN-13: 978-0470519445 http://www.cengage.com/academic/product?ISBN=0470519444&mode=overview&show=search_result&source=catalog&isbn=&mode=overview 2) Kassimali, S., & Bell, P. A. (201

# CSM335 Course Practicum Journal

– Course Project

ECO 434 Integrated Economic Analysis (CSM335) – Course Project

ECON 101 Microeconomics (CSM335) – Assignment #1

ECON 101 Microeconomics (CSM335) – Assignment #2

ENTR 313 Entrepreneurial Management and Strategy (CSM335) – Course Project

Humanities 1: The Humanities 1 Quizzes, Quizzes, and More Quizzes!

HRM 200 Human Resource Management (

# Suggested CSM335 Course Resources (Websites, Books, Journal Articles, etc.)

NOTE: I highly recommend that you view the video and take a look at the associated homework. The videos are intended to help you understand the concepts in more detail, but they are not intended to be a substitute for completing the assignments (PDF file). Journals, journals and journals – topics include: statics, kinematics, dynamics, design of components and systems, structural analysis, computer aided design (CAD), finite element analysis (FEA), etc. Articles on various aspects of mechanics (e

# CSM335 Course Project Proposal

1. Introduction This project proposal is for a design assignment and is not intended to be a complete design of an actual product, system, or process, but instead provides an overview of the project. It includes a description of the technical, managerial, and economic issues that are anticipated to arise during the course of the design and development process. The assignment should therefore provide sufficient background information to prepare a feasible design plan which can then be evaluated against the requirements listed below.
The assignment will be based on a

# CSM335 Course Practicum

3 Credit Hours

This course is a continuation of CSM335. It begins with a study of the fundamental principles of stability, including the laws of equilibrium and the basic concepts of motion under gravity. This is followed by an examination of basic structures such as beams, slabs, and columns with applications to the real world. The final part covers materials, stresses, internal forces, moments and deflections.

Prerequisites: CSM335; 6 hours of CSM221 or equivalent

CS

# Related CSM335 Courses

CSM315 – Structures I: Mechanics of Materials (CSM315)
CSM221 – Engineering Mechanics: Dynamics (CSM221)
CSM301 – Advanced Engineering Mechanics: Statics and Dynamics (CSM301)
CSM302 – Advanced Engineering Mechanics: Strength of Materials and Fluids (CSM302)
CSM303 – Advanced Engineering Mechanics: Machines, Materials, and Structures (CSM303)
BSA200 – Electrical Circuits I (BSA

# Midterm Exam

## Top 100 AI-Generated Questions

– University of Florida.

A significant number of questions are asked from the second textbook, Statics, by Ronald Boas. The list below is not meant to be a substitute for the book, but it may give you an idea of what types of problems appear in exam review material. Chapter 1

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CSM335

CSM335 – Structures II: Statics (CSM335) – 10 Free Questions

CSM335 Midterm Exam for CSM335 – Structures II: Statics (CSM335)

Question #1. An architect designed a reinforced concrete gravity beam which carries a uniform load of 400 N/m on the bottom surface. The top surface of the beam is subjected to 40 N/m in the upward direction and also 40 N

## How to Prepare for CSM335 Midterm Exam

at Georgia Institute of Technology. Find CSM335 study guides, notes, and practice tests for Georgia Tech.

CSM335 Statics Midterm (Practice Exam) – The final exam in Statics is very similar to the midterm exam. It will consist of multiple choice, matching, short answer questions. The best way to prepare for the exam is to make a list of all the formulas that you need to memorize and then go through these

## Midterm Exam Questions Generated from Top 100 Pages on Bing

.

Seems like you are missing some credits or have already completed the course. To re-take the exam, click on the blue button above and follow the instructions there.

You will be able to access all of your courses and their content in a few moments. For now, please do the following:

2) Check if you have an “Unofficial Transcript” for any previous exams from a previous

## Midterm Exam Questions Generated from Top 100 Pages on Google

with Answers & Explanations 0. The web server has been shut down. You should answer each question in a separate paragraph or subtopic. In the context of the CSM335 course, students are expected to understand both static and dynamic analysis techniques as well as have some exposure to finite element methods and multibody dynamics techniques, including the potential of implementing these tools into structural design projects for academia and industry. The Microsoft RealPlayer 12 trial is only available for download for a limited time

# Final Exam

is on Tuesday, December 12, from 10 am to 12 pm in BOE 1.423. Please see the Scheduling website for more information.

In addition to Scheduling Week, there will be a first-year orientation session on Monday, December 11th from 3:00-4:00 pm in SUHB Multipurpose Room A (in front of Erwin Hatcher). The orientation is optional and any student who would like to participate must register.

Thursday, October

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CSM335. Structures II: Statics (CSM335). 3 Credits. (6th Semester, 8 th Semester). Courses offered for BTech students in 6th and 8th semester are as follows:

Structure-1: Topics In Applied Mechanics | CSM335

CSE / ECE / EEE / IT / CSME Structure-2: Dynamics | CSM335

CSE / ECE / EEE / IT /

## What Should Students Expect to Be Tested from CSM335 Final Exam

Course

1. (TCO 4) In the text, the manufacturer of a truck bed is testing how a driver’s weight and the bed’s load rating affect stopping distance for a given speed. The truck manufacturer places four tires on a test tire assembly, including those on the front and rear of the truck. Which statement below is true? A. The load ratings for the four tires are equal to each other, and the truck’s maximum speed will be less than 50 mph.

B

## How to Prepare for CSM335 Final Exam

CSM335 CH14-25 – Final Exam Guide – slideshare.net

Final Exam Study Guide. The information in this presentation is intended to provide a concise review of the concepts contained in the course material. This quiz will be available after the exam, and not all questions will be covered on the final exam.

CSM335 CH13-16 – Final Exam Guide – slideshare.net

CSM335 CH

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You do not need to go through each individual article but just the chapter summaries. There are no quizzes or exams required. You may take notes

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The Final Exam is meant to assess your understanding of the material covered in the course. It contains questions about the following topics: Introduction, Properties of Solids, Stress and Strain, Stresses in Reinforced Concrete Structures, Loads and Members Not Inelastic, Buckling of Laminated Beams, Bolted Joints and Anchors, Structural Safety and Structural Reliability. You are not expected to memorize any formulas or perform calculations on this exam. Instead it is designed as a way to

# Week by Week Course Overview

## CSM335 Week 1 Description

The student will describe and apply the principles of statics to the analysis of complex structures. He/she will apply the concepts of equilibrium, stability, and safety to analyze statically determinate and indeterminate structures. The student will perform analyses using appropriate software packages (ANSYS, PDS Structural Analysis, ABAQUS). (CSM335) Week 2 Description for CSM335 – Structures II: Statics (CSM335) The student will provide a design example from his/her previous studies

## CSM335 Week 1 Outline

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Assignment Checkpoint (CSM335) Week 3 Office Depot Assignment of CSM335 week 3 lab assignment

Assignment Checkpoint (CSM335) Week 4 Office Depot Assignment of CSM

## CSM335 Week 1 Objectives

– Week 1 – Objectives • Define the different types of structural elements and their physical properties, such as; • Defining the load (weight) on an object, such as a beam or a column. • Defining the stiffness of a structure (the capacity it has to resist loads and deformations), such as; deflection, compression, shear and torsion. • Defining the shape of a structure (the cross section), such as; • Solving simple structural problems that arise

## CSM335 Week 1 Pre-requisites

DQ 1-3

CSM335 Week 1 Discussions (All)

DQ 1: You can access the online textbook via

http://www.cs.utah.edu/~csse/s200/CSM335/csm335_03.pdf

DQ 2: As stated in the text, static equilibrium is a stable configuration of a body or system under various conditions. Which of the following statements best describes this concept?

A. Static equilibrium occurs when an

## CSM335 Week 1 Duration

Week 1 CSM335 Week 1 Structures II: Statics (CSM335) Week 1 CSM335 Week 2 Dynamic Analysis (CSM335) Week 2 CSM335 Week 2 Dynamic Analysis (CSM335) Week 2 CSM335 Week 3 Composite Structures (CSM335) Week 3 CSM335 Week 3 Composite Structures (CSM335) Week

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## CSM335 Week 1 Learning Outcomes

University of Phoenix CSM335 Week 1 Learning Outcomes for CSM335 – Structures II: Statics (CSM335) Student Name Course Number & Name Instructor Date CSM 335 Week 1 DQ 1: What is the correct definition of the engineering design process? What are its main characteristics? CSM/335 Week 1 DQ 2: What are some … Read More »

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## CSM335 Week 1 Assessment & Grading

Week 1 Assessment & Grading for CSM335 – Structures II: Statics (CSM335) Week 1 Assessment & Grading for CSM335 – Structures II: Statics (CSM335) Week 2 Assessment & Grading for CSM335 – Structures II: Statics (CSM335) Week 2 Assessment & Grading for CSM335 – Structures II: Statics (CSM335) Week 3 Assessment & Grading for CSM335 –

## CSM335 Week 1 Suggested Resources/Books

Week 1 Suggested Resources/Books for CSM335 – Structures II: Statics (CSM335) The Week 1 suggested readings are given below, but you can choose to read any of the books in this week’s reading list, on any of the topics. Of course you may also choose to read a different book from this list for your final project. Readings included in the book lists are not required for the course; however, you should consult them carefully and use them as

## CSM335 Week 1 Assignment (20 Questions)

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## CSM335 Week 1 Discussion 1 (20 Questions)

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## CSM335 Week 1 DQ 1 (20 Questions)

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## CSM335 Week 1 MCQ’s (20 Multiple Choice Questions)

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CSM335 Week 1 MCQ’s (20 Multiple Choice Questions) for CSM335 – Structures II: Statics (CSM335)

Question: (TCO 2) The mass of an object is often not a clear indication of its inertia. What is an example of an object that has great inertia?

A) A child swinging on a swing set with no support.

B) A large block on the ground that takes many seconds to roll from one end to

## CSM335 Week 2 Description

Description for CSM335 – Structures II: Statics (CSM335) Course Overview This course is part of the College of Computing and Mathematical Sciences Certificates in Computer Science & Systems Engineering Certificates. It consists of 12 weeks, with classes meeting from 7:50-9pm, every Tuesday evening. Class meets at the University of New Mexico School of Mines. Grade Distribution This course has no grades assigned. Instructor(s) Course Materials Textbook The required textbook is based on the following

## CSM335 Week 2 Outline

Final Exam. CSM335 Week 2 Homework Problems; CSM335 Week 2 Ch. 10 Multiple Choice Problems (pdf) CSM335 Week 3 Homework Problems; CSM335 Week 3 Ch. 11 Multiple Choice Problems (pdf) CSM335 Week 4 Homework Problems; CSM335 Week 4 Ch. 12 Multiple Choice Problems (pdf) CSM335 Week 5 Homework Questions.

Get solutions and answers of DQ1, DQ2,

## CSM335 Week 2 Objectives

– Readings: Ch. 6 (Statics for Engineers) and Ch. 7 (Statics for Engineers) – Required Reading List: Ch. 6, Ch. 7, and the student’s text. – To help you get started, here is the list of required readings that are available on eCampus at http://www2.educause.edu/eroam.

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## CSM335 Week 2 Pre-requisites

1. The

CSM335 Week 2 Pre-requisites for CSM335 – Structures II: Statics (CSM335) 1. The terms of the equilibrium of a structural system are: a)The dimensions of the system are equal, b)The forces are balanced, c)All forces are equal. d)None of these statements are correct. 2. A beam subjected to a load is considered as a structure because: a) It has two or more supports

## CSM335 Week 2 Duration

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1. a. The remaining energy is transferred into the soil.

b. The remainder of the energy is transferred into the soil.

c. The stress in the beam caused

## CSM335 Week 2 Learning Outcomes

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## CSM335 Week 2 Assessment & Grading

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## CSM335 Week 2 Suggested Resources/Books

The following resources/ books for CSM335 – Structures II: Statics are available for reference. Dynamic Lecture Notes – Student Guide to Dynamic Lectures at Temple University

Dynamic Lecture Notes – Student Guide to Dynamic Lectures at Temple University Dynamic Lecture Notes – Student Guide to Dynamic Lectures (CSM335) at Temple University

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## CSM335 Week 2 DQ 1 (20 Questions)

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## CSM335 Week 2 Discussion 2 (20 Questions)

Week 2 Discussion 2 (20 Questions) for CSM335 – Structures II: Statics (CSM335) Write a 500- to 750-word response to the following questions. Your response should be in your own words and include accurate citations of the required resources. Include a minimum of two scholarly references, including one from the Ashford University Library. Be sure to use APA style for formatting and citation.
1. Describe the effects of internal forces on each type of structural member shown

## CSM335 Week 2 DQ 2 (20 Questions)

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## CSM335 Week 2 MCQ’s (20 Multiple Choice Questions)

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## CSM335 Week 3 Description

– Course Project (CSM335 Week 3 Description for CSM335 – Structures II: Statics (CSM335) – Course ProjectThis is a final course project due week 3. This project will address the topic of “Structures II: Statics”. The project will include a formal research paper which will address the following topics: Introduction, Literature Review, Theory, and Application.Final Project Requirements• Paper should be approximately 10 pages in length.• Paper should be formatted according to

## CSM335 Week 3 Outline

1. Introduction to Statics Background 2. The Statics Process Background, Processes, and Results 3. Uniformly Distributed Loads Background, Types of Loads, Data and Analysis 4. Forces on Columns and Beams Background, Forces on Columns and Beams 5. Moments about a Point of Application Background, Moment Equations, Results and Applications 6. Moments about an Axis Background, Moment Equations, Results and Applications 7. Moments about a Circle – Simple Case Background,

## CSM335 Week 3 Objectives

Week 3 Objectives for CSM335 – Structures II: Statics (CSM335) Based on the readings for this week, complete the following tasks: * Task 1. Design a model of the bridge shown in Figure 2-11, including its top and bottom parts. * Task 2. Design a structure that will support a given load L = 4000 kN located at point P = (-6, 12) cm above the floor. Figure

be found

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## CSM335 Week 3 Duration

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## CSM335 Week 3 Learning Outcomes

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## CSM335 Week 3 Assessment & Grading

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