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Course Details
KTO KARATAY UNIVERSITY
Faculty of Engineering
Programme of Mechanical Engineering
Course Details
Course Code Course Name Year Period Semester T+A+L Credit ECTS
MAK4205 Dinamik 2 Spring 4 4+0+0 4 4
Course Type Compulsory
Course Cycle Bachelor's (First Cycle) (TQF-HE: Level 6 / QF-EHEA: Level 1 / EQF-LLL: Level 6)
Course Language Turkish
Methods and Techniques -
Mode of Delivery Face to Face
Prerequisites -
Coordinator -
Instructor(s) Asst. Prof. Mustafa ÖZKAYA
Instructor Assistant(s) -
Course Instructor(s)
Name and Surname Room E-Mail Address Internal Meeting Hours
Asst. Prof. Mustafa ÖZKAYA - [email protected]
Course Content
Basic concepts. Particle kinematics: Linear, Curvilinear and Relative Motions. Particle kinetics: Force and acceleration. Newton's laws of motion. Equations of motion. Work and energy. Power and efficiency. Impulse and momentum: Collision. Angular impulse and momentum. Planar kinematics of rigid body: Motion of rigid body. Relative motion analysis. Planar kinetics of rigid body: Force and acceleration. Work and energy. Impulse and momentum.
Objectives of the Course
1. To teach the basic concepts and principles of kinematics and kinetics. engineering mechanisms.
Contribution of the Course to Field Teaching
Basic Vocational Courses
Specialization / Field Courses
Support Courses
Transferable Skills Courses
Humanities, Communication and Management Skills Courses
Weekly Detailed Course Contents
Week Topics
1 Temel kavramlar. Parçacık kinematiği: Doğrusal hareket
2 Parçacık kinematiği: Eğrisel ve Bağıl Hareketler.
3 Parçacık kinetiği: Kuvvet ve ivme, Newton'un hareket yasaları, dik koordinatlarda hareket denklemleri
4 Parçacık kinetiği: Kuvvet ve ivme, normal-teğetsel koordinatlarda ve eğrisel koordinatlarda hareket denklemleri
5 Parçacık kinetiği: İş ve enerji ilkeleri
6 Parçacık kinetiği: Güç ve verim, konservatif kuvvetler ve potansiyel enerji
7 Parçacık kinetiği: İtme ve momentum, Lineer impuls and momentum ilkesi, çarpışma
8 Parçacık kinetiği: açısal momentum, açısal impuls ve momentum ilkeleri
9 Rijit cismin düzlemsel kinematiği
10 Rijit cismin düzlemsel kinematiği
11 Rijit cismin düzlemsel kinetiği: Kuvvet ve ivme
12 Rijit cismin düzlemsel kinetiği: İş ve enerji
13 Rijit cismin düzlemsel kinetiği: İmpuls ve momentum
Textbook or Material
Resources Beer, F.P., Johnston, E.R., Mazurek,D.F., Cornwell P.J.,Vector Mechanics For Engineers, Statics And Dynamics, 10th Edition, McGraw-Hill, 2013.
Hibbeler, R.C., Engineering Mechanics:Dynamics, 13th Edition, Pearson Prentice Hall, 2013.
Meriam, J. L. and Kraige, L. G., "Engineering Mechanics, Dynamics"Sixth Edition (SI Version), John Wiley and Sons Inc., 2007.
Evaluation Method and Passing Criteria
In-Term Studies Quantity Percentage
Attendance - -
Laboratory - -
Practice - -
Field Study - -
Course Specific Internship (If Any) - -
Homework - -
Presentation - -
Projects - -
Seminar - -
Quiz - -
Listening - -
Midterms - -
Final Exam - -
Total 0 (%)
ECTS / Working Load Table
Quantity Duration Total Work Load
Course Week Number and Time 0 0 0
Out-of-Class Study Time (Pre-study, Library, Reinforcement) 0 0 0
Midterms 0 0 0
Quiz 0 0 0
Homework 0 0 0
Practice 0 0 0
Laboratory 0 0 0
Project 0 0 0
Workshop 0 0 0
Presentation/Seminar Preparation 0 0 0
Fieldwork 0 0 0
Final Exam 0 0 0
Other 0 0 0
Total Work Load: 0
Total Work Load / 30 0
Course ECTS Credits: 0