Dersin Adı Dersin Seviyesi Dersin Kodu Dersin Tipi Dersin Dönemi Yerel Kredi AKTS Kredisi Ders Bilgileri
ELECTROMAGNETIC THEORY -I İkinci Düzey PHYS520 Zorunlu 1 7.50 7.50 Yazdır
   
Dersin Tanımı
Ön Koşul Dersleri Yok
Eğitimin Dili İngilizce
Koordinatör Assoc. Prof. Kevser Şahin Tıraş
Dersi Veren Öğretim Eleman(lar)ı Assoc. Prof. Kevser Şahin Tıraş
Yardımcı Öğretim Eleman(lar)ı -
Dersin Veriliş Şekli Face-to-face theoretical lectures supported by problem-solving sessions and classroom discussions.
Dersin Amacı The aim of this course is to provide students with a fundamental understanding of electromagnetic theory and the physical principles governing electromagnetic phenomena. The course covers the fundamental concepts of electric and magnetic fields, electrostatics, magnetostatics, electric potential, Gauss’s law, Ampère’s law, Faraday’s law, and the basic principles of Maxwell’s equations. Students will develop the ability to formulate and solve electromagnetic problems using appropriate mathematical methods and to interpret the physical meaning of electromagnetic fields and their interactions.
Dersin Tanımı This course introduces the fundamental concepts and principles of electromagnetic theory. It covers electric and magnetic fields, electrostatics, electric potential, Gauss’s law, conductors and dielectrics, magnetostatics, Ampère’s law, magnetic fields, electromagnetic induction, and the basic formulation of Maxwell’s equations. The course also emphasizes the mathematical formulation of electromagnetic phenomena and the application of fundamental laws to solve physical problems.

Dersin İçeriği
1 Introduction to Electromagnetic Theory: Basic concepts, fundamental interactions, units and vector analysis
2 Electric Charge and Electric Field: Coulomb’s law, electric field and field lines
3 Electric Flux and Gauss’s Law: Electric flux, Gauss’s law and applications
4 Electric Potential: Electric potential, potential difference, potential due to continuous charge distributions
5 Conductors, Dielectrics and Capacitance: Properties of conductors and dielectrics, capacitors and capacitance
6 Electrostatic Energy: Energy stored in electric fields, energy density and electrostatic boundary conditions
7 Magnetostatic Fields: Magnetic force, Biot–Savart law and magnetic fields of current distributions
8 Midterm Examination
9 Ampère’s Law: Ampère’s circuital law and its applications to symmetric current distributions
10 Magnetic Materials: Magnetic dipoles, magnetization, magnetic susceptibility and boundary conditions
11 Electromagnetic Induction: Faraday’s law, Lenz’s law, motional emf and induced electric fields
12 Maxwell’s Equations: Displacement current and integral and differential forms of Maxwell’s equations
13 Electromagnetic Waves – Introduction: Wave equations, propagation of electromagnetic waves and basic properties
14 Final Examination
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Dersin Öğrenme Çıktıları
1 Explain the fundamental concepts of electromagnetic theory, including electric charge, electric field, magnetic field, and electromagnetic interactions.
2 Apply Coulomb’s law, the principle of superposition, and the concept of electric potential to analyze electrostatic systems.
3 Apply Gauss’s law to determine electric fields for charge distributions with appropriate symmetry.
4 Analyze the behavior of electric fields and potentials in conductors and dielectrics and explain the basic principles of capacitance and electrostatic energy.
5 Apply the Biot–Savart law and Ampère’s law to determine magnetic fields generated by different current distributions.
6 Explain the fundamental properties of magnetic materials and analyze magnetic fields and boundary conditions at interfaces.
7 Apply Faraday’s and Lenz’s laws to analyze electromagnetic induction, induced electromotive force, and time-varying electromagnetic fields.
8 Formulate and interpret Maxwell’s equations in integral and differential forms and explain their physical significance.
9 Formulate and solve basic electromagnetic problems using appropriate mathematical methods and interpret the physical meaning of the obtained results.
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*Dersin Program Yeterliliklerine Katkı Seviyesi
1 To develop and deepen current and advanced knowledge in the field at the level of expertise with original thought and research, based on master''s degree qualifications, and to reach original definitions that will bring innovation to science.
2 To understand the interaction between disciplines related to the field of physics; Achieving original results by using knowledge that requires expertise in analyzing, synthesizing and evaluating new and complex ideas
3 To be able to access new scientific information in the field of physics and to gain high-level skills in research methods related to the field.
4 To be able to develop a new scientific method in the field of physics or to apply a known method to a different problem.
5 Being able to research, comprehend, design, adapt and apply an original subject
6 Ability to question, synthesize and evaluate new and complex ideas
7 Publishing original studies in peer-reviewed journals
8 To be able to develop original ideas and methods related to the field and interdisciplinary by using high-level mental processes such as creative and questioning thinking, problem solving and decision making.
9 Ability to present original views effectively within a community of experts
10 Being able to communicate and discuss at an advanced level in written, oral and visual language in at least one foreign language.
11 To contribute to the process of becoming an information society by introducing technological advances in the academic and professional context
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Yıldızların sayısı 1’den (en az) 5’e (en fazla) kadar katkı seviyesini ifade eder

Planlanan Öğretim Faaliyetleri, Öğretme Metodları ve AKTS İş Yükü
  Sayısı Süresi (saat) Sayı*Süre (saat)
Yüz yüze eğitim 14 3 42
Sınıf dışı ders çalışma süresi (ön çalışma, pekiştirme) 14 4 56
Ödevler 12 4 48
Sunum / Seminer hazırlama 0 0 0
Kısa sınavlar 0 0 0
Ara sınavlara hazırlık 1 15 15
Ara sınavlar 1 2 2
Proje (Yarıyıl ödevi) 0 0 0
Laboratuvar 0 0 0
Arazi çalışması 0 0 0
Yarıyıl sonu sınavına hazırlık 1 20 20
Yarıyıl sonu sınavı 1 2 2
Araştırma 0 0 0
Toplam iş yükü     185
AKTS     7.50

Değerlendirme yöntemleri ve kriterler
Yarıyıl içi değerlendirme Sayısı Katkı Yüzdesi
Ara sınav 1 60
Kısa sınav 0 0
Ödev 12 40
Yarıyıl içi toplam   100
Yarıyıl içi değerlendirmelerin başarıya katkı oranı   40
Yarıyıl sonu sınavının başarıya katkı oranı   60
Genel toplam   100

Önerilen Veya Zorunlu Okuma Materyalleri
Ders kitabı Klasik Elektrodinamik, John David JACKSON,çev: Prof. Dr. Zeki Zekeriya AYDIN
Yardımcı Kaynaklar

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