OMZ106 Engineering Mechanics I (Statics)

4 ECTS - 3-0 Duration (T+A)- 2. Semester- 3 National Credit

Information

Unit FACULTY OF ENGINEERING
AUTOMOTIVE ENGINEERING PR.
Code OMZ106
Name Engineering Mechanics I (Statics)
Term 2018-2019 Academic Year
Semester 2. 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
Label C Compulsory
Mode of study Yüz Yüze Öğretim
Catalog Information Coordinator Prof. Dr. ALİ KESKİN
Course Instructor Prof. Dr. MEHMET BİLGİLİ (Bahar) (A Group) (Ins. in Charge)


Course Goal / Objective

To introduce the student the statics of vector algebra, equilibrium of particles and rigid bodies (plane and space), resultant forces and components, definitions of force and moment vectors, trusses and internal forces.

Course Content

Principles of statics, force vectors, resultant forces and components equilibrium of particle, moment and couple, equivalent forces systems, free-body diagrams, equilibrium in two and three dimensions, trusses and internal forces.

Course Precondition

Resources

Notes



Course Learning Outcomes

Order Course Learning Outcomes
LO01 Gain the ability to apply mathematics, science, and engineering knowledge,
LO02 Will be able to draw and analyze free body diagrams of rigid bodies under the influence of forces.
LO03 Learns the international problems and resources of today's Turkey.
LO04 Gains the ability to analyze lattice systems.
LO05 Calculates the internal forces of beams under the influence of forces
LO06 Calculates internal forces and center of gravity of objects
LO07 Learns the moment of inertia of objects and the concept of friction.


Relation with Program Learning Outcome

Order Type Program Learning Outcomes Level


Week Plan

Week Topic Preparation Methods
1 Static of particles, equilibrium of particles, space system forces Read the related topics in the lecture notes and reference books
2 Static of particles, equilibrium of particles, space system forces Read the related topics in the lecture notes and reference books
3 Static of particles, equilibrium of particles, space system forces Read the related topics in the lecture notes and reference books
4 Static of particles, equilibrium of particles, space system forces Read the related topics in the lecture notes and reference books
5 Rigid bodies, equivalent force systems, equilibrium of rigid bodies Read the related topics in the lecture notes and reference books
6 Rigid bodies, equivalent force systems, equilibrium of rigid bodies Read the related topics in the lecture notes and reference books
7 Rigid bodies, equivalent force systems, equilibrium of rigid bodies Read the related topics in the lecture notes and reference books
8 Midterm Exam Writing exam.
9 Distributed loads, center of gravity, structural systems, beams and cables. Read the related topics in the lecture notes and reference books
10 Distributed loads, center of gravity, structural systems, beams and cables. Read the related topics in the lecture notes and reference books
11 Distributed loads, center of gravity, structural systems, beams and cables. Read the related topics in the lecture notes and reference books
12 Distributed loads, center of gravity, structural systems, beams and cables. Read the related topics in the lecture notes and reference books
13 Moments of inertia of areas and masses,friction, virtuel work. Read the related topics in the lecture notes and reference books
14 Moments of inertia of areas and masses,friction, virtuel work. Read the related topics in the lecture notes and reference books
15 Moments of inertia of areas and masses,friction, virtuel work. Read the related topics in the lecture notes and reference books
16 Final examination Lecture notes and reference books
17 Final examination Lecture notes and reference books


Assessment (Exam) Methods and Criteria

Assessment Type Midterm / Year Impact End of Term / End of Year Impact
1. Midterm Exam 100 40
General Assessment
Midterm / Year Total 100 40
1. Final Exam - 60
Grand Total - 100


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 6 6
Final Exam 1 10 10
Total Workload (Hour) 100
Total Workload / 25 (h) 4,00
ECTS 4 ECTS

Update Time: 04.05.2023 10:37