Dersin Adı Dersin Seviyesi Dersin Kodu Dersin Tipi Dersin Dönemi Yerel Kredi AKTS Kredisi Ders Bilgileri
SOFTWARE DESIGN APPLICATIONS Birinci Düzey YZ 312 Zorunlu 6 8.00 8.00 Yazdır
   
Dersin Tanımı
Ön Koşul Dersleri
Eğitimin Dili English
Koordinatör PROF. DR. CELAL ÖZTÜRK
Dersi Veren Öğretim Eleman(lar)ı Department Faculty Members
Yardımcı Öğretim Eleman(lar)ı
Dersin Veriliş Şekli
Dersin Amacı Students conduct theoretical and/or practical (experimental) project work on topics related to software engineering under the supervision of one of the faculty members in the department.
Dersin Tanımı Each student prepares their projects on software engineering and completes their reports based on their projects.

Dersin İçeriği
1 Determining the project topic.
2 Identifying the subtopics covered by the project.
3 Literature review.
4 Literature review.
5 Literature review.
6 Planning the system.
7 Designing the system.
8 Performing necessary calculations or analyses.
9 Performing necessary calculations or analyses.
10 Evaluating calculations or analyses.
11 Evaluating results.
12 Writing the project.
13 Writing the project.
14 Making the necessary corrections and submitting the project.
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Dersin Öğrenme Çıktıları
1 To equip students with research skills.
2 To equip students with planning skills.
3 To equip students with application skills.
4 To equip students with problem-solving skills.
5 To equip students with evaluation and commentary skills.
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*Dersin Program Yeterliliklerine Katkı Seviyesi
1 Applies engineering knowledge related to mathematics, science, basic engineering, and computer-based calculations to solve engineering problems.
2 Gains the ability to develop engineering solutions using discipline-specific knowledge and methods.
3 Defines complex engineering problems and formulates them using fundamental science and engineering knowledge.
4 Defines and analyzes solutions to problems, taking into account the UN Sustainable Development Goals.
5 Designs creative solutions to complex engineering problems.
6 Gains the ability to design complex systems, processes, devices, or products by considering realistic constraints in the engineering problem-solving process.
7 For the analysis and solution of complex engineering problems, selects and effectively applies appropriate methods, techniques, resources, and modern engineering and computing tools, including estimation and modeling.
8 Aware of the limitations of the methods, techniques, and IT tools used, it produces and implements appropriate solutions.
9 Conducts literature research to examine complex engineering problems and collects data within the scope of these studies.
10 Using research methods, the student designs and conducts experimental or applied studies, analyze and evaluate the results.
11 Within the scope of the UN Sustainable Development Goals, the student is knowledgeable about the impacts of engineering solutions on society, health and safety, the economy, sustainability, and the environment, and analyze these impacts.
12 Gains awareness of the legal consequences of engineering solutions.
13 The student acts in accordance with professional principles and legal regulations in engineering practice and acquires knowledge about ethical responsibilities.
14 Gains awareness about non-discrimination, impartiality, and inclusiveness of diversity.
15 Gains the ability to work effectively as an individual, team member, or team leader in intra-disciplinary or multi-disciplinary team projects.
16 Gains the ability to communicate effectively in technical matters, both verbally and in writing by taking into account the differences in the target audience''s education, language, and profession.
17 Gains the ability to apply project management principles, perform time and resource planning, and conduct economic feasibility analysis.
18 Gains awareness about entrepreneurship and innovation.
19 Gains the ability to adapt to new and emerging technologies and to evaluate technological changes with a questioning and critical perspective.
20 Gains the ability to independently and continuously learn new knowledge and skills.
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Yıldızların sayısı 1’den (en az) 5’e (en fazla) kadar katkı seviyesini ifade eder

Planlanan Öğretim Faaliyetleri, Öğretme Metodları ve AKTS İş Yükü
  Sayısı Süresi (saat) Sayı*Süre (saat)
Yüz yüze eğitim 14 3 42
Sınıf dışı ders çalışma süresi (ön çalışma, pekiştirme) 4 12 48
Ödevler 0 0 0
Sunum / Seminer hazırlama 2 10 20
Kısa sınavlar 0 0 0
Ara sınavlara hazırlık 0 0 0
Ara sınavlar 0 0 0
Proje (Yarıyıl ödevi) 1 30 30
Laboratuvar 0 0 0
Arazi çalışması 0 0 0
Yarıyıl sonu sınavına hazırlık 0 0 0
Yarıyıl sonu sınavı 0 0 0
Araştırma 3 20 60
Toplam iş yükü     200
AKTS     8.00

Değerlendirme yöntemleri ve kriterler
Yarıyıl içi değerlendirme Sayısı Katkı Yüzdesi
Ara sınav 0 0
Kısa sınav 0 0
Ödev 0 0
Yarıyıl içi toplam   0
Yarıyıl içi değerlendirmelerin başarıya katkı oranı   0
Yarıyıl sonu sınavının başarıya katkı oranı   0
Genel toplam   0

Önerilen Veya Zorunlu Okuma Materyalleri
Ders kitabı
Yardımcı Kaynaklar

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