Nevşehir Hacı Bektaş Veli University Course Catalogue

Information Of Programmes

FACULTY OF ENGINEERING & ARCHITECTURE / EEM-329 - ELECTRICAL AND ELECTRONICS ENGINEERING

Code: EEM-329 Course Title: ENGINEERING MECHANICS Theoretical+Practice: 3+0 ECTS: 3
Year/Semester of Study 3 / Fall Semester
Level of Course 1st Cycle Degree Programme
Type of Course Optional
Department ELECTRICAL AND ELECTRONICS ENGINEERING
Pre-requisities and Co-requisites None
Mode of Delivery Face to Face
Teaching Period 14 Weeks
Name of Lecturer ALPER TÜRKELİ (alperturkeli@nevsehir.edu.tr)
Name of Lecturer(s)
Language of Instruction Turkish
Work Placement(s) None
Objectives of the Course
To teach basic concepts of mechanics and basic information about vectors and their applications. To teach the solution methods of static problems. Teaching the knowledge of the centers of gravity and the calculation of moments of inertia. To teach the basic principles of kinematics and kinematics of material points.

Learning Outcomes PO MME
The students who succeeded in this course:
LO-1 Students will learn the principles of mechanics, force and moment. PO-1 Mathematics, science and engineering information to gain the practical skills.
PO-2 Ability to identify engineering problems, modelling, formulate and improve the ability to solve.
Examination
LO-2 They will be able to calculate the centers of gravity and moments of inertia. They will learn equations of motion with absolute and relative motion. PO-1 Mathematics, science and engineering information to gain the practical skills.
PO-2 Ability to identify engineering problems, modelling, formulate and improve the ability to solve.
PO-6 To demonstrate the importance of professional and ethical responsibility.
PO-11 The techniques required for engineering applications, methods and improve the ability to use modern tools.
Examination
PO: Programme Outcomes
MME:Method of measurement & Evaluation

Course Contents
Definition and Classification of Mechanics, Objective, Basic concepts,Principles of Mechanism - Newton's Laws,Dimensional Analysis,Vectors,Forces,Momentum,Equilibrium - Equilibrium of Plane and Space Systems,Weight Centers - Center of gravity of linear elements,Geometric center of plane surfaces, Volume centers - Mass centers,Moment of inertia, moment of inertia of mass,Dynamic equilibrium, Inertia force,Kinematics (Displacement - Speed - Acceleration),Derivatives of vector functions, Absolute and Relative motion,Coordinate Transformations,Kinetic (Force - Mass - Acceleration), Motion equations.
Weekly Course Content
Week Subject Learning Activities and Teaching Methods
1 Definition and Classification of Mechanics, Objective, Basic concepts. Lecture, question and answer, discussion
2 Principles of Mechanism - Newton's Laws, Dimensional Analysis. Lecture, question and answer, discussion
3 Vectors. Lecture, question and answer, discussion
4 Forces. Lecture, question and answer, discussion
5 Momentum. Lecture, question and answer, discussion
6 Equilibrium - Equilibrium of Plane and Space Systems. Lecture, question and answer, discussion
7 Weight Centers - Center of gravity of linear elements Lecture, question and answer, discussion
8 mid-term exam
9 Geometric center of plane surfaces, Volume centers - Mass centers. Lecture, question and answer, discussion
10 Moment of inertia, moment of inertia of mass. Lecture, question and answer, discussion
11 Dynamic equilibrium, Inertia force. Lecture, question and answer, discussion
12 Kinematics (Displacement - Speed - Acceleration). Lecture, question and answer, discussion
13 Derivatives of vector functions, Absolute and Relative motion. Lecture, question and answer, discussion
14 Coordinate Transformations. Lecture, question and answer, discussion
15 Kinetic (Force - Mass - Acceleration), Motion equations. Lecture, question and answer, discussion
16 final exam
Recommend Course Book / Supplementary Book/Reading
1 Mühendisler İçin Mekanik (Statik), F. P. BEER, Çeviren: F. KESKİNEL, T. Özbek, Birsen Kitabevi 1983.
2 Teknik Mekanik (Statik), H. TOPKAYA, Güven Kitabevi,1980.
3 Mühendisler İçin Mekanik (Dinamik), F. P. BEER, E. R. JOHNSTON, Çeviren: S. S. TAMEROĞLU, T. ÖZBEK, Birsen Kitapevi, 1982.
4 Teknik Mekanik Problemleri, H. GOLDNER, Çeviren: E. ERDOĞAN, M. SAVCI, Birsen Kitapevi, 1978.
5 Mühendislik Mekaniği (Statik-Dinamik) -Sanem Serisi, Mc LEAN and NELSON, Çeviren: Y. ŞİMŞEK,Güven Kitabevi, 1979.
Required Course instruments and materials
Course book, laptop computer, projector

Assessment Methods
Type of Assessment Week Hours Weight(%)
mid-term exam 8 2 40
Other assessment methods
1.Oral Examination
2.Quiz
3.Laboratory exam
4.Presentation
5.Report
6.Workshop
7.Performance Project
8.Term Paper
9.Project
final exam 16 2 60

Student Work Load
Type of Work Weekly Hours Number of Weeks Work Load
Weekly Course Hours (Theoretical+Practice) 3 14 42
Outside Class
       a) Reading 2 7 14
       b) Search in internet/Library 0
       c) Performance Project 2 7 14
       d) Prepare a workshop/Presentation/Report 1 10 10
       e) Term paper/Project 0
Oral Examination 0
Quiz 0
Laboratory exam 0
Own study for mid-term exam 4 1 4
mid-term exam 1 1 1
Own study for final exam 4 1 4
final exam 1 1 1
0
0
Total work load; 90