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The Bachelor of Science in Electric and Electronics Engineering (With Thesis) at Izmir University of Economics offers students a comprehensive education in the fundamental principles and advanced technologies of electrical and electronic systems. This program is designed to prepare graduates for the rapidly evolving fields of electrical engineering, automation, embedded systems, and renewable energy, providing both theoretical knowledge and practical skills essential for innovative problem-solving and technological development. Throughout the program, students engage with core disciplines such as circuit analysis, digital systems, signal processing, electromagnetic fields, control systems, and power electronics, gaining a solid foundation in the principles that underpin modern electrical and electronic devices and systems. The curriculum emphasizes hands-on learning through laboratory experiments, design projects, and industry-related internships, fostering technical competence and teamwork abilities.
The program's distinctive feature is the thesis requirement, which enables students to undertake independent research under faculty supervision, encouraging academic curiosity and contributing to advancements in electrical engineering. This research component enables students to delve into specialized areas such as smart grid technologies, renewable energy systems, robotics, communications, or embedded systems, aligning their academic pursuits with industry demands and technological trends. The department benefits from experienced faculty members who are actively involved in research and industry collaborations, providing students with mentorship, up-to-date knowledge, and access to cutting-edge facilities. Graduates of this program are equipped with a broad skill set suitable for careers in design, development, consultancy, and research within various sectors, including energy, manufacturing, telecommunications, and information technology.
Furthermore, the program supports the development of critical thinking, effective communication, and lifelong learning skills, essential for adapting to technological innovations and professional challenges. The university's strategic partnerships with industry and research institutions facilitate internships and employment opportunities for students, enhancing their integration into the workforce. Upon graduation, students receive an accredited degree that qualifies them for advanced studies or immediate entry into technical roles in the electrical and electronics engineering sectors, contributing to technological progress and sustainable development locally and globally. The program is particularly suited for students passionate about innovation, engineering solutions, and contributing to society through technological advancements in electrical and electronic domains.
To see the course details (such as objectives, learning outcomes, content, assessment and ECTS workload), click the relevant Course Code given in the table below.
1. Year Fall Semester | ||||||
Code | Pre. | Course Name | Theory | Application/Laboratory | Local Credits | ECTS |
EEE 551 | Linear Systems Theory | 3 | 0 | 3 | 7.5 | |
ELEC 001 | Elective Course I | 3 | 0 | 3 | 7.5 | |
ELEC 002 | Elective Course II | 3 | 0 | 3 | 7.5 | |
ELEC 003 | Elective Course III | 3 | 0 | 3 | 7.5 | |
Total : | 30 |
1. Year Spring Semester | ||||||
Code | Pre. | Course Name | Theory | Application/Laboratory | Local Credits | ECTS |
EEE 595 | Seminar | 3 | 0 | 3 | 7.5 | |
ELEC 004 | Elective Course IV | 3 | 0 | 3 | 7.5 | |
ELEC 005 | Elective Course V | 3 | 0 | 3 | 7.5 | |
ELEC 006 | Elective Course VI | 3 | 0 | 3 | 7.5 | |
Total : | 30 |
2. Year Fall Semester | ||||||
Code | Pre. | Course Name | Theory | Application/Laboratory | Local Credits | ECTS |
EEE 599 | Thesis | 0 | 0 | 0 | 30 | |
Total : | 30 |
2. Year Spring Semester | ||||||
Code | Pre. | Course Name | Theory | Application/Laboratory | Local Credits | ECTS |
EEE 599 | Thesis | 0 | 0 | 0 | 30 | |
Total : | 30 |
Elective Courses | ||||||
Code | Pre. | Course Name | Theory | Application/Laboratory | Local Credits | ECTS |
EEE 501 | Applied Digital Image Processing | 3 | 0 | 3 | 7.5 | |
EEE 502 | Pattern Recognition | 3 | 0 | 3 | 7.5 | |
EEE 503 | Introduction to Radar Signal Processing | 3 | 0 | 3 | 7.5 | |
EEE 504 | Bankaları / Wavelets and Filter Banks | 3 | 0 | 3 | 7.5 | |
EEE 505 | Biomedical Signals and Instrumentations | 3 | 0 | 3 | 7.5 | |
EEE 506 | Adaptive Signal Processing | 3 | 0 | 3 | 7.5 | |
EEE 509 | Selected Topics in Signal Processing | 3 | 0 | 3 | 7.5 | |
EEE 511 | Artificial Neural Networks for Signal Processing and Control | 3 | 0 | 3 | 7.5 | |
EEE 512 | Optimal Control | 3 | 0 | 3 | 7.5 | |
EEE 519 | Selected Topics in Circuits and Systems | 3 | 0 | 3 | 7.5 | |
EEE 521 | Microwaves Engineering | 3 | 0 | 3 | 7.5 | |
EEE 522 | RF ID systems | 3 | 0 | 3 | 7.5 | |
EEE 523 | Antenna Engineering | 3 | 0 | 3 | 7.5 | |
EEE 525 | Computational Electromagnetism | 3 | 0 | 3 | 7.5 | |
EEE 529 | Selected Topics in Electromagnetics and Antennas | 3 | 0 | 3 | 7.5 | |
EEE 531 | Analog Integrated Circuits | 3 | 0 | 3 | 7.5 | |
EEE 532 | Analog VLSI Design | 3 | 0 | 3 | 7.5 | |
EEE 533 | Digital VLSI Design | 3 | 0 | 3 | 7.5 | |
EEE 535 | Data Converters | 3 | 0 | 3 | 7.5 | |
EEE 536 | Communication Electronics | 3 | 0 | 3 | 7.5 | |
EEE 541 | Communication Theory | 3 | 0 | 3 | 7.5 | |
EEE 542 | Detection and Estimation Theory | 3 | 0 | 3 | 7.5 | |
EEE 543 | Basics of Wireless Communications | 3 | 0 | 3 | 7.5 | |
EEE 544 | Satellite Communication | 3 | 0 | 3 | 7.5 | |
EEE 549 | Selected topics in wireless communications | 3 | 0 | 3 | 7.5 | |
EEE 561 | Microprocessor Systems | 3 | 0 | 3 | 7.5 | |
EEE 562 | Real-Time Signal Processing | 3 | 0 | 3 | 7.5 | |
EEE 571 | Power System Analysis | 3 | 0 | 3 | 7.5 | |
EEE 572 | Power Quality Measurement | 3 | 0 | 3 | 7.5 | |
EEE 573 | Renewable Energy | 3 | 0 | 3 | 7.5 | |
EEE 579 | Selected Topics in Power Systems | 3 | 0 | 3 | 7.5 | |
EEE 601 | Fast Filtering Algorithms | 3 | 0 | 3 | 7.5 | |
EEE 602 | Video Processing | 3 | 0 | 3 | 7.5 | |
EEE 611 | Nonlinear System Analysis | 3 | 0 | 3 | 7.5 | |
EEE 612 | Chaos and Fractals | 3 | 0 | 3 | 7.5 | |
EEE 621 | Advanced Electromagnetic theory | 3 | 0 | 3 | 7.5 | |
EEE 651 | Stochastic Processes | 3 | 0 | 3 | 7.5 | |
IES 503 | Artificial Intelligence | 3 | 0 | 3 | 7.5 | |
IES 509 | Heuristics | 3 | 0 | 3 | 7.5 | |
IES 511 | Machine Learning | 3 | 0 | 3 | 7.5 | |
IES 513 | Mathematical Programming and Applications | 3 | 0 | 3 | 7.5 | |
IES 524 | Digital Image Processing | 3 | 0 | 3 | 7.5 |
Additional Notes |
SIGNAL PROCESSING 1. EEE 501 Applied Digital Image Processing 2. EEE 503 Introduction to Radar Signal Processing 3. EEE 504 Wavelets and Filter Banks 4. EEE 505 Biomedical Signals and Instrumentation 5. EEE 506 Adaptive Signal Processing 6. EEE 509 Selected Topics in Signal Processing 7. EEE 511 Artificial Neural Networks for Signal Processing and Control 8. EEE 562 Real-Time Signal Processing 9. EEE 601 Fast Filtering Algorithms 10. EEE 602 Video Processing CIRCUITS AND SYSTEM THEORY 1. EEE 512 Optimal Control 2. EEE 519 Selected Topics in Circuits and Systems 3. EEE 531 Analog Integrated Circuits 4. EEE 532 Analog VLSI Design 5. EEE 533 Digital VLSI Design 6. EEE 535 Data Converters 7. EEE 561 Microprocessor Systems 8. EEE 611 Nonlinear System Analysis ELECRICAL ENERGY AND POWER SYSTEMS 1. EEE 504 Wavelets and Filter Banks 2. EEE 571 Power System Analysis 3. EEE 572 Power Quality Measurement 4. EEE 573 Renewable Energy 5. EEE 579 Selected Topics in Power Systems 6. EEE 601 Fast Filtering Algorithms MICROWAVE AND ANTENNAS 1. EEE 521 Microwave Engineering 2. EEE 522 RFID Systems 3. EEE 523 Antenna Engineering 4. EEE 525 Computational Methods in Electromagnetics 5. EEE 529 Selected Topics in Electromagnetics and Antennas 6. EEE 621 Advanced Electromagnetics Theory COMMUNICATION 1. EEE 541 Communication Theory 2. EEE 542 Detection and Estimation Theory 3. EEE 543 Basics of Wireless Communications 4. EEE 544 Satellite Communication 5. EEE 549 Selected Topics in Communications 6. EEE 652 Stochastic Processes OTHERS 1. IES 503 Artificial Intelligence 2. IES 509 Heuristics 3. IES 511 Machine Learning 4. IES 513 Mathematical Programming and Applications 5. IES 530 Evolutionary Algorithms 6. IES 534 Nonlinear Programming 7. IES 538 Nature Inspired Optimization 8. CE 609 Advanced Numerical Analysis 9. CE 657 Video Coding and Decoding 10. MATH 602 Advanced Linear Algebra and Optimization 11. MATH 655 Fuzzy Set Theory and Applications 12, MATH 663 Biomathematics |
The students studying in this second cycle program with thesis are required,
1) to take a minimum of 7 courses with a minimum of 21 local credits, one seminar course, and a thesis. (The seminar and thesis are non-credit and graded on a pass/fail basis.)
2) to succeed in all the courses with a letter grade of at least CC/S
3) to have a Cumulative Grade Point Average of at least 3.00/4.00 with a minimum of 120 ECTS credits.
The financing studies for the Electric and Electronics Engineering (With Thesis) program at Izmir University of Economics primarily involve a combination of tuition fees, scholarships, and potential financial aid options available to students. The total cost of the program comprises the annual tuition fee, which is determined by the university and typically adjusted each academic year. As of the latest available data, the approximate annual tuition fee for undergraduate programs at Izmir University of Economics ranges between 25,000 and 30,000 Turkish Lira; however, specific figures for the Electric and Electronics Engineering (With Thesis) program may vary slightly.
Students have access to a variety of scholarship opportunities designed to support academic excellence, financial need, or special circumstances. The university offers merit-based scholarships for high-achieving students, which can cover a significant portion or the entirety of tuition fees. Additionally, need-based scholarships are available for students demonstrating financial hardship, providing essential financial relief. These scholarships are awarded based on application reviews, academic records, and the financial situation of the applicant.
Moreover, the university participates in national and international scholarship programs, which can supplement students’ funding sources. Students are encouraged to apply for government grants, private scholarships, and sponsorship programs that may be available from various organizations or external funders. Some students may also explore part-time work opportunities within the university or the local community to support their studies, although work-study options are subject to regulations and availability.
Financial planning for the program also involves considering living expenses, which include accommodation, transportation, food, and other personal costs in Izmir. The cost of living in Izmir is generally lower than in major metropolitan centers, which can make studying more affordable for international and domestic students alike. The university’s financial aid office provides guidance and support to students in applying for scholarships, managing tuition payments, and budgeting for their studies.
In summary, financing the Electric and Electronics Engineering (With Thesis) program combines tuition fees, scholarships, external funding opportunities, and personal financial management. The university aims to make education accessible by offering multiple financial support options tailored to meet diverse student needs, ensuring that capable students can pursue their academic goals without undue financial hardship.
The Electric and Electronics Engineering (With Thesis) program at Izmir University of Economics is designed to provide students with a comprehensive education in the fields of electrical and electronic engineering, focusing on both theoretical fundamentals and practical applications. The program aims to equip students with the necessary skills to design, analyze, and improve electronic systems and electrical devices, preparing them for careers in industry, research, and development. Throughout the program, students engage with a curriculum that covers core disciplines such as circuit theory, digital systems, control systems, signal processing, telecommunications, power systems, and embedded systems. Emphasizing a combination of theoretical knowledge and hands-on experience, the program includes laboratory work, project-based learning, and research activities.
A unique aspect of the program is the requirement to complete a thesis, which allows students to engage in original research under the supervision of faculty members. This research component fosters critical thinking, problem-solving skills, and innovation, enabling students to contribute to advancements in electrical and electronic engineering. The program also encourages interdisciplinary learning by integrating courses from related fields such as computer engineering, software development, and physics. Students are prepared not only for employment in technical roles but also for postgraduate studies in engineering or related disciplines. The curriculum is regularly updated to reflect the latest technological developments and industry standards, ensuring graduates are well-prepared for the evolving engineering landscape.
Furthermore, the program supports professional development through seminars, conferences, and internships, providing networking opportunities and practical insights into the industry. Graduates of the program are expected to demonstrate strong analytical skills, technical proficiency, teamwork, and effective communication, which are essential for successful careers in engineering. The program's close ties with industry partners facilitate cooperative projects and internships, giving students real-world experience and enhancing their employment prospects upon graduation. Overall, the Electric and Electronics Engineering (With Thesis) program at Izmir University of Economics prepares students to become innovative engineers capable of addressing complex technical challenges in a rapidly changing technological environment.