Course syllabus

010633002-68 กลศาสตร์วิศวกรรม (Engineering Mechanics)

Course Syllabus

Data entry : Asst.Prof. Dr.Thanasak Nilsonthi
1. Course number and name

010633002-68 กลศาสตร์วิศวกรรม (Engineering Mechanics)

2. Credits and contact hours

3(3-0-6)

3. Instructor’s or course coordinator’s name

Asst.Prof. Dr.Thanasak Nilsonthi

4. Text book, title, author, and year

  1. F.P. Beer and E.R. Johnston, Vector Mechanics for Engineers: Statics and Dynamics; 10th edition, McGraw-Hill.

5. Specific course information

  1. brief description of the content of the course (catalog description)
    Forces system, resultant forces, free body diagram, equilibrium of forces, system and resultant of forces acting to body, centroid and center of gravity of body, friction force, analysis of truss structure, moment, moment of inertial of an area
  2. prerequisites or co-requisites
    040283111-66 Engineering Mathematics I
  3. indicate whether a required, elective, or selected elective (as per Table 5-1) course in the program
    Required : A required course in the Materials Engineering Program

6. Specific goals for the course

  1. specific outcomes of instruction (e.g. The student will be able to explain the significance of current research about a particular topic.)
    1. CLO1 Students demonstrate the ability to generate effective solutions to the assignments.
  2. explicitly indicate which of the student outcomes listed in Criterion 3 or any other outcomes are addressed by the course.
    ABET Student Outcome (SO) Listed in Criterion 3 Performance indicator
    SO1 an ability to identify, formulate, and solve complex engineering problems by applying principles of engineering, science, and mathematics.
    • PI-1.1 Identify the problems and applicable theories, variables and concepts.

7. Brief list of topics to be covered
Week Topic Details Activities
1 Introduction to engineering mechanics
2 Forces and moment system
3 Resultant forces
4 Free body diagram
5 Equilibrium of forces
6 System and resultant of forces acting on a body
7 Centroid and center of gravity of body
8 Moment of inertial of an area
9 Analysis of truss structure
10 Friction force
8. Course Assessment
Course assessment Weight score (%) Assessment tools Date
Midterm examination 40 midterm examination
Final examination 40 final examination
Assignment 20 assignment

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