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FACULTY of ENGINEERING / DEPARTMENT of CIVIL ENGINEERING

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FACULTY of ENGINEERING / DEPARTMENT of CIVIL ENGINEERING /
Katalog Ana Sayfa
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INS2015Dynamics2+1+0ECTS:4
Year / SemesterFall Semester
Level of CourseFirst Cycle
Status Compulsory
DepartmentDEPARTMENT of CIVIL ENGINEERING
Prerequisites and co-requisitesNone
Mode of DeliveryFace to face
Contact Hours14 weeks - 2 hours of lectures and 1 hour of practicals per week
LecturerProf. Dr. Talat Şükrü ÖZŞAHİN
Co-LecturerPROF. DR. Ahmet BİRİNCİ,PROF. DR. Ahmet BİRİNCİ,
Language of instructionTurkish
Professional practise ( internship ) None
 
The aim of the course:
To provide students with a clear understanding of dynamic principles of engineering structures.
 
Learning OutcomesCTPOTOA
Upon successful completion of the course, the students will be able to :
LO - 1 : develop an understanding of processes and key issues related to particle dynamics and rigid body dynamics in two and three-dimensional space.1,21
LO - 2 : understand an ability to solve a wide range of numerical problems and carry out design tasks on kinematics of particles, plane kinematics of rigid bodies.1,21
LO - 3 : understand kinetics of particles, plane kinetics of rigid bodies and three-dimensional kinematics and kinetics of rigid bodies.1,21
LO - 4 : apply the principles of kinematics and kinetics to more complex mechanisms and understand how damping and force modelling can be applied to problems involving a single and multi degree of freedom vibrations.1,21
CTPO : Contribution to programme outcomes, TOA :Type of assessment (1: written exam, 2: Oral exam, 3: Homework assignment, 4: Laboratory exercise/exam, 5: Seminar / presentation, 6: Term paper), LO : Learning Outcome

 
Contents of the Course
Definition and classification. Kinematics and kinetics of particles. Celestial mechanics. Energy method. Variable systems of particles. Kinematics and kinetics of rigid bodies. Mechanical vibrations
 
Course Syllabus
 WeekSubjectRelated Notes / Files
 Week 1Rectilinear kinematics
 Week 2Dependent-independent relative motion, curvelinear motion rectangular components
 Week 3Normal and tangential components, polar and cylindrical components
 Week 4kinetics of particles, system of particles
 Week 5Central-force motion, principle of work and energy
 Week 6Conservative force, conservation of energy, power
 Week 7Impulse and momentum principle, impact
 Week 8Angular impulse and momentum principles, propulsion with variable mass
 Week 9Mid-term exam
 Week 10kinematics of rgid bodies
 Week 11Planar kinetics
 Week 12Three dimensional kinetics of rigid body - principle of work and energy
 Week 13Three dimensional kinetics of rigid body - principle of impulse and momentum
 Week 14Mechanical vibrations
 Week 15Mechanical vibrations
 Week 16End-of-term exam
 
Textbook / Material
1BEER, Ferdinand P., JOHSTON, E.Russel. 1962;MÜHENDİSLER İÇİN MEKANİK-DİNAMİKÇ: TAMEROĞLU, Sacit., ÖZBEK, Tekin. 1991; Birsen, İstanbul
2BAKİOĞLU, Mehmet. 2000; DİNAMİK, Beta , İstanbul
3AKÖZ, Yalçın. 2000; MÜHENDİSLER İÇİN MEKANİK-DİNAMİK, Beta, İstanbul
 
Recommended Reading
1TIMESHENKO,S., YOUNG,D.H. 1968; MÜHENDİSLİK MEKANİĞİ II KISIM-DİNAMİKÇ: KAYAN, İlhan. 1968;İTÜ, İnşaat Fakültesi Matbaası
2AKÖZ, Yalçın., OMURTAG, Mehmet. 1993;MÜHENDİSLER İÇİN MEKANİK-DİNAMİK , Beta, İstanbul
3ŞUHUBİ, Erdoğan S. 1998; RİJİD CİSİMLER DİNAMİĞİ ,İTÜ, Fen-Edebiyat Fakültesi Matbaası
4RILEY, William F. , STURGES, Leroy D. 1995; DYNAMICS 2e ,Wiley.
5HIBBELER, Russel C. 2001; STATICS and DYNAMICS 9e , Printice Hall.
 
Method of Assessment
Type of assessmentWeek NoDate

Duration (hours)Weight (%)
Mid-term exam 9 2 50
End-of-term exam 16 2 50
 
Student Work Load and its Distribution
Type of workDuration (hours pw)

No of weeks / Number of activity

Hours in total per term
Yüz yüze eğitim 3 14 42
Sınıf dışı çalışma 6 14 84
Arasınav için hazırlık 10 1 10
Arasınav 2 1 2
Dönem sonu sınavı için hazırlık 10 1 10
Dönem sonu sınavı 2 1 2
Total work load150