Information
Code | JZ227 |
Name | Statics and Dynamics |
Term | 2024-2025 Academic Year |
Semester | 3. Semester |
Duration (T+A) | 3-0 (T-A) (17 Week) |
ECTS | 4 ECTS |
National Credit | 3 National Credit |
Teaching Language | Türkçe |
Level | Lisans Dersi |
Type | Normal |
Mode of study | Yüz Yüze Öğretim |
Catalog Information Coordinator | Prof. Dr. HASAN ÇETİN |
Course Instructor |
Prof. Dr. HASAN ÇETİN
(A Group)
(Ins. in Charge)
|
Course Goal / Objective
Students are acquainted with the knowledge of moment of a force, resultants of force systems acting on rigid bodies, internal forces in engineering structures composed of simple trusses or beams.
Course Content
The course covers the statics of particles and rigid bodies. Topics include vector description of forces and moments, two and three dimensional equilibrium of particles and rigid bodies, centroids and centre of gravity, analysis of structures, friction, moments of inertia and mechanical vibrations.
Course Precondition
None
Resources
Beer F. P, Johnston Jr E. R., Mazurek D. F., Eisenberg, E., Cornwell, P. 2009. Vector Mechanics for Engineers: Statics and Dynamics, 9th edt., McGraw HillKeskinel, F. ve Özbek, T. 1995. Mühendisler için Mekanik-Statik. Birsen YayıneviTameroğlu S. S. ve Özbek, T. 1993. Mühendisler için Mekanik- Dinamik. Birsen Yayınevi
Notes
Beer, F. P. ve Johnston, E. R., 1987. Mechanics for Engineers, Statics
Course Learning Outcomes
Order | Course Learning Outcomes |
---|---|
LO01 | Understands to interpret data accurately. |
LO02 | Understands to apply theoretical strategies to the analysis of data. |
LO03 | Learns to synthesize research results for the purposes of discussion and written work. |
LO04 | Understands to apply mathematical and/or physical skills to engineering disciplines. |
LO05 | Learns to analyze engineering problems in a systematic and logical manner by using the principles of vector algebra and basic mathematics. |
Relation with Program Learning Outcome
Order | Type | Program Learning Outcomes | Level |
---|---|---|---|
PLO01 | Bilgi - Kuramsal, Olgusal | Adequate knowledge in mathematics, science and subjects specific to the discipline of geological engineering; ability to apply theoretical and applied knowledge in these areas to complex engineering problems. | 3 |
PLO02 | Bilgi - Kuramsal, Olgusal | The ability to identify, define, analyze, formulate, select (or develop) solution models and solve complex geology and geological engineering problems with the acquired knowledge. | |
PLO03 | Bilgi - Kuramsal, Olgusal | The ability to design and implement a complex system, process, device or product related to Geology and Geological Engineering using modern design methods to meet the needs under realistic constraints and conditions. | |
PLO04 | Yetkinlikler - Alana Özgü Yetkinlik | The ability to develop, select, and use modern techniques and tools required for the analysis and solution of a complex problem encountered in Geology and Geological Engineering applications and the ability to use information technologies effectively. | |
PLO05 | Yetkinlikler - Alana Özgü Yetkinlik | The ability to design and conduct experiments, collect data, analyze and interpret results, and design and conduct experiments to investigate complex engineering problems or research topics specific to the discipline of Geology and Geological Engineering. | |
PLO06 | Yetkinlikler - Bağımsız Çalışabilme ve Sorumluluk Alabilme Yetkinliği | The ability to work effectively in disciplinary and multidisciplinary teams; ability to work individually. | |
PLO07 | Beceriler - Bilişsel, Uygulamalı | The ability to communicate effectively in oral and written Turkish; knowledge of at least one foreign language; ability to write effective reports and understand written reports, prepare design and production reports, make effective presentations, to give and receive clear and understandable instructions. | |
PLO08 | Yetkinlikler - İletişim ve Sosyal Yetkinlik | Awareness of the necessity of lifelong learning; the ability to access information, to follow developments in science and technology, and to continuously renew oneself. | |
PLO09 | Yetkinlikler - İletişim ve Sosyal Yetkinlik | Acting in accordance with ethical principles when solving engineering problems, awareness of professional and ethical responsibility; knowledge of standards used in engineering practice. | |
PLO10 | Yetkinlikler - Öğrenme Yetkinliği | Knowledge of business life practices such as project management, risk management and change management; awareness of entrepreneurship and innovation; knowledge of sustainable development. | 1 |
PLO11 | Bilgi - Kuramsal, Olgusal | Knowledge about the global and societal effects on health, environment and safety in the solution of Geology and Geological Engineering applications and the problems of the era reflected in the field of engineering; awareness of the legal consequences of engineering solutions. |
Week Plan
Week | Topic | Preparation | Methods |
---|---|---|---|
1 | Statics of particles; forces in plane, forces in space, addition of vectors | Literature review | Öğretim Yöntemleri: Anlatım |
2 | Statics of particles; forces in plane, forces in space, addition of vectors (continued) | Study on previous lectures and homework | Öğretim Yöntemleri: Anlatım |
3 | Rigid bodies; equivalent systems of forces, vector product of two vectors, moment of a force about a point, scalar product of two vectors | Study on previous lectures and homework | Öğretim Yöntemleri: Anlatım |
4 | Equilibrium of rigid bodies; equilibrium in two dimensions, equilibrium in three dimensions. | Study on previous lectures and homework | Öğretim Yöntemleri: Anlatım |
5 | Distributed forces; centroids and centres of gravity, areas and lines, volumes | Study on previous lectures and homework | Öğretim Yöntemleri: Anlatım |
6 | Analysis of structures; trusses, frames and machines. | Study on previous lectures and homework | Öğretim Yöntemleri: Anlatım |
7 | Forces in beams and cables; beams, cables. | Study on previous lectures and homework | Öğretim Yöntemleri: Anlatım |
8 | Friction; Coefficient of friction, angles of friction. | Study on previous lectures and homework | Ölçme Yöntemleri: Yazılı Sınav |
9 | Midterm exam | Revision of previous lectures | Öğretim Yöntemleri: Anlatım |
10 | Distributed forces; Moments of inertia, moments of inertia of areas, moments of inertia of masses. | Study on previous lectures and homework | Öğretim Yöntemleri: Anlatım |
11 | Method of virtual work; work of force, potential energy, and equilibrium, stability of equilibrium. | Study on previous lectures and homework | Öğretim Yöntemleri: Anlatım |
12 | Kinetics of particles; force, mass and acceleration | Study on previous lectures and homework | Öğretim Yöntemleri: Anlatım |
13 | Kinetics of particles; energy and momentum methods | Study on previous lectures and homework | Öğretim Yöntemleri: Anlatım |
14 | Kinematics of rigid bodies; translation, rotation about a fixed axis, motion about a fixed point | Study on previous lectures and homework | Öğretim Yöntemleri: Anlatım |
15 | Mechanical vibrations; vibrations without damping, simple harmonic vibrations, forced vibrations, Damped vibrations, damped free and forced vibrations | Study on previous lectures and homework | Öğretim Yöntemleri: Anlatım |
16 | Mechanical vibrations; vibrations without damping, simple harmonic vibrations, forced vibrations, Damped vibrations, damped free and forced vibrations (continued-1) | Study on all semester lectures | Ölçme Yöntemleri: Yazılı Sınav |
17 | Mechanical vibrations; vibrations without damping, simple harmonic vibrations, forced vibrations, Damped vibrations, damped free and forced vibrations (continued-2) | Study on all semester lectures | Ölçme Yöntemleri: Yazılı Sınav |
Student Workload - ECTS
Works | Number | Time (Hour) | Workload (Hour) |
---|---|---|---|
Course Related Works | |||
Class Time (Exam weeks are excluded) | 14 | 3 | 42 |
Out of Class Study (Preliminary Work, Practice) | 14 | 3 | 42 |
Assesment Related Works | |||
Homeworks, Projects, Others | 0 | 0 | 0 |
Mid-term Exams (Written, Oral, etc.) | 1 | 7 | 7 |
Final Exam | 1 | 18 | 18 |
Total Workload (Hour) | 109 | ||
Total Workload / 25 (h) | 4,36 | ||
ECTS | 4 ECTS |