Eskisehir Technical University Info Package Eskisehir Technical University Info Package
  • Info on the Institution
  • Info on Degree Programmes
  • Info for Students
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    • English English
About the Program Educational Objectives Key Learning Outcomes Course Structure Diagram with Credits Field Qualifications Matrix of Course& Program Qualifications Matrix of Program Outcomes&Field Qualifications
  • Faculty of Aeronautics and Astronautics
  • Aerospace Engineering (English)
  • Course Structure Diagram with Credits
  • Human Factors
  • Learning Outcomes
  • Description
  • Learning Outcomes
  • Course's Contribution to Prog.
  • Learning Outcomes & Program Qualifications

  • Describe the importance of human factors in aerospace engineering.
  • Explain sensory processes and perception as applied in aviation.
  • Analyze cognitive processes such as attention, memory and decision making in the context of aerospace operations.
  • Evaluate the impact of mental workload on human performance in aviation operations.
  • Evaluate cockpit layout and ergonomics considering human factors principles.
  • Design effective human-machine interfaces (IMA) for aviation systems.
  • Apply usability and human-centered design principles to controls and displays in aviation environments.
  • Evaluate the factors affecting human error in aviation operations.
  • Design error detection, mitigation and prevention strategies.
  • Use human reliability analysis (HRA) techniques to improve safety and performance.
  • Explain the principles and evolution of cockpit resource management (CRM) in aviation.
  • Apply effective communication and teamwork strategies in cockpit and cabin crew operations.
  • Havacılık bağlamında CRM uygulamalarının pratikteki uygulamalarını anlamak için vaka çalışmalarını ve simülasyonları analiz eder.
  • İnsan operatörler için farklı otomasyon seviyelerini etkilerini analiz edebilecektir.
  • Solve automation related problems in aviation systems.
  • Design automation interfaces that improve operator performance and safety in aviation.
  • Analyze the effects of Fatigue, Stress and Workload on aviation safety and performance.
  • Apply stress management techniques specific to aviation environments.
  • Conduct workload assessments to optimize human performance in aviation tasks.
  • Integrate human factors principles into aviation safety protocols and practices.
  • Discuss ethical considerations when designing human-centered aviation systems.
  • Design improvements and innovations based on human factors research to enhance safety, efficiency and performance in aviation operations.

  • Info on the Institution
  • Name and Adress
  • Academic Calendar
  • Academic Authorities
  • General Description
  • List of Programmes Offered
  • General Admission Requirements
  • Recognition of Prior Learning
  • Registration Procedures
  • ECTS Credit Allocation
  • Academic Guidance
  • Info on Degree Programmes
  • Doctorate Degree / Proficieny in Arts
  • Master's Degree
  • Bachelor's Degree
  • Associate Degree
  • Open&Distance Education
  • Info for Students
  • Cost of living
  • Accommodation
  • Meals
  • Medical Facilities
  • Facilities for Special Needs Students ı
  • Insurance
  • Financial Support for Students
  • Student Affairs Office
  • Info for Students
  • Learning Facilities
  • International Programmes r
  • Practical Information for Mobile Students
  • Language courses
  • Internships
  • Sports and Leisure Facilities
  • Student Associations