FZK102 Physics II

7 ECTS - 4-2 Duration (T+A)- 2. Semester- 5 National Credit

Information

Unit FACULTY OF SCIENCE AND LETTERS
PHYSICS PR.
Code FZK102
Name Physics II
Term 2018-2019 Academic Year
Semester 2. Semester
Duration (T+A) 4-2 (T-A) (17 Week)
ECTS 7 ECTS
National Credit 5 National Credit
Teaching Language Türkçe
Level Lisans Dersi
Type Normal
Label C Compulsory
Mode of study Yüz Yüze Öğretim
Catalog Information Coordinator Prof. Dr. METİN ÖZDEMİR
Course Instructor Prof. Dr. METİN ÖZDEMİR (Bahar) (A Group) (Ins. in Charge)


Course Goal / Objective

Examine the theories of electricity and magnetism

Course Content

Electric charge Electric field Gauss law Electric potential Capacitance and Dielectrics Electric current in the matter Direct current circuits The effects of the magnetic field, Magnetic field, Faradays law The matter and magnetism Inductance and circuit oscillations

Course Precondition

Resources

Notes



Course Learning Outcomes

Order Course Learning Outcomes
LO01 Explains the basic structure and the basic building blocks of an atom, knows the charge concept.
LO02 Comprehends the Coulomb law can apply it to certain charge distributions.
LO03 Knows the electric field conecpt and can find the electric field due to certain charge distributions.
LO04 Knows the concept of electric flux and knows Gauss's law.
LO05 Comprehends how to treat the motion of a charged particle in a magnetic field.
LO06 Knows the concepts of work, potential and potential energy.
LO07 Knows how to calculate the potential due to a charge distribution.
LO08 Presents the capacitance and dielectric concepts, can calculate the capacitance of certain geometric structures.
LO09 Knows the concepts of current and resistance and can use them.
LO10 Knowledgable about direct current circuits.
LO11 Knowladgble about magnetic fields and the motion of a charged particle in a magnetic field.
LO12 Knows the sources of magnetic fields, knows how to calculate the magnetic field due to a current carryin wire. Knows Ampere's law.
LO13 Knows Faraday's law and can use it in applications.


Relation with Program Learning Outcome

Order Type Program Learning Outcomes Level
PLO01 - Explain the basic concepts and principles in the field of physics. 4
PLO02 - Evaluate the developmets in the field of Physics by using scientific methods and techniques. 2
PLO03 - Combine the knowledge in the field of physics with the other scientific area 4
PLO04 - Identify problems in the field of physics and for the solutions apply the analytical and simulative methods. 3
PLO05 - Explain the methods of producing scientific knowledge in the field of physics 2
PLO06 - Reach the Information in the field of physics, for the purpose of classification, and uses. 3
PLO07 - Use the advanced theoretical and practical knowledge acquired in the field of physics. 1
PLO08 - Design experiments in the field of physics. 3
PLO09 - Inform the specialist or non-specialist groups, orally or in writing on issues related to physics. 1
PLO10 - Use the information technologies in Physics area for their purpose. 2
PLO11 - Take responsibility as a team or alone to overcome the problems encountered in the field of physics . 3
PLO12 - Plan and manage the activities for the professional developments of emplyees under his/her responsibilities. 1
PLO13 - Classify, use and critically evaluate the knowledg taken by his/her efforts. 3
PLO14 - Know that learning process is life-long and acts accordingly. 3
PLO15 - Both with colleagues, as well as off the field of builds relationships ethically use information, communication technologies. Define necessities in learning in scientific, social, cultural and artistic areas and improve himself/herself accordingly. 3
PLO16 - Have knowledge of a foreign language at least monitoring developments in the field of physics. 1
PLO17 - Know the importance of individual development. 3
PLO18 - Monitor the developments in the field of physics, learn and evaluate in terms of social ethics. 3


Week Plan

Week Topic Preparation Methods
1 Electric charge Study the relevant chapter in the textbook
2 Electric fields Study the relevant chapter in the textbook
3 Gauss law Study the relevant chapter in the textbook
4 Electric potential Study the relevant chapter in the textbook
5 Capacitance and Dielectrics Study the relevant chapter in the textbook
6 Electric current in the matter Study the relevant chapter in the textbook
7 Electric current in the matter Study the relevant chapter in the textbook
8 Mid-Term Exam Mid-term exam
9 Direct current circuits Study the relevant chapter in the textbook
10 The effects of the magnetic field Study the relevant chapter in the textbook
11 Magnetic field Study the relevant chapter in the textbook
12 Faradays law Study the relevant chapter in the textbook
13 The matter and magnetism Study the relevant chapter in the textbook
14 Inductance and circuit oscillations Study the relevant chapter in the textbook
15 Inductance and circuit oscillations Study the relevant chapter in the textbook
16 Term Exams Final exam
17 Term Exams Final exam


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 4 56
Out of Class Study (Preliminary Work, Practice) 14 4 56
Assesment Related Works
Homeworks, Projects, Others 0 0 0
Mid-term Exams (Written, Oral, etc.) 1 18 18
Final Exam 1 36 36
Total Workload (Hour) 166
Total Workload / 25 (h) 6,64
ECTS 7 ECTS

Update Time: 29.04.2025 02:29