1 |
employ advanced knowledge in the field of industrial engineering through scientific research; evaluate, interpret and apply knowledge. |
2 |
employ extensive knowledge on recent techniques and methods used in industrial engineering, and the constraints of these techniques and methods. |
3 |
complete and apply knowledge based on limited or deficient data through scientific methods; integrate knowledge from different disciplines. |
4 |
use new and developing applications in the profession; examine and learn these applications, when required. |
5 |
define problems related with industrial engineering; and develop methods for their solution, and use innovative methods in problem solving. |
6 |
generate new and/or original ideas and methods; and develop innovative solutions in system, component or process designs. |
7 |
design and conduct analytical, modeling and experiment-based research; solve and interpret complex problems encountered in this process. |
8 |
produce solutions in complicated situations and take responsibility and assume the leadership role in multi-disciplinary teams. |
9 |
establish oral and written communication in a foreign language at minimum B2 level, as defined by the European Language Portfolio. |
10 |
report systematically and clearly in written or oral form the processes and results of their research/work in national and international settings. |
11 |
describe social and environmental aspects of engineering applications. |
12 |
comply with social, scientific and ethical values in the process of collecting, interpreting and reporting data, and in all professional activities |