Skip to main content
TR

ELECTRICAL MATERIALS

Course
ELE305 - ELECTRICAL MATERIALS
Department
Electrical - Electronic Engineering - English - Master
Course Type
Scientific Preparation
Status
Required
Language
English
Credit
0
ECTS
0
T+P+L
0 + 0 + 0
Course Coordinator(s)
Asst. Prof. Dr. Mehmet ŞENOL
Prerequisite
-
Keywords
-

Course Description

-

ELECTRICAL MATERIALS

Evaluation Tools (Active Term)

Item Type Weight (%)
Mid-Term Exam Midterm 30
Final Exam Final 40
Laboratory Assignment 15
Quiz 1 Quiz 5
Quiz 2 Quiz 5
Project Project 5
Total 100

Course outcomes

  1. 01 Outline the principles of electromechanical energy conversion.
  2. 02 Identify the effect of the electromagnetic field to electromechanical systems.
  3. 03 Analyze one- and multi-excited electromechanical systems.
  4. 04 Analyze and design DC machines.
  5. 05 Examine the structure and operation of the transformers.
  6. 06 Analyze and design three phase transformers.

Course Syllabus

Week Topic
Week 1 Mechanical and electromagnetic fundamentals: The magnetic field
Week 2 Faraday's law and magnetic circuits
Week 3 Calculation of inductance and mutual inductance
Week 4 Electromagnetic Energy Conversion: Energy balance and force evaluation
Week 5 Transformers: ideal transformers
Week 6 Transformers: Real transformers, OC & SC tests, voltage regulation and efficiency
Week 7 Transformers: Real transformers, OC & SC tests, voltage regulation and efficiency
Week 8 MID-TERM EXAMINATION WEEK
Week 9 MID-TERM EXAMINATION WEEK
Week 10 Three-phase transformers: Revision of three-phase systems
Week 11 Three-phase transformers
Week 12 Three-phase transformers
Week 13 DC machinery fundamentals: Simple rotating four-loop machine
Week 14 Introduction to DC motors: The equivalent circuit of a DC motor
Week 15 Separately excited, shunt, series and compounded DC motors

Reference Books & Course Materials

  1. 01 Stephen J Chapman, Electric Machinery Fundamentals 5th Edition, McGraw-Hill, 2012.
  2. 02 Electrical Engineering Principles and Applications, 4rd Edition, by Allan R. Hambley, Pearson Education 2008.
  3. 03 A. E. Fitzgerald, C. Kingsley, S. D. Umans, Electric Machinery 6. Ed, McGraw-Hill, 2003.

Learning Outcomes

  1. L01 Outline the principles of electromechanical energy conversion.
  2. L02 Identify the effect of the electromagnetic field to electromechanical systems.
  3. L03 Analyze one- and multi-excited electromechanical systems.
  4. L04 Analyze and design DC machines.
  5. L05 Examine the structure and operation of the transformers.
  6. L06 Analyze and design three phase transformers.

Program Outcomes

  1. Based on bachelor's-level qualifications, be able to develop and deepen knowledge at the level of specialization in the same or a different field.
  2. Should be able to understand and appreciate the interdisciplinary interactions related to their field.
  3. Should be able to apply expert-level theoretical and practical knowledge acquired in their field.
  4. Should be able to integrate knowledge from their field with knowledge from other disciplines, interpret it, and generate new knowledge.
  5. Should be able to resolve problems encountered in their field through the application of appropriate research methods.
  6. Should be able to independently carry out research or professional work that requires expertise in their field.
  7. Should be able to develop innovative strategic approaches for resolving complex and unpredictable problems encountered in their field of practice and take responsibility for producing effective solutions.
  8. Should be able to demonstrate leadership in environments where solving problems related to their field is required.
  9. Should be able to critically assess the advanced knowledge and skills acquired in their field and manage their own learning processes.
  10. Should be able to systematically present current developments in their field and their own studies, supported by quantitative and qualitative data, to both disciplinary and non-disciplinary audiences through written, oral, and visual communication.
  11. Should be able to critically analyze and enhance social relationships and the norms that shape these relationships, and initiate actions aimed at their transformation when necessary.
  12. Should be able to communicate effectively through oral and written communication in at least one foreign language at the B2 level of the Common European Framework of Reference for Languages (CEFR).
  13. Should be able to utilize information and communication technologies and relevant computer software at an advanced level appropriate to the requirements of their field.
  14. Should be able to manage and evaluate the processes of collecting, interpreting, applying, and communicating data related to their field in accordance with social, scientific, cultural, and ethical values, and promote the understanding of these values.
  15. Should be able to develop strategies, policies, and action plans in areas related to their field and assess the results obtained in accordance with quality assurance processes.
  16. Should be able to apply the advanced knowledge acquired in their field, along with problem-solving and application skills, in interdisciplinary studies.

Po-Lo Matrix

LO Average
L01 - - - - - - - - - - - - - - - - -
L02 - - - - - - - - - - - - - - - - -
L03 - - - - - - - - - - - - - - - - -
L04 - - - - - - - - - - - - - - - - -
L05 - - - - - - - - - - - - - - - - -
L06 - - - - - - - - - - - - - - - - -