Eskisehir Technical University Info Package Eskisehir Technical University Info Package
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About the Program Educational Objectives Key Learning Outcomes Course Structure Diagram with Credits Field Qualifications Matrix of Course& Program Qualifications Matrix of Program Outcomes&Field Qualifications
  • Faculty of Engineering
  • Deparment of Mechanical Engineering (30% English)
  • Course Structure Diagram with Credits
  • Physics II
  • Description
  • Description
  • Learning Outcomes
  • Course's Contribution to Prog.
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  • ECTS Credit Load

Course Introduction Information

Code - Course Title FİZ106 - Physics II
Course Type Required Courses
Language of Instruction Türkçe
Laboratory + Practice 4+0
ECTS 6.0
Course Instructor(s) PROFESÖR DOKTOR TÜLAY HURMA
Mode of Delivery Face to face
Prerequisites There is no prerequisite or co-requisite for this course.
Courses Recomended There is no recommended optional programme component for this course.
Required or Recommended Resources
Recommended Reading List 1. Serway, R. A., Beichner, R. J., Jewett, J, çeviri editörü Çolakoğlu, K., (2007) Fen ve Mühendislik için Fizik, Palme Yayıncılık, Ankara. 2. Özdaş, K.,  (....)Fenciler ve Mühendisler için Fizik (elektrik ve magnetizma). Bilim ve Teknik Yayınevi, Eskişehir.component for this course.
Assessment methods and criteria One midterm and a final exams.
Work Placement   Not applicable.
Sustainability Development Goals Quality Education , Accessible and Clean Energy , Industry, Innovation and Infrastructure

Content

Weeks Topics
Week - 1 Electric Charges and Coulomb’s Law: a) Properties of electric charges b) Insulators and conductors c) Coulomb’s Law
Week - 2 Electric Field and the Motion in Electric Field: a) Electric field b)Electric field lines c) Electric field of a continuous charge distribution d) Motion of charged particles in a uniform electric field.
Week - 3 Gauss' Law: a) Electric flux b) Gauss' Law c) Application of Gauss' Law to charged insulators d) Conductors in electrostatic equilibrium
Week - 4 Electric Potential: a) Potential difference and electric potential b) Potential difference in a uniform electric field c) Electric potential and potential energy due to point charge d) Electric potential due to continuous charge distributions e) Obtaining electric field from the electric potential
Week - 5 Capacitors and Dielectrics: a) Defination of capacitance b) Caıculation of capacitance c) Combinations of capacitors
Week - 6 d) Capacitors with dielectrics e) Energy stored in a charged capacitor
Week - 7 Current and Resistance: a) Electric current and current density b) Resistance and Ohm's Law c) The resistivity of different conductors d) Electrical energy and power
Week - 8 Direct Current Circuits: a) Electromotive force b) Resistors in series and parallel c) Kirchhoff' s Rules
Week - 9 Magnetic Fields: a) Defination and properties of the magnetic field b) Magnetic force on a current- carrying conductor c) Motion of a charged particle in a magnetic field
Week - 10 Sources of the Magnetic Field: a) Biot- Savart' s Law b) The magnetic force between two parallel conductors
Week - 11 c) Ampere' s Law d) The magnetic field of a solenoid
Week - 12 Faraday' s Law: a) Faraday' s Law of induction b) Magnetic flux
Week - 13 Faraday's Law: c) Motion and induction d) Lenz' s Law
Week - 14 Inductance: a) Self-inductance b) Energy in magnetic field c) Mutual inductance

Learning Activities and Teaching Methods

  • Teaching Methods
  • Lecture
  • Observation
  • Team/Group Work
  • Experiment
  • Competences
  • Questoning
  • Follow ethical and moral rules
  • Problem solving
  • Elementary computing skills

Assessment Methods

Assessment Method and Passing Requirements
Quamtity Percentage (%)
1.Midterm Exam 1 40
Final Exam 1 60
Toplam (%) 100
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