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Concurso de Leitura do Ensino Superior

Programmes

Bachelor in Engineering Physics

General information

Official Code: 9113
Acronym: L:EF

Certificates

  • First Degree in Engineering Physics (180 ECTS credits)

National Applications

The average grade of the last approved student in the last 5 years

2018 2019 2020 2021 2022
- - - 169,5 166,8

Vacancies

Scheme Phase Vacancies
General Admissions 1 60
Applications and deadlines are managed by Directorate-General for Higher Education.

Courses Units

Linear Algebra and Analytic Geometry

M1009 - ECTS

Real Analysis I

M1033 - ECTS

Communication in Science

DP/CTT1001 - ECTS

Mechanics

FIS1013 - ECTS

Programming I

CCINF1001 - ECTS

Analysis II

M1042 - ECTS

Eletromagnetism I

FIS1014 - ECTS

Fundamentals of Chemistry

Q1016 - ECTS

Physics Laboratory I

FIS1018 - ECTS

Programming II

CCINF1002 - ECTS

Analysis III

M2044 - ECTS

Electromagnetism II

FIS2013 - ECTS

Electronics

FIS2015 - ECTS

Thermal Physics

FIS2014 - ECTS

Waves and Continuous Media

FIS2016 - ECTS

Computational Physics

FIS2018 - ECTS

Modern Physics

FIS2017 - ECTS

Physics Laboratory II

FIS2025 - ECTS

Probability and Statistics

M2030 - ECTS

Signals and Systems

FIS2019 - ECTS

Statistical Physics

FIS3018 - ECTS

Physics Laboratory III

FIS3037 - ECTS

Fluid Mechanics

CTEC3001 - ECTS

Study of the fundamentals of fluid flows. Application to pipe flow and flow over immersed bodies.

Quantum Mechanics I

FIS3017 - ECTS

Optics and Photonics

FIS3019 - ECTS

Digital Electronics and Microprocessors

EEC3001 - ECTS

The unit has two key learning objectives:

  • Make known the theoretical and practical aspects of the analysis and synthesis of digital systems (combinational and sequential).
  • Equip students with skills to design and handle embedded systems based on microprocessors in general, and on ESP32 Pico Kit development board in particular.

Condensed Matter Physics

FIS3020 - ECTS

Plasma Physics

FIS3021 - ECTS An introduction to Plasma Physics will be given in this curricular unit. Its main goal is to present to the
student the basic properties of plasmas. The student can then apply these fundamental concepts to other
fields of plasma physics such as, thermonuclear fusion and plasma discharges.
This curricular unit (CU) presents the fundamentals of plasma physics, in a step by step methodology. These
issues are presented in a comprehensive and coherent logic sequence. In this curricular unit application
problems and examples are presented, together with the appropriate tools to solve them.

It is also the objectives of this curricular unit that students:
- develop reasoning and acquire skills in autonomous and critical problem solving;
- acquire a continuous work discipline throughout the semester;
- be respectful of ethical values such as mutual respect and honesty.

Instrumentation and Measurement

EL-SD3001 - ECTS

This Curricular Unit aims to develop fundamental skills in measuring quantities and signals of current interest in the various fields of engineering and in conceiving and designing electrical and electronic devices and equipment for measurement and instrumentation.

Thus faced with a problem of measuring an electric or non electric quantity, the student should be able to select, define and evaluate the measurement method, the most appropriate components, equipment, procedures and programs, as well as to design the respective measurement chain or instrumentation system.

Computational Methods in Engineering

FIS3022 - ECTS

Project

EFIS3002 - ECTS
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