91´«Ã½

Results


These are the outcomes that students acquire through this program: the outcomes (common to all UPV graduates), and the general and specific outcomes of the program, here called "fundamental".

UPV generic Where is evaluated?
Social and environmental commitment
To act with ethics and professional responsibility in the face of social, environmental and economic challenges, taking democratic principles and values and the Sustainable Development Goals as a reference.
Innovation and creativity
Propose creative and innovative solutions to complex situations or problems, specific to the field of knowledge, in order to meet diverse professional and social needs.
Teamwork and leadership
Collaborate effectively in work teams, assuming responsibilities and leadership roles and contributing to collective improvement and development.
Effective communication
Communicate effectively, both orally and in writing, adapting to the characteristics of the situation and the audience.
Responsibility and decision-making
Act autonomously in learning, making informed decisions in different contexts, making judgements based on experimentation and analysis and transferring knowledge to new situations.

Fundamental
Use of Information and Communication Technologies applied to propulsion systems
Apply basic research tools in the field of propulsive systems
Evaluate theories, results and developments in the reference language, as well as in the native language, in the field of propulsive systems
Identify the various basic aspects of thermofluidodynamics that are of interest for understanding the physical processes underlying the operation of propulsive systems
Analyze and contrast current and future technological solutions applicable to propulsion systems
Apply experimental methodologies (definition of test plans and acquisition, processing and analysis of results) to identify cause-effect relationships in propulsion system processes
To develop models of different physical and chemical processes relevant to the operation of propulsion systems, and to acquire a critical attitude towards the models used to assess the scope of their predictions
Perform synthesis work to optimize propulsion system performance under given boundary conditions, constraints and requirements, accounting for the synergistic effects to be expected in a complex system
Identify the aspects of operation, technologies, developments or new ideas that require a deeper knowledge and definition of the necessary means to achieve it