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PHYS1000 | Physics II | 3+0+1 | ECTS:5 | Year / Semester | Spring Semester | Level of Course | First Cycle | Status | Compulsory | Department | DEPARTMENT of ELECTRICAL and ELECTRONICS ENGINEERING | Prerequisites and co-requisites | None | Mode of Delivery | Face to face, Lab work | Contact Hours | 14 weeks - 3 hours of lectures and 1 hour of laboratory per week | Lecturer | Dr. Öğr. Üyesi Emine YILDIRIM | Co-Lecturer | | Language of instruction | | Professional practise ( internship ) | None | | The aim of the course: | The main objectives of this course are to provide the student with a clear presentation of the basic concepts and principles of physics. The students should obtain satisfactory knowledge about the electrostatic and magnetostatic. |
Learning Outcomes | CTPO | TOA | Upon successful completion of the course, the students will be able to : | | | LO - 1 : | learn the basic concept and principles of physics clearly and logically.
| 1,3,6 | 1 | LO - 2 : | understand at a large viewpoint with the intrinsic application in the real word, basic concept and principles of physics. physics understandability will be provided.
| 1,6 | 1 | LO - 3 : | engage work of nature laws from physical theories. | 3,6 | 1 | LO - 4 : | improve thinking about physical subjects and ability of asking question. | 2,3,6 | 1 | LO - 5 : | gain and improve problem solving ability. | 2,5,7 | 1 | 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 | |
Electric fields. Gauss' law. Electric potential. Capacitance and dielectrics. Current and resistance. Direct current circuits. Magnetic fields. Sources of the magnetic field. Faraday's law. Inductance. Alternating current circuits. Electromagnetic waves. The nature of light and the laws of geometric optics. Geometric optics. Interference of light waves. |
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Course Syllabus | Week | Subject | Related Notes / Files | Week 1 | Properties of Electric Charges, Electric Fields, Coulomb's Law, Problems
| | Week 2 | Electric Flux, Gauss's Law and Its Applications, Problems
| | Week 3 | Electric Potential, Potential Differences in a Uniform Electric Field, Electric Potential Due to Continuous Charge Distributions, Problems
| | Week 4 | Capacitance, Combinations of Capacitors, Energy Stored in a Charged Capacitor, Capacitors with Dielectrics, Problems
| | Week 5 | Electric Current,Resistance and Ohm's Law, Electric Energy and Power, Problems
| | Week 6 | Sources of emf , Direct Current Circuits, Kirchhoff's Rules, RC Circuits, Problems
| | Week 7 | Magnetic Fields, Motion of a Charged Particle in a Uniform Magnetic Field, Problems
| | Week 8 | Biot Savart Law, Magnetic Forces Between Two Parallel Conductors, Ampere's Law, Problems
| | Week 9 | Mid-term exam | | Week 10 | Faraday's Law of Induction, Motional emf, Lenz's Law , Problems
| | Week 11 | Self-Inductance, RL Circuits, Energy Stored in a Magnetic Field, Problems
| | Week 12 | Alternating Current Circuits, Problems
| | Week 13 | Displacement Current and Generalized Ampere's Law, Maxwell's Equations, Problems
| | Week 14 | Electromagnetic Waves, Problems
| | Week 15 | Review and Problem Solutions | | Week 16 | End-of-term exam | | |
1 | Serway R. A. , Beichner J., Jewett J. W. 2000; (Physics for Scientists and Engineers, 5th Edition) | | |
1 | Physics for Scientist and Engineers, P. M. Fishbane, S. Gasiorowicz, S. T. Thornton | | |
Method of Assessment | Type of assessment | Week No | Date | Duration (hours) | Weight (%) | Mid-term exam | 09 | 15/04/2024 | 100 dk | 50 | End-of-term exam | 16 | 03/06/2024 | 100 dk | 50 | |
Student Work Load and its Distribution | Type of work | Duration (hours pw) | No of weeks / Number of activity | Hours in total per term | Yüz yüze eğitim | 3 | 14 | 42 | Sınıf dışı çalışma | 3 | 14 | 42 | Arasınav için hazırlık | 8 | 1 | 8 | Arasınav | 2 | 1 | 2 | Uygulama | 1 | 14 | 14 | Dönem sonu sınavı için hazırlık | 15 | 1 | 15 | Dönem sonu sınavı | 2 | 1 | 2 | Diğer 1 | 2 | 1 | 2 | Total work load | | | 127 |
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