Course Information

Course Information
Course Title Code Language Type Semester L+U Hour Credits ECTS
Scientific Principles of Technology TBI1101 Turkish Compulsory 1. Semester 3 + 1 4.0 4.0
Prerequisite Courses
Course Level Associate
Mode of delivery Face to Face
Course Coordinator Öğr. Gör. Kudbeddin ARGUN
Instructor(s) Öğr. Gör. Kudbeddin ARGUN (Güz)
Goals To be able to comprehend the basic rules of physics, to recognize materials and to conduct experiments in order for the student to adapt to further education. To be able to comprehend the basic rules of materials, statics, mechanics, fluids, wave propagation, electricity and magnetism. To be able to determine variables, draw graphs and develop analysis skills in laboratory studies.
Course Content To be able to comprehend the basic rules of physics, to recognize materials and to conduct experiments in order for the student to adapt to further education. To be able to comprehend the basic rules of materials, statics, mechanics, fluids, wave propagation, electricity and magnetism. To be able to determine variables, draw graphs and develop analysis skills in laboratory studies.
Learning Outcomes
# Öğrenme Kazanımı
1 DK1-When the student completes the course: He/she will understand the basic rules of physics. He/she will be able to solve and interpret basic problems related to the statics and dynamics of objects.
2 Knows where and how to apply these concepts in subsequent professional courses. Conducts laboratory studies and experiments to verify and interpret theoretical knowledge. Distinguishes materials and objects. Prepares for interpreting the physical and chemical behavior of materials.
Lesson Plan (Weekly Topics)
Week Topics/Applications Method
1. Week Introduction (Unit systems and conversions, Basic concepts) Preparation, After Class Study, Research, Presentation (Preparation)
2. Week Static (Force, separation into components, component, moment and balance conditions, center of gravity) Preparation, After Class Study, Research, Presentation (Preparation)
3. Week Static (Force, separation into components, component, moment and balance conditions, center of gravity) Preparation, After Class Study, Research, Presentation (Preparation)
4. Week Static (Force, separation into components, component, moment and balance conditions, center of gravity) Preparation, After Class Study, Research, Presentation (Preparation)
5. Week Static (Force, separation into components, component, moment and balance conditions, center of gravity) Preparation, After Class Study, Research, Presentation (Preparation)
6. Week Kinematics (Newton's equations of motion, Linear motion, Relative motion) Preparation, After Class Study, Research, Presentation (Preparation)
7. Week Kinematics (Newton's equations of motion, Linear motion, Relative motion) Preparation, After Class Study, Research, Other Activities, Presentation (Preparation)
8. Week Kinematics (Newton's equations of motion, Linear motion, Relative motion) Preparation, After Class Study, Research, Presentation (Preparation)
9. Week Energy, work, power (Energy and its types, transformations, Work, power, efficiency, Hook's law,) Preparation, After Class Study, Research, Presentation (Preparation)
10. Week Energy, work, power (Energy and its types, transformations, Work, power, efficiency, Hook's law,) Preparation, After Class Study, Research, Presentation (Preparation)
11. Week Energy, work, power (Energy and its types, transformations, Work, power, efficiency, Hook's law,) Preparation, After Class Study, Research, Other Activities, Presentation (Preparation)
12. Week Energy, work, power (Energy and its types, transformations, Work, power, efficiency, Hook's law,) Preparation, After Class Study, Research, Other Activities, Presentation (Preparation)
13. Week Density, buoyancy of liquids Preparation, After Class Study, Research, Other Activities, Presentation (Preparation)
14. Week Density, buoyancy of liquids Preparation, After Class Study, Research, Presentation (Preparation)
*Midterm and final exam dates are not specified in the 14-week course operation plan. Midterm and final exam dates are held on the dates specified in the academic calendar with the decision of the University Senate.
The Matrix for Course & Program Learning Outcomes
No Program Requirements Level of Contribution
1 2 3 4 5
2 2. Has knowledge about occupational health and safety, environmental awareness and quality processes.
3 3. Follows current developments and applications for his/her profession and uses them effectively.
4 4. Effectively uses information technologies (software, program, animation etc.) related to his/her profession.
5 5. Has the ability to evaluate professional problems and issues independently with an analytical and critical approach and present solution proposals.
6 6. Can effectively present his/her thoughts through written and verbal communication at the level of knowledge and skills and express them in an understandable manner.
7 7. Takes responsibility as a team member to solve unforeseen complex problems encountered in applications related to his/her field.
9 9. Has social, scientific, cultural and ethical values in the stages of collecting, applying and announcing the results of data related to his/her field.
12 12. Defines and programs automation system elements
12 12. Defines and programs automation system elements
Relations with Education Attainment Program Course Competencies
Program Requirements DK1 DK2
PY2 4 4
PY3 3 3
PY4 1 1
PY5 2 2
PY6 1 1
PY7 2 2
PY9 2 2
PY12 2 2
Recommended Sources
Ders Kitabı veya Notu Ders Kitabı veya Ders Notu bulunmamaktadır.
Diğer Kaynaklar
  • -Materials Lecture Notes Prof. Dr. A. Emel GEÇGİNKİ ITU-1990 -Machine Tools – Prof. Mustafa AKKURT -Machining Technology – Halit BULUT – Şefik ÖZCAN -Milling – Nusret İPEKÇİOĞLU -Grinding and Tool Sharpening Technology – Mustafa BAĞCI – Yakup ERİŞGİN -Oxy-Acetylene and Electric Welding – Kasım ADSAN—Prof. Selahattin ANIK -MEGEP Machine Technology Field Textbooks -https://megep.meb.gov.tr/?page=moduller
Evaluation Method
Güz Dönemi
Responsible Personnel Grup Evaluation Method Percentage
Öğr. Gör. Kudbeddin ARGUN Vize 40.00
Öğr. Gör. Kudbeddin ARGUN Final 60.00
Toplam 100.00
ECTS credits and course workload
ECTS credits and course workload Quantity Duration (Hour) Total Workload (Hour)
Ders İçi
Class Hours 14 4 56
Ders Dışı
Preparation, After Class Study 1 10 10
Research 1 10 10
Other Activities 1 24 24
Sınavlar
Midterm 1 1 1 1
Final 1 1 1
Total Workload 102
*AKTS = (Total Workload) / 25,5 ECTS Credit of the Course 4.0