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Higher Polytechnic University College
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Grao en Enxeñaría Naval e Oceánica
 Study programme competences / results


Type A Code Study programme competences / results - Specific
  A1 Skill for the resolution of the mathematical problems that can be formulated in the engineering. Aptitude for applying the knowledge on: linear algebra; geometry; differential geometry; differential and integral calculation; differential equations and in partial derivatives; numerical methods; algorithmic numerical; statistics and optimization
  A2 Understanding and domination of the basic concepts on the general laws of the, thermodynamics, mechanics, fields and waves and electromagnetism and its application for the resolution of problems characteristic of the engineering
  A3 Basic knowledge on the use and programming of the computers, operating systems, databases and computer programs with application in engineering
  A4 Have a capacity so that it understands and applies the beginnings of basic knowledge of the general chemist, organic and inorganic chemistry and its applications in the engineering
  A5 Have a capacity for the space vision and knowledge of the techniques of graphic representation, so much for traditional methods of metric geometry and descriptive geometry, as through the applications of design assisted by computer
  A6 Adequate knowledge of the concept of company, institutional and legal frame of the company. Organization and management of companies
  A7 Knowledge of the basic concepts of the mechanism of fluids and of its application to the careens of ships and artifacts, and to the machines, equipment and naval systems.
  A8 Knowledge of the science and technology of materials and ability for its selection and for the evaluation of its behavior.
  A9 Knowledge of the theory of circuits and of the characteristics of you hatch them electrical and ability to carry out calculations of systems that these elements take part in.
  A10 Knowledge of the theory of automatism and methods of control and of its application to edge.
  A11 Knowledge of the characteristics of the components and electronic systems and of its application to edge.
  A12 Knowledge of the elasticity and resistance of materials and ability to carry out calculations of elements submitted to different applications.
  A13 Knowledge of the mechanism and of the components of you hatch
  A14 Knowledge of the applied thermodynamics and of the transmission of the heat.
  A15 Knowledge of the characteristics of the systems of naval propulsion.
  A16 Have a capacity for the accomplishment of the calculation and control of vibrations and noises on board ships and artifacts.
  A17 Knowledge of the systems for evaluation of the quality, and of the norm and means related to the safety and environmental protection.
  A18 Have a capacity for the accomplishment of calculations of geometry of ships and artifacts, buoyancy and stability.
  A19 Knowledge of the applied naval hydrodynamics.
  A20 Knowledge of the characteristics of the naval structural materials and of the criteria for its selection.
  A21 Knowledge of the procedures and systems that are used for the control of the sea corrosion.
  A22 Have a capacity for the design and calculation of naval structures.
  A23 Have a capacity for the design and calculation of the inhabitable spaces of the ships and sea artifacts, and of the services that are arranged in these spaces.
  A24 Have a capacity for the integration on board the propeller systems, taking its size, weight, dynamic loads, impact in the water tightness, the space necessary for its maintenance, etc. into account
  A25 Have a capacity for the integration on board the systems to assist taking its size, weight, dynamic loads, impact in the water tightness, the space necessary for its maintenance, etc. into account
  A26 Have a Have a capacity for the integration on board the electrical systems taking its size, weight, dynamic loads, impact in the water tightness, the space necessary for its maintenance, etc. into account
  A27 Have a Have a capacity for the integration on board the electronic systems of control and of navigation, taking its size, weight, impact in the water tightness, the space necessary for its maintenance, etc., into account
  A28 Knowledge of the methods of project of its specific technology.
  A29 Knowledge of the processes of ship building
  A30 Knowledge of the bases of the maritime traffic for its application to the distribution of the spaces of the ship.
  A31 Knowledge of the specific materials for machines, equipment and naval systems and of the criteria for its selection.
  A32 Knowledge of the sea diesel engines, turbines of gas and plants of steam.
  A33 Knowledge of the equipment and naval auxiliary systems.
  A34 Knowledge of the electrical machines and of the naval electrical systems
  A35 Capacity to project hydraulic and pneumatic systems
  A36 Knowledge of the methods of project of the systems of naval propulsion.
  A37 Knowledge of the methods of project of the auxiliary systems of the ships and artifacts.
  A38 Knowledge of the processes of mechanical manufacture
  A39 Knowledge of the processes of assembling on board equipment machines and systems.
  A40 Knowledge of the bases of the maritime traffic for its application to the selection and assembling of the means of load and discharge of the ship.
  A41 Original exercise to carry out individually and to present and to defend before a university court, consistent in a project in the area of the technologies specific to the Naval Technical Engineering in Sea Structures of professional nature in the that they are synthesized and they integrate the acquired competences into the teachings.
Type B Code Study programme competences / results - Basic / General
  B1 That the students proved to have and to understand knowledge in an area of study what part of the base of the secondary education, and itself tends to find to a level that, although it leans in advanced text books, it includes also some aspects that knowledge implicates proceeding from the vanguard of its field of study
  B2 That the students know how to apply its knowledge to its work or vocation in a professional way and possess the competences that tend to prove itself by the elaboration and defense of arguments and the resolution of problems in its area of study
  B3 That the students have the ability to bring together and to interpret relevant data (normally in its area of study) to emit judgments that include a reflection on relevant subjects of social, scientific or ethical kind
  B4 That the students can transmit information, ideas, problems and solutions to a public as much specialized as not specialized
  B5 That the students developed those skills of learning necessary to start subsequent studies with a high degree of autonomy
  B6 Be able to carrying out a critical analysis, evaluation and synthesis of new and complex ideas.
Type C Code Study programme competences / results - Transversal / Nuclear
  C1 Using the basic tools of the technologies of the information and the communications (TIC) necessary for the exercise of its profession and for the learning throughout its life.
  C2 Coming across for the exercise of a, cultivated open citizenship, awkward, democratic and supportive criticism, capable of analyzing the reality, diagnosing problems, formulating and implanting solutions based on the knowledge and orientated to the common good.
  C3 Understanding the importance of the enterprising culture and knowing the means within reach of the enterprising people.
  C4 Recognizing critically the knowledge, the technology and the available information to solve the problems that they must face.
  C5 Assuming the importance of the learning as professional and as citizen throughout the life.
  C6 Recognizing the importance that has the research, the innovation and the technological development in the socioeconomic and cultural advance of the society.
  C7 Capacidade de traballar nun ámbito multilingüe e multidisciplinar.
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