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Course

CEE2168280

DYNAMICS

Civil Engineering

LECTURE
3
LAB
0
CREDITS
3
ECTS
5
LANGUAGEEnglishLEVELFirst Cycle (Bachelor's Degree)TYPERequired

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

    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

    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

    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

    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

  1. WEEK 1

    Introduction and Principles of Dynamics

  2. WEEK 2

    Kinematics of a Particle: Rectilinear Motion

  3. WEEK 3

    Kinematics of a Particle: Curvilinear Motion

  4. WEEK 4

    Relative Motion

  5. WEEK 5

    Dependent Motion

  6. WEEK 6

    Kinetics of a Particle, Newton's Laws of Motion

  7. WEEK 7

    Work and energy

  8. WEEK 8

    Impulse and momentum

  9. WEEK 9

    Angular Impulse and Momentum

  10. WEEK 10

    Kinetics of Systems of Particles

  11. WEEK 11

    Planar Kinematics of a Rigid Body

  12. WEEK 12

    Instantaneous Center

  13. WEEK 13

    Planar Kinetics of a Rigid Body

  14. WEEK 14

    Space Kinematics of a Rigid Body

ASSESSMENT

  • Rate of Midterm Exam to Success30%
  • Rate of Final Exam to Success70%

WORKLOAD

ACTIVITYCOUNTHOURSTOTAL
Course Hours14342
Guided Problem Solving14114
Resolution of Homework Problems and Submission as a Report21734
Term Project000
Presentation of Project / Seminar000
Quiz000
Midterm Exam13030
General Exam13030
Performance Task, Maintenance Plan000

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