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Curriculum

Electrical-Electronics Engineering and Cyber Systems Ph.D.

PhDElectrical and Electronics Engineering

← All curriculaPrerequisite chart →

Year 1 · Fall

Schedule →

Year 1 · Spring

Schedule →

Year 2 · Fall

Schedule →
CourseLec.LabCr.ECTSPrerequisites
EECD2112925Qualifying Exam Preparation00030—
EECD2112906Guided Research I for EECSELECTIVE00016—
TOTAL030

1 ELECTIVES ON OFFER · 16 ECTS

Year 2 · Spring

Schedule →
CourseLec.LabCr.ECTSPrerequisites
EECD2212925Qualifying Exam Preparation00030—
EECD2212923Guided Research II for EECSELECTIVE00016—
TOTAL030

1 ELECTIVES ON OFFER · 16 ECTS

Year 3 · Fall

Schedule →
CourseLec.LabCr.ECTSPrerequisites
EECD3112926Thesis000120—
TOTAL0120

Year 3 · Spring

Schedule →
CourseLec.LabCr.ECTSPrerequisites
EECD3212926Thesis000120—
TOTAL0120

Year 4 · Fall

Schedule →
CourseLec.LabCr.ECTSPrerequisites
EECD4112926Thesis000120—
TOTAL0120

Year 4 · Spring

Schedule →
CourseLec.LabCr.ECTSPrerequisites
EECD4212926Thesis000120—
TOTAL0120

Course plan (PDF)

PROGRAMME OUTCOMES

  1. 1
    KNOWLEDGE · Theoretical, Factual

    Develop and deepen the current and advanced knowledge in the field with original thought and/or research and come up with innovative definitions based on Master's degree qualifications.

  2. 2
    KNOWLEDGE · Theoretical, Factual

    Conceive the interdisciplinary interaction which the field is related with ; come up with original solutions by using knowledge requiring proficiency on analysis, synthesis and assessment of new and complex ideas.

  3. 3
    SKILLS · Cognitive, Practical

    Evaluate and use new information within the field in a systematic approach and gain advanced level skills in the use of research methods in the field.

  4. 4
    SKILLS · Cognitive, Practical

    Develop an innovative knowledge, method, design and/or practice or adapt an already known knowledge, method, design and/or practice to another field.

  5. 5
    COMPETENCIES · Ability to work independently and take responsibility

    Broaden the borders of the knowledge in the field by producing or interpreting an original work or publishing at least one scientific paper in the field in national and/or international refereed journals.

  6. 6
    COMPETENCIES · Ability to work independently and take responsibility

    Contribute to the transition of the community to an information society and its sustainability process by introducing scientific, technological, social or cultural improvements.

  7. 7
    COMPETENCIES · Learning Competence

    Independently perceive, design, apply, finalize and conduct a novel research process.

  8. 8
    COMPETENCIES · Communication and Social Competence

    Ability to communicate and discuss orally, in written and visually with peers by using a foreign language at least at a level of European Language Portfolio C1 General Level.

  9. 9
    COMPETENCIES · Communication and Social Competence

    Critical analysis, synthesis and evaluation of new and complex ideas in the field.

  10. 10
    COMPETENCIES · Field-based Competence

    Recognizes the scientific, technological, social or cultural improvements of the field and contribute to the solution finding process regarding social, scientific, cultural and ethical problems in the field and support the development of these values.

COURSE CONTRIBUTION TO PROGRAMME OUTCOMES

0 none · 1 lowest · 5 highest

COURSE12345678910
EECD1112898PhD SEMINAR2340000550
EECD1112899Advanced Probability and Aplications5322101240
EECD1112901Integrated Optics and Optoelectronics2434012452
EECD1112902Advanced Microwave Engineering3422235220
EECD1112903OFDM and Beyond for Wireless Communications4454505425
EECD1112904Estimation and Detection Theory4444303540
EECD1112905Microwave Tubes4332344334
EECD1112906Guided Research I for EECS3335515151
EECD1112909Wireless Communication Systems4454505425
EECD1113164Microwave Amplifiers4345434443
EECD1114254Linear System Theory5540003000
EECD1114256Communication Circuits4534443454
EECD1114659Foundations and Applications of Data Science5444004550
EECD1115686Special Topics in Electrical Engineering I0000000000
EECD1116864Applied Random Process0000000000
EECD1117507Advanced Engineering Mathematics0000000000
EECD1212908Advanced Digital Communications5555505550
EECD1212913Digital Communications Laboratory4454305425
EECD1212916Special Topics in RF and Microwave Engineering5434544442
EECD1212917Passive Microwave Devices3443334344
EECD1212923Guided Research II for EECS5555545545
EECD1212924Fuzzy Logic and Modeling55554455554422223333
EECD12139955G and Beyond Radio Access Technologies4454505055
EECD1214039Monolithic Microwave Integrated Circuits5434554340
EECD1214255Computational Optical Imaging5543004043
EECD1214257Antenna Engineering3445344524
EECD1215687Special Topics in Electrical Engineering II0000000000
EECD2112906Guided Research I for EECS3335515151
EECD2112925Qualifying Exam Preparation00000000000000000000
EECD2212923Guided Research II for EECS5555545545
EECD3112926Thesis00000000000000000000
EECD4112926Thesis00000000000000000000

NUMBERS

Student Success Status (%)

< 2,272,27 - 2,472,48 - 2,692,70 - 2,902,91 - 3,123,13 - 3,333,34 - 3,543,55 - 3,763,77 - 4
2020 - 2021000000132513
2021 - 2022700001215230
2022 - 2023160223518131
2023 - 20246203748243
2024 - 202551403410203

Student Number By The Year

2021 - 20222022 - 20232023 - 20242024 - 20252025 - 2026
Student Count923222737

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