Competencies and objectives

Provisional information. Pending approval.

 

Course context for academic year 2025-26

No data

 

 

Learning outcomes / Course competencies (verified by ANECA in official undergraduate and Master’s degrees) for academic year 2025-26

Transversal Competences

  • CT03 : Comunicar de forma oral y escrita transmitiendo información, ideas, problemas y soluciones a un público tanto especializado como no especializado.

 

General Competences

  • CG01 : Capacity for the design, development and management in the field of aeronautical engineering, in accordance with the knowledge acquired as established in section 5 of the order CIN/308/2009, of 9 February, aerospace vehicles, aerospace propulsion systems, aerospace materials, airport infrastructures, air navigation infrastructures and any space, traffic and air transport management system.
  • CG02 : Planning, drafting, direction and management of projects, calculations and manufacturing in the field of aeronautical engineering, in accordance with the knowledge acquired in accordance with section 5 of order CIN/308/2009, of 9 February, aerospace vehicles, aerospace propulsion systems, aerospace materials, airport infrastructures, air navigation infrastructures and any space, traffic and air transport management system.
  • CG03 : Installation, operation and maintenance in the field of aeronautical engineering, in accordance with the knowledge acquired as established in section 5 of the order CIN/308/2009, of 9 February, of aerospace vehicles, aerospace propulsion systems, aerospace materials, airport infrastructures, air navigation infrastructures and any space, traffic and air transport management system.
  • CG04 : Verification and Certification in the field of aeronautical engineering, in accordance with the knowledge acquired as established in section 5 of order CIN/308/2009, of 9 February, on aerospace vehicles, aerospace propulsion systems, aerospace materials, airport infrastructures, aeronautical infrastructures and any space, traffic and air transport management system.
  • CG05 : Ability to carry out activities of design, technical management, expertise, drafting of reports, opinions, and technical advice in tasks related to Aeronautical Technical Engineering, exercise of genuinely aerospace technical functions and positions.
  • CG07 : Capacity to analyse and assess the social and environmental impact of technical solutions.

 

Specific Competences

  • CE11 : Understand the technological performance, the techniques for optimising materials and the modification of their properties through treatments.
  • CE12 : Understand manufacturing processes.
  • CE18 : Appropriate knowledge applied to Engineering of: the fundamentals of fluid mechanics; the basic principles of flight control and automation; the main physical and mechanical characteristics and properties of materials.
  • CE19 : Applied knowledge of: materials science and technology; mechanics and thermodynamics; fluid mechanics; aerodynamics and flight mechanics; navigation and air traffic systems; aerospace technology; theory of structures; air transport; economics and production; projects; environmental impact.
  • CE23 : Applied knowledge of: building; electricity; electrical engineering; electronics; flight mechanics; hydraulics; airport installations; materials science and technology; theory of structures; airport maintenance and operation; air transport, cartography, topography, geotechnics and meteorology.

 

Basic Competences

  • CB2 : Students should know how to apply their knowledge to their job or vocation in a professional manner and should possess those skills that are usually reflected when preparing and defending arguments and solving problems in their field of study.
  • CB3 : That students have the ability to gather and interpret relevant data (usually within their area of study) in order to make judgements that include reflection on relevant social, scientific or ethical issues.

 

 

 

Learning outcomes (Training objectives)

  • Argue the suitability of a material, based on its technological properties, for use in AI.
  • Identify the physical and mechanical properties necessary to select the optimum material for a given AI application.
  • Choose the optimal materials for different applications in the field of AI.
  • Identify the manufacturing processes that can be applied for each type of material.
  • Identify the in-service properties produced by each of the manufacturing processes for AI applications.
  • Select the optimum manufacturing process depending on the material and properties required.

 

 

Specific objectives stated by the academic staff for academic year 2025-26

No data

 

 

General

Code: 33825
Lecturer responsible:
No data
Credits ECTS: 6,00
Theoretical credits: 0,00
Practical credits: 2,40
Distance-base hours: 3,60

Departments involved

  • Dept: Civil Engineering
    Area: Construccion Engineering
    Theoretical credits: 0
    Practical credits: 2,4
    This Dept. is responsible for the course.
    This Dept. is responsible for the final mark record.

Study programmes where this course is taught