Program Information
Program Information
Aim
Has mastered the fundamental concepts and principles of the field of electrical engineering; is capable of participating in the development of new systems required by the industry; is capable of designing, manufacturing, and assembling electrical components; possess the knowledge and skills to perform maintenance, repair, and operation of electrical machines and devices; and are qualified technical personnel capable of actively participating in quality assurance, work preparation, design, and production processes.Qualification Awarded
Short Cycle (Associate's Degree)Registration and Admission Requirements
To be admitted to this program, applicants must have graduated from high school or an equivalent secondary school and obtained a diploma, and must have achieved a sufficient score on the Basic Proficiency Test (TYT). Student admission to the program is conducted in accordance with the principles established by the Council of Higher Education (YÖK). International students, on the other hand, are admitted to the program based on the academic performance criteria established by the Senate.Graduation Requirements
Students must successfully finish all courses and internships set by the program taking at least 120 ECTS credits in total, to be granted with the Bachelor's degree. Graduation eligibility is determined by academic average score. For this purpose, the sum of the weighted scores of all courses taken throughout the education is divided by the sum of ECTS values.Recognition of Prior Learning
Students may apply for exemption from courses they have previously taken and successfully completed at the higher education institutions where they were previously enrolled or at an institution whose equivalency has been recognized. Requests for exemption are decided by the Board of Trustees, after consulting with the faculty member teaching the relevant course, when necessary.Lesson Plan - ECTS Credits
* The courses indicated in this course table shows current course plan information in Student Affairs.
** Compulsory courses are certainly opened whereas opening of elective and optional courses may differ according to preferences and quota condition in related term.
*** Theoretical and practical course hours of vocational (professional) clinical courses are not considered weekly. These course hours refer to total course hours.
Please click on the course title in the table below in order to see detailed information about course objectives and learning outcomes etc.
| Fall Semester Courses Plan | ||||||
| Code | Course | Language of Instruction | T+U | UK | ECTS | Download |
| ELK1145230 | ELECTRIC CIRCUITS I | Turkish | 3 | 3 | 5 | |
| ELK1117299 | AA | Turkish | 3 | 3 | 4 | |
| ELK1117301 | AA | Turkish | 3 | 3 | 5 | |
| ELK1117302 | AA | Turkish | 2+1 | 2.5 | 5 | |
| ELK1124740 | MATHEMATICS I | Turkish | 3 | 3 | 5 | |
| ATA1110800 | HISTORY of the TURKISH REPUBLIC I | Turkish | 2 | 2 | 2 | |
| İNG1110900 | ENGLISH I | English | 2 | 2 | 2 | |
| TDL1110200 | TURKISH LANGUAGE I | Turkish | 2 | 2 | 2 | |
| Spring Semester Courses Plan | ||||||
| Code | Course | Language of Instruction | T+U | UK | ECTS | Download |
| ELK1245270 | ELECTRIC CIRCUITS II | Turkish | 3 | 3 | 5 | |
| ELK1217298 | AA | Turkish | 2+2 | 3 | 4 | |
| ELK1217303 | AA | Turkish | 2+1 | 2.5 | 3 | |
| ELK1217304 | AA | Turkish | 2+2 | 3 | 5 | |
| ELK1227150 | MATHEMATICS II | Turkish | 3 | 3 | 5 | |
| ELK1217286 | AA | Turkish | 2 | 2 | 2 | |
| ELK1217289 | AA | Turkish | 2 | 2 | 2 | |
| ATA1210000 | HISTORY of the TURKISH REPUBLIC II | Turkish | 2 | 2 | 2 | |
| İNG1212000 | ENGLISH II | English | 2 | 2 | 2 | |
| TDL1220000 | TURKISH LANGUAGE II | Turkish | 2 | 2 | 2 | |
Program Qualification
Learning Competence
It defines testing, maintenance, and repair tasks in accordance with standards.
Designs electrical systems.
Applies concepts related to command and control systems.
Possesses the ability to independently evaluate professional problems and issues using an analytical and critical approach and to propose solutions.
Ability to work independently and take responsibility
Explains basic concepts related to electrical technology and energy production and performs mathematical calculations related to the field.
Field-based Competence
It upholds social, scientific, cultural, and ethical values during the stages of collecting data related to its field, applying that data, and disseminating the results.
As a team member, takes responsibility for resolving complex and unforeseen problems encountered in applications related to their field.
Effectively uses information technologies (software, programs, animation, etc.) related to their profession.
Communication and Social Competence
Has an awareness of career management and lifelong learning.
Keeps abreast of current developments and practices in their field and applies them effectively.
They will acquire fundamental, up-to-date, and practical knowledge related to their profession.
| Program Output TYYÇ Basic Area Matrix | |
| Basic Area Qualification | Program Qualification |
| KNOWLEDGE | |
| Theoretical, Factual | |
| 1-Mathematics has an adequate infrastructure in subjects related to science and its own fields. | 8 - Has an awareness of career management and lifelong learning. |
| SKILLS | |
| Cognitive, Practical | |
| 1- Understanding the problems and solutions in the implementation of improved technologies. | 3 - Keeps abreast of current developments and practices in their field and applies them effectively. |
| 2- Using up-to-date techniques and tools in the field of technology by receiving additional technical training. | 3 - Keeps abreast of current developments and practices in their field and applies them effectively. |
| 3- Using technical drawing skills effectively in practice. | 13 - Designs electrical systems. |
| 4-Experimenting, collecting data, presenting the collected data. | 9 - It upholds social, scientific, cultural, and ethical values during the stages of collecting data related to its field, applying that data, and disseminating the results. |
| COMPETENCIES | |
| Ability to work independently and take responsibility | |
| 1- Working individually or in teams. | 7 - As a team member, takes responsibility for resolving complex and unforeseen problems encountered in applications related to their field. |
| Learning Competence | |
| 1- Ihaving the awareness of the necessity of lifelong learning. | 8 - Has an awareness of career management and lifelong learning. |
| 2- Using up-to-date techniques and tools in the field of technology by receiving additional technical training. | 3 - Keeps abreast of current developments and practices in their field and applies them effectively. |
| Communication and Social Competence | |
| 1- Using information and communication technologies together with computer software at the Basic Level of the European Computer Use License required by the field. | 4 - Effectively uses information technologies (software, programs, animation, etc.) related to their profession. |
| 2- Establishing effective verbal and written communication; using at least one foreign language at the intermediate and advanced level at the European Language Portfolio A2 General Level. | 10 - Uses a foreign language to stay current with developments in their field and communicate with colleagues. |
| 3- Establishing technical communication by using technical drawing. | 13 - Designs electrical systems. |
| Field-based Competence | |
| 1-Being aware of the legal consequences of technological applications and professional ethics. | 9 - It upholds social, scientific, cultural, and ethical values during the stages of collecting data related to its field, applying that data, and disseminating the results. |
Employment Opportunities
Graduates of the Electrical Engineering Program, holding the title of electrical technician, can work in the fields of installation, operation, maintenance, and inspection of electrical facilities; maintenance and repair of electrical devices and systems; and energy generation, transmission, and distribution. Graduates can also work as technical staff at public institutions and organizations, as well as private-sector companies, dealing with electrical installations, electrical machinery, and measurement and control systems.Upgrading
Our graduates can transfer to Computer Engineering, Biomedical Engineering, Electrical Engineering, Electrical and Electronic Engineering, Electronic Engineering, Electronic and Communication Engineering, Energy Systems Engineering, Energy Management, Aviation Electrical and Electronics, Mechatronics Engineering, and Software Engineering through the DGS exams.Type of Training
Full TimeAssessment and Evaluation
A student’s performance in a course is determined by the course grade. The course grade is calculated by evaluating the student’s performance during the semester—including midterm exams, assignments substituted for midterms, practical work, group projects, and similar activities—along with the final exam. For all courses, a student who scores less than 50 points on the final exam is considered to have failed that course. To pass a course, a student must earn at least 60 points or a grade point average of 2.27 by the end of the semester.Head of Department/Program
Head Of Department
Öğr.Gör. Hüseyin DEMİRProgramme Director
Öğr.Gör. Hüseyin DEMİRLearning Experiences
Learning situations aim to develop students' creative, critical, reflective thinking skills and higher level thinking skills such as logical and mathematical thinking skills. In addition, it aims to develop students' meta-cognitive skills. Learning situations include learning strategies, methods and techniques as well as the tools used and assessment and evaluation methods. The learning situations used in the programs are given in the list below:
Learning Experiences * | Learning Activities | Tools Used |
|---|---|---|
Discussion Method | Listening, speaking, asking questions, producing answers, developing and questioning opinions, examining and researching opinions, producing critical thinking, producing creative thinking, (workshop, panel, opposite panel, open forum, debate techniques are applied) collegium, forum, aquarium technique application, talking circle technique, application. | Standard classroom technologies, multimedia tools (text, images, graphics, graphics, drawings, audio, video and animations), computer, projection, online environments, conference room, workshop, panel, panel opposite, open forum collegial, forum environments. |
Demonstration Method | The instructor demonstrates the use of a tool or equipment, the instructor demonstrates a performance/practice/practice to the student, the students repeat the use of the tool or equipment, the student repeats a performance/practice/practice. | Real tools or model tools and equipment, multimedia tools, videos and animations), computer. |
Problem Solving Method | Identifying a scientific / theoretical and / or real life problem, analyzing the data related to the problem, developing alternative solutions, choosing the appropriate solution method, evaluating the solution to the problem, individual study | Textbooks, research reports, multimedia tools (text, images, graphics, graphics, drawings, audio, video and animations), computer |
Self Study Method | Student interest, curiosity and motivation, learning objective, detailed research and investigation according to the topic; in- depth research and investigation, extensive reading, listening and watching, repeating a performance. | Library, e-library, laboratory, workshop |
Question - Answer Technique | Asking Socratic questions, criticizing answers, generating questions, generating answers, criticizing, analyzing and evaluating creative answers, asking structured questions and generating answers, asking closed-ended questions and generating answers | Textbooks, recommended books, worksheets, question bank, multimedia tools (text, images, graphics, drawings, audio, video, cartoons and animations) |
Simulation Technique | Realization of simulations for risky, dangerous, expensive, time-consuming applications/practices. | Simulation environment, Computer |
Computer-Internet Supported Instruction | Online Course Platforms : Collaboration and communication, digital literacy activities, sharing information, improving technology use, creative thinking activities, problem solving, generating critical thinking. These are environments where instructors share course materials, collect assignments and interact with students. E-Books and Digital Content : Reading, writing, comprehension, interpretation, creative thinking activities, language use, examination, research, using technology, critical thinking activities. Learning environment and materials are made more attractive by presenting interactive content to students. Webinars and synchronize meeting : Communication, collaboration, teamwork, presentation, technology skills, problem solving, live interaction with studentsremotely. Simulations : Problem solving, using technology, analytical thinking, communication, decision making, teamwork and collaboration. They are environments where students have the opportunity to experience the concepts. Audio and Visual aids : Communication skills, language skills, emotional intelligence and empathy, social skills, attention and focus, use of technology. Animations, graphics and interactive visuals are used to help students master the topics. Digital Game- Based Learning : Problem solving skills, ability to use technology, creative thinking, quick decision making, strategy development, cooperation and teamwork. Games prepared or played in digital environments to make learning fun and increase retention in learning. Adaptive Learning Systems : Logical mathematical thinking activities, reading, writing, comprehension, interpretation, critical thinking activities. These are environments where students identify their weaknesses and are offered to carry out studies and activities specific to that area. Virtual Reality (VR) and Augmented Reality (AR) : Simulation and practical applications, creative thinking activities, using technology, planning, programming, social interaction and communication. 3D virtual environments are used to make learning fun and interactive. Social Media and Interactive Platforms : Communication, collaboration, teamwork, project management, interactive content creation, critical thinking activities. Personal platforms for students to share their thoughts on any topic, interact and produce content. Data Analysis and Monitoring Tools : Analytical thinking activities, logical mathematical thinking activities, problem solving, decision making, communication. These are tools used to assess and monitor student performance, identify student difficulties and create lesson plans accordingly. Artificial Intelligence Technologies : Data analysis and forecasting, game and strategy development, security and threat analysis, technology utilization skills, robotics and automation skills, creative thinking skills, computational thinking skills. | Moodle, Google Classroom, Edmodo, Edupage etc. Google Play Books, Apple Books, Amazon Kindle Store, BookBoon, OpenStax, etc. Zoom, Microsoft Teams, Google Meet, Adobe Connect, GoToMeeting, etc. NASA Eyes on the Solar System, FlightGear, Virtual Biology Lab, CarSim, SimCity, etc. Infographics, maps and graphs, charts and diagrams, tables, Podcast, audio books, interviews and chats, etc. Strategy and puzzle games, Simulation and construction games, mission games, real-time multiplayer games, etc. Udemy, Khan Academy, Duolingo, Cognii, Smart Sparrow, etc. Oculus Rift, PlayStation VR, Samsung Gear VR, Google CardBoard, Pokemon Go, Arlit, Facebook, instagram, twitter, linledIn, snapchat, pinterest, youtube, twitch, reddit, discord etc. Google Analytics, Microsoft Power BI, Splunk, Adobe Analytics, etc. ChatGPT, Google AI, Deeply, DıaloGPT. Amazon Alexa, Tesla Autopilot, etc. |
Experiential Learning | Faculty-external stakeholder (industrial organizations, schools and others) cooperation is established. Students directly observe professional skills in the real environment. Observation results are analyzed in the classroom environment. | Internship places according to the program, professional practice places, Student product file sample, observation forms and other alterative measurement tools |
Flipped Classroom Learning | Problem solving, discussion, case study presentation, case analysis, critical thinking, creative thinking, video recordings appropriate to the learning objective are created or selected. Students make preliminary preparation by watching video recordings. The problem is solved in the classroom. The problem is discussed. | Video recordings, online environments, classroom |
Lecture Method | Listening, speaking, (lecture, conference, seminar, speech, statement and briefing techniques are applied) | Standard classroom technologies, multimedia tools (text, images, graphics, graphics, drawings, audio, video and animations), computer, projection, online environments, conference room |
Traditional Written Exam | Classical written exams to assess creative, critical and reflective thinking. Multiple- choice, short-answer (fill-in-the-blank, matching, true-false and other) exams to assess cognitive skills such as knowledge, comprehension, application and analysis. | Written exam papers, multiple choice tests, short answer tests, mixed tests, answer keys |
Multiple-Choice Exam | ||
Oral Exam | It aims to assess student-specific, creative, critical, reflective thinking skills and cognitive skills such as knowledge, comprehension, application, analysis and synthesis. It is not a general measurement and evaluation method. It is not applied in every program; it is program specific. | Oral question bank/ oral question pool, answer keys, checklists, rubrics, rating scales |
Homework | It is used to improve students' knowledge and skills, to encourage them to research and study, to complete their learning deficiencies, and to deepen their understanding of a subject. | Library, e-library, books, articles |
Quiz | It is done to identify learning gaps. In this case, student grades are not reflected. The level of realization of learning objectives can be evaluated depending on the process. In this case, it can be reflected in student grades. | Worksheets, question bank, question pool, answer key |
Course - Program Competencies Relations
| Course | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 | 11 | 12 | 13 | 14 |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| AA | 5 | 5 | 4 | 4 | 5 | 4 | 5 | 3 | 3 | 2 | 5 | 2 | 3 | 2 |
| ELECTRIC CIRCUITS I | 5 | 2 | 3 | 2 | 5 | 3 | 4 | 2 | 3 | 2 | 5 | 2 | 2 | 3 |
| İlişkili Ders Sayısı / 2/18 | 34 | 22 | 27 | 22 | 34 | 21 | 27 | 20 | 21 | 17 | 35 | 24 | 20 | 26 |
Surveys for Students
| Strongly Disagree | Disagree | Neither Agree Nor Disagree | Agree | Strongly Agree | Don't Know/No Idea | Choose | |
|---|---|---|---|---|---|---|---|
| The lecturer explains the course's aim and extent and what is expected of the student clearly. | |||||||
| Chooses the course sources in accordance with the courses and announces them. | |||||||
| Guides/helps the students in accessing the resources they recommended for the course. | |||||||
| The lecturer's instruction method (course presentation) is clear, fluent and understandable. | |||||||
| Uses the instructional technologies (effectively.) | |||||||
| Offers multidirectional communication and interactional implementations in the classroom. | |||||||
| Has knowledge in the matter of traditional teaching strategic management and techniques. | |||||||
| Uses the teaching methods s/he covers in the course within their implementations. | |||||||
| Makes time for the student outside of course hours regarding the course | |||||||
| Comes to the class regularly and uses time effectively. | |||||||
| The lecturer is successful in establishing classroom dominance during the course. | |||||||
| Informs the students on current issues. | |||||||
| Sets an example with their open attitude and behaviour to students' opinions. | |||||||
| Success measurement methods and tools (classic/oral exam, project, assignments, etc.) are compatible with the course's aim and extent. | |||||||
| Helps me when I want to ask questions about my exam paper. | |||||||
| Lab/field/application studies are compatible with the aim and the extent of the course. | |||||||
| Develops the creative thinking process and skills of the learning and teaching process of the course. | |||||||
| The course is supported by the current issues and guests. | |||||||
| Things you would like to convey apart from the questions above; |