1 |
Can demonstrate specialized knowledge required by the profession to solve problems or develop applications with. |
2 |
Can solve problems related to flight operations by scientific methods. |
3 |
Can apply innovative methods in solution and identification of comprehensive aviation problems. |
4 |
Has thorough knowledge of the current techniques, methods and their constraints applied in aviation. |
5 |
Can analyze and interpret complex situations encountered in analytic modeling and experimental studies. |
6 |
Can review and apply integrated information gathered from aviation and other disciplines. |
7 |
Can lead multi-disciplinary teams and find solutions in complex situations. |
8 |
Can conduct independent scientific research which requires expertise in aviation and related fields. |
9 |
Can develop implementation, control and feedback skills. |
10 |
Can present own research orally or in writing in nation and world-wide environment. |
11 |
Can use required computer software and information technologies skilfully . |
12 |
Has awareness of new and emerging applications related to aviation. |
13 |
Can complete and apply limited or incomplete data using scientific methods. |
14 |
Can develop new strategic approaches for the solution of complex and unpredictable problems encountered in the field of aviation. |
15 |
Can criticize the knowledge from sub-branches and provide guidance for solutions. |
16 |
Can share the developments, problems and possible alternative solutions in the field of aviation with social partners. |
17 |
Can notice social, legal and environmental aspects of aerospace applications, and develop proposals. |
18 |
Can use the theoretical and practical information of aviation and related fields in operation solutions. |
19 |
Can develop strategies, policies and implementation plans in aviation and related areas, and evaluate these within the scope of quality processes. |
20 |
Has professional and ethical responsibility in the field of aviation. |