Course
CEE2168280
DYNAMICS
Civil Engineering
- LECTURE
- 3
- LAB
- 0
- CREDITS
- 3
- ECTS
- 5
REQUIRES
REQUIRED BY
None
TAUGHT IN
AIM
To teach the basic principles of kinematics and kinetics of a particle and a rigid body.
CONTENT
This course contains; Introduction and Principles of Dynamics,Kinematics of a Particle: Rectilinear Motion,Kinematics of a Particle: Curvilinear Motion,Relative Motion,Dependent Motion,Kinetics of a Particle, Newton's Laws of Motion,Work and energy,Impulse and momentum,Angular Impulse and Momentum,Kinetics of Systems of Particles,Planar Kinematics of a Rigid Body,Instantaneous Center,Planar Kinetics of a Rigid Body,Space Kinematics of a Rigid Body.
LEARNING OUTCOMES
- 1
1. Position, velocity and acceleration are calculated using the equations of kinetics and kinematics of particles and rigid bodies.
Taught by: Problem Solving Method, Self Study Method, Question - Answer Technique, Experiential Learning, Flipped Classroom Learning, Lecture Method · Assessed by: Traditional Written Exam, Homework, Quiz
- 2
2. Calculates the forces/moments that cause motion by applying the equations of motion on the free body and kinetic diagrams of a rigig body.
Taught by: Problem Solving Method, Self Study Method, Question - Answer Technique, Experiential Learning, Flipped Classroom Learning, Lecture Method · Assessed by: Traditional Written Exam, Homework, Quiz
- 3
3. Solves the dynamic problems using vectorial and/or scalar equations of kinetics and kinematics.
Taught by: Problem Solving Method, Self Study Method, Question - Answer Technique, Experiential Learning, Flipped Classroom Learning, Lecture Method · Assessed by: Traditional Written Exam, Homework, Quiz
- 4
4. Solves the dynamics of particles and rigid bodies using energy or impulse momentum principles.
Taught by: Problem Solving Method, Self Study Method, Question - Answer Technique, Experiential Learning, Flipped Classroom Learning, Lecture Method · Assessed by: Traditional Written Exam, Homework, Quiz
WEEKLY PLAN
- WEEK 1
Introduction and Principles of Dynamics
- WEEK 2
Kinematics of a Particle: Rectilinear Motion
- WEEK 3
Kinematics of a Particle: Curvilinear Motion
- WEEK 4
Relative Motion
- WEEK 5
Dependent Motion
- WEEK 6
Kinetics of a Particle, Newton's Laws of Motion
- WEEK 7
Work and energy
- WEEK 8
Impulse and momentum
- WEEK 9
Angular Impulse and Momentum
- WEEK 10
Kinetics of Systems of Particles
- WEEK 11
Planar Kinematics of a Rigid Body
- WEEK 12
Instantaneous Center
- WEEK 13
Planar Kinetics of a Rigid Body
- WEEK 14
Space Kinematics of a Rigid Body
ASSESSMENT
- Rate of Midterm Exam to Success30%
- Rate of Final Exam to Success70%
WORKLOAD
| ACTIVITY | COUNT | HOURS | TOTAL |
|---|---|---|---|
| Course Hours | 14 | 3 | 42 |
| Guided Problem Solving | 14 | 1 | 14 |
| Resolution of Homework Problems and Submission as a Report | 2 | 17 | 34 |
| Term Project | 0 | 0 | 0 |
| Presentation of Project / Seminar | 0 | 0 | 0 |
| Quiz | 0 | 0 | 0 |
| Midterm Exam | 1 | 30 | 30 |
| General Exam | 1 | 30 | 30 |
| Performance Task, Maintenance Plan | 0 | 0 | 0 |
READING
- Hibbeler, R. C., "Engineering Mechanics: Dynamics in SI Units", 14th Edition (2017), Pearson. ISBN: 9781292088723
- Omurtag, M. H., “Dinamik Mühendislik Mekaniği”, 3rd Edition (2015), Birsen Yayınevi. ISBN: 9789755115566
TEACHING STAFF
- Prof.Dr. Mehmet Hakkı OMURTAGCOORDINATOR
- Lect. Mert ÖZTÜRK
- Prof.Dr. Mehmet Hakkı OMURTAG