| Electrical and Electronic Engineering (English) | |||||
| Bachelor | TR-NQF-HE: Level 6 | QF-EHEA: First Cycle | EQF-LLL: Level 6 | ||
| Course Code: | DIL511 | ||||
| Course Name: | English for Specific Purposes 1 | ||||
| Semester: |
Spring Fall |
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| Course Credits: |
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| Language of instruction: | English | ||||
| Course Condition: | |||||
| Does the Course Require Work Experience?: | No | ||||
| Type of course: | University Elective | ||||
| Course Level: |
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| Mode of Delivery: | Face to face | ||||
| Course Coordinator: | Öğr. Gör. GÜLŞAH ERDAŞ | ||||
| Course Lecturer(s): |
Eğitim Danışmanı KAHRAMAN AKIN Expert HABİBE ÖZKARA Expert FİRUZE NAZLICAN SÜRÜCÜ Öğr. Gör. AHMET KAPLAN Öğr. Gör. ESNIHT YULIET ATEHORTUA MESA Expert DENİZ GÜDEN Öğr. Gör. ÇİĞDEM DEMİRCAN Lecturer DERYA ÖZDEMİR Öğr. Gör. RABİA MERCAN Öğr. Gör. MOHAMMAD REZA KHODADADI Expert BURAK DEMİR Öğr. Gör. GÖKCAN AYDIN Expert NİHAN ÖCAL Öğr. Gör. CEM ŞENCAN Öğr. Gör. SEPIDEH SHAHBAZI Öğr. Gör. ELİF MOLLAMEHMETOĞLU Expert ÖZLEM ÇELİK Öğr. Gör. NOORHAN QASIM MOHAMMED AL-ANI Eğitim Danışmanı ATİLLA ONURALP KOCABALCIOĞLU Expert EBRAR GÜL EZGİ TEMİZ Öğr. Gör. İLKAY ÖZDEN Öğr. Gör. ZEYNEP İREM BAYRAKLI KELEŞ Expert CAN GENCER UÇAR Öğr. Gör. SHAMIM BAZOOBANDI Expert GÖKÇE DURU KARABULUTOĞLU Expert AYŞENUR SARIAHMET KÜÇÜKKAYA Öğr. Gör. EZGİ KAYADİBİNLİ Öğr. Gör. BELKIS CİĞERİM Expert SEMRA ZEYNEP AZAKLI Öğr. Gör. AYSU ASLI GÜNER Öğr. Gör. ERDEM AYDEMİR Öğr. Gör. GÜLŞAH ERDAŞ Öğr. Gör. GİZEM İNCİ Öğr. Gör. SARA KHALID ABDULHAFEEZ HUSSEIN Dr. Öğr. Üy. GÜLŞAH KIRŞAN Expert HATİCE BETÜL COŞKUN Expert GİZEM ECEM HIZLI Öğr. Gör. MERVE KESKİN |
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| Course Assistants: |
| Course Objectives: | The aim is to develop professional language skills at the basic level and to master the professional terminology of English by using original professional materials prepared by our instructors for the academic programs that the students continue. Topics such as the fields of work of the future professions and their duties, basic concepts, historical development of their professional fields are discussed. |
| Course Content: | Basic knowledge and terminology related to the department, activities for the four basic skills of students, reading, writing, listening and speaking. |
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The students who have succeeded in this course;
1) Students are able to read simple texts that are overlapping with interest or professional subjects, and understand the basic idea in a text. 2) Students can understand written and oral expressions based on common subjects in daily life. 3) Students can handle most situations, such as shopping or address recipes, which require a foreign language to communicate when it is spoken or when traveling. 4) Students can write texts that are simple, but inter-ideas, in the subjects of personal interest. 5) Students can transfer experiences, talk about their dreams and wishes, briefly explain their thoughts and plans. |
| Week | Subject | Related Preparation |
| 1) | Recognition of the profession. | Authentic and original materials prepared by our lecturers. |
| 2) | Recognition of the profession. | Authentic and original materials prepared by our lecturers. |
| 3) | Basic terms in the profession. | Authentic and original materials prepared by our lecturers. |
| 4) | Basic terms in the profession. | Authentic and original materials prepared by our lecturers. |
| 5) | Occupational areas and working conditions. | Authentic and original materials prepared by our lecturers. |
| 6) | Occupational areas and working conditions. | Authentic and original materials prepared by our lecturers. |
| 7) | Tools and equipment used in the profession. | Authentic and original materials prepared by our lecturers. |
| 8) | Midterm Week | |
| 9) | Theories and methods prevailing in the field and profession. | Authentic and original materials prepared by our lecturers. |
| 10) | Theories and methods prevailing in the field and profession. | Authentic and original materials prepared by our lecturers. |
| 11) | Scientific ethics. | Authentic and original materials prepared by our lecturers. |
| 12) | Scientific ethics. | Authentic and original materials prepared by our lecturers. |
| 13) | Current developments in the field and studies. | Authentic and original materials prepared by our lecturers. |
| 14) | Current developments in the field and studies. | Authentic and original materials prepared by our lecturers. |
| 15) | Final Week | |
| 16) | Final Week |
| Course Notes / Textbooks: | Her bölüm için bir öğretim görevlimiz tarafından hazırlanan orijinal ve otantik materyaller. |
| References: | Original and authentic materials prepared by a faculty member for each department. |
| Course Learning Outcomes | 1 |
2 |
3 |
4 |
5 |
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| Program Outcomes | ||||||||||||||||||
| 1) Has sufficient knowledge in mathematics and natural sciences. | ||||||||||||||||||
| 2) Has sufficient knowledge in Electrical and Electronics engineering–specific subjects. | ||||||||||||||||||
| 3) Has the ability to apply theoretical and practical knowledge of mathematics, natural sciences, and Electrical and Electronics engineering to solve complex engineering problems. | ||||||||||||||||||
| 4) Has the ability to identify, formulate, and solve complex engineering problems, and to select and apply appropriate analysis and modeling methods for this purpose. | ||||||||||||||||||
| 5) Has the ability to design complex systems, processes, devices, or products under realistic constraints and conditions to meet specific requirements, and to apply modern design methods for this purpose. | ||||||||||||||||||
| 6) Has the ability to select and use modern techniques and tools required for the analysis and solution of complex engineering problems encountered in engineering practice, and to use information technologies effectively. | ||||||||||||||||||
| 7) Has the ability to design and conduct experiments, collect data, analyze and interpret results for the investigation of complex engineering problems or Electrical and Electronics engineering–specific research topics. | ||||||||||||||||||
| 8) Has the ability to work effectively in disciplinary teams. | ||||||||||||||||||
| 9) Has the ability to work effectively in multidisciplinary teams. | ||||||||||||||||||
| 10) Has the ability to work individually. | ||||||||||||||||||
| 11) Has the ability to communicate effectively in oral and written form; has knowledge of at least one foreign language; writes effective reports, understands written reports, prepares design and production reports, makes effective presentations, and gives and receives clear and understandable instructions. | ||||||||||||||||||
| 12) Has awareness of the necessity for lifelong learning; accesses information, follows developments in science and technology, and continuously renews oneself. | ||||||||||||||||||
| 13) Acts in accordance with ethical principles; has knowledge of professional and ethical responsibilities and of the standards used in engineering practices. | ||||||||||||||||||
| 14) Has knowledge of business practices such as project management, risk management, and change management. | ||||||||||||||||||
| 15) Has awareness of entrepreneurship and innovation. | ||||||||||||||||||
| 16) Has knowledge of sustainable development. | ||||||||||||||||||
| 17) Has knowledge of the impacts of engineering practices on health, environment, and safety on a universal and societal scale, and awareness of contemporary issues reflected in the field of engineering. | ||||||||||||||||||
| 18) Has awareness of the legal consequences of engineering solutions. | ||||||||||||||||||
| No Effect | 1 Lowest | 2 Average | 3 Highest |
| Program Outcomes | Level of Contribution | |
| 1) | Has sufficient knowledge in mathematics and natural sciences. | |
| 2) | Has sufficient knowledge in Electrical and Electronics engineering–specific subjects. | |
| 3) | Has the ability to apply theoretical and practical knowledge of mathematics, natural sciences, and Electrical and Electronics engineering to solve complex engineering problems. | |
| 4) | Has the ability to identify, formulate, and solve complex engineering problems, and to select and apply appropriate analysis and modeling methods for this purpose. | |
| 5) | Has the ability to design complex systems, processes, devices, or products under realistic constraints and conditions to meet specific requirements, and to apply modern design methods for this purpose. | |
| 6) | Has the ability to select and use modern techniques and tools required for the analysis and solution of complex engineering problems encountered in engineering practice, and to use information technologies effectively. | |
| 7) | Has the ability to design and conduct experiments, collect data, analyze and interpret results for the investigation of complex engineering problems or Electrical and Electronics engineering–specific research topics. | |
| 8) | Has the ability to work effectively in disciplinary teams. | |
| 9) | Has the ability to work effectively in multidisciplinary teams. | |
| 10) | Has the ability to work individually. | |
| 11) | Has the ability to communicate effectively in oral and written form; has knowledge of at least one foreign language; writes effective reports, understands written reports, prepares design and production reports, makes effective presentations, and gives and receives clear and understandable instructions. | |
| 12) | Has awareness of the necessity for lifelong learning; accesses information, follows developments in science and technology, and continuously renews oneself. | |
| 13) | Acts in accordance with ethical principles; has knowledge of professional and ethical responsibilities and of the standards used in engineering practices. | |
| 14) | Has knowledge of business practices such as project management, risk management, and change management. | |
| 15) | Has awareness of entrepreneurship and innovation. | |
| 16) | Has knowledge of sustainable development. | |
| 17) | Has knowledge of the impacts of engineering practices on health, environment, and safety on a universal and societal scale, and awareness of contemporary issues reflected in the field of engineering. | |
| 18) | Has awareness of the legal consequences of engineering solutions. |
| Değerlendirme Yöntemleri ve Kriterleri | Number of Activities | Level of Contribution |
| Homework Assignments | 10 | % 10 |
| Presentation | 1 | % 10 |
| Midterms | 1 | % 35 |
| Final | 1 | % 45 |
| total | % 100 | |
| Activities | Number of Activities | Preparation for the Activity | Spent for the Activity Itself | Completing the Activity Requirements | Workload | ||
| Course Hours | 14 | 0 | 4 | 56 | |||
| Homework Assignments | 10 | 0 | 7 | 70 | |||
| Midterms | 1 | 0 | 1 | 1 | |||
| Final | 1 | 0 | 1 | 1 | |||
| Total Workload | 128 | ||||||