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Course Unit Title Course Unit Code Type of Course Unit Level of Course Unit Year of Study Semester ECTS Credits
Dynamics MUH209 Compulsory Bachelor's degree 2 Fall 5

Name of Lecturer(s)

Prof. Dr. Recep Taygun GÜRAY
Associate Prof. Dr. Murat MAKARACI
Assistant Prof. Dr. Okan GÜL
Assistant Prof. Dr. İlbeyi KILAVUZ
Assistant Prof. Dr. Şenol ŞAHİN
Assistant Prof. Dr. Erman ŞENTÜRK
Assistant Prof. Dr. Sinan YILMAZ
Lecturer Sinem TOSUN

Learning Outcomes of the Course Unit

1) Identifying kinetics and rectilinear motion of particles.
2) Comparing kinetics of particles, force -mass - acceleration correlations.
3) Identifying work and energy principles for particles, impuls and momentum principles for particles.
4) Computing kinematic of rigid bodies equations.
5) Resolving rigid body problems using Newton's Laws and work and energy principle.
6) Analysing simple vibration systems.

Program Competencies-Learning Outcomes Relation

  Program Competencies
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19
Learning Outcomes
1 High High No relation No relation Middle Middle Low No relation No relation No relation No relation No relation No relation No relation No relation No relation High No relation No relation
2 High High No relation No relation Middle Middle Low No relation No relation No relation No relation No relation No relation No relation No relation No relation High No relation No relation
3 High High No relation No relation Middle Middle Low No relation No relation No relation No relation No relation No relation No relation No relation No relation High No relation No relation
4 High High No relation No relation Middle Middle Low No relation No relation No relation No relation No relation No relation No relation No relation No relation High No relation No relation
5 High High No relation No relation Middle Middle Low No relation No relation No relation No relation No relation No relation No relation No relation No relation High No relation No relation
6 High High No relation No relation Middle Middle Low No relation No relation No relation No relation No relation No relation No relation No relation No relation High No relation No relation

Mode of Delivery

Face to Face

Prerequisites and Co-Requisites

1) Static Completing the following course succesfully:

Recommended Optional Programme Components

Statics, Mechanics, Physics, Mathematics

Course Contents

This course covers; Kinematics of particle, rectilinear motion of particles, curvilinear (tangential-normal, cylindircal and polar coordinates) motion of particles, kinetics of particles, force - accelaration-mass correlations (Nemton's Laws) , work and energy principle for particle, impulse and momentum principle for particle, rotation around fixed axis, planar motions, general motion, kinetic of rigid bodies, force - accelaration - mass correlations for rigid bodies (Newton's Laws) , work and energy principles for rigid bodies, impulse and momentum methods for rigid bodies, vibration.

Weekly Schedule

1) Rectilinear motion of particles. (First Study Questions are given).
2) Curvilinear motion of particles,
3) Kinetics of particles (Newton's Laws),
4) Kinetics of particles, work and energy methods. (First Homework subject is given / First Homework Mid-term Exam Week is delivered).
5) Kinetics of particles ımpulse and energy methods, (First Project Subject is given / The First Project is delivered in the Tenth week of the lessons).
6) System of particles.
7) Kinematics of rigid bodies, rotation about a fixed axis,
8) Midterm examination. Plane motions of rigid bodies, (First Homework Mid-term Exam Week is delivered / Second Study Questions are given).
9) Principle of work and energy for rigid bodies. (The second Project Subject is given / The second project is delivered in the thirteenth week of the lessons).
10) Principle of work and energy for rigid bodies.
11) Principles of impulse and momentum for rigid bodies, Kinetics of rigid bodies in three dimensions
12) Mechanical vibrations without damping.
13) Mechanical vibrations with damping, (The second project is delivered in the thirteenth week of the lessons).
14) Mechanical vibrations with damping, (Excuse Examination is held on the lesson day at the lesson time).
15) Final exam
16) KOCAELI UNIVERSITY ACADEMIC CALENDAR FOR THE ACADEMIC YEAR 2023-2024 When it is analysed, it is understood that there is no Midterm exam week planned.

Recommended or Required Reading

1- J. L. MERIAM - L. G. KRAIGE, Çeviri Editörü: Prof. Dr. Paşa YAYLA, “MÜHENDİSLİK MEKANİĞİ DİNAMİK, Nobel Yayın, 2012, Ankara, ISBN 978-605-133-315-1.
2- Durmuş GÜNAY ve Alpay AYDEMİR, DİNAMİK- Mühendislik Mekaniği, Değişim Yayımları, 1998, Adapazarı.
3- F.P. BEER, “Mühendisler için Mekanik Cilt 2 – DİNAMİK
4- Russell C. HIBBELER, Engineering Mechanics DYNAMICS, 15th Edition, Published by Pearson, 2021, ISBN-13: 9780137514717
5- J. L. MERIAM, Çevirisi: Mustafa Sabuncu., “DİNAMİK”, Cilt 1., Birsen Yayınevi, 1989, İstanbul, ISBN 975-511-003-8.
6- ii
7- ii
8- ii
9- ii

Planned Learning Activities and Teaching Methods

1) Lecture
2) Drill and Practice
3) Lab / Workshop
4) Problem Solving
5) Project Based Learning


Assessment Methods and Criteria

Contribution of Semester Studies to Course Grade

30%

 

Number

Percentage

Semester Studies

Midterm Examination

1

20%

Quiz

1

20%

Project

2

60%

 

Contribution of Final Examination to Course Grade

70%

Total

100%

Language of Instruction

English

Work Placement(s)

Not Required