Master of Science in Engineering (Nanomaterials and Nanophysics), 2017

1: Preface

Pursuant to Act 261 of March 18, 2015 on Universities (the University Act) with subsequent changes, the following curriculum is established. The programme also follows the Joint Programme Regulations and the Examination Policies and Procedures for The Faculty.

2: Basis in ministerial orders

The Master's programme is organised in accordance with the Ministry of Higher Education and Science’s Ministerial Order no. 1328 of November 15, 2016 on Bachelor’s and Master’s Programmes at Universities (the Ministerial Order of the Study Programmes) and Ministerial Order no. 1062 of June 30, 2016 on University Examinations (the Examination Order) with subsequent changes. Further reference is made to Ministerial Order no. 258 of March 18, 2015 (the Admission Order) and Ministerial Order no. 114 of February 3, 2015 (the Grading Scale Order) with subsequent changes.

3: Campus

The programme is offered in Aalborg.

4: Faculty affiliation

The Master’s programme falls under The Faculty of Engineering and Science, Aalborg University.

5: Study board affiliation

The Master’s programme falls under Study Board of Mechanical Engineering and Physics

6: Affiliation to corps of external examiners

The Master’s programme is associated with the external examiners corps on Nationwide engineering examiners/Mathematics, Physics and Social Studies (Basic Courses).

(Ingeniørernes landsdækkende censorkorps - mat, fys, samf)

7: Admission requirements

Applicants with a legal right of admission (retskrav)

  • Bachelor of Science (BSc) in Engineering (Nanotechnology with specialisation in Physics), Aalborg University

Applicants without legal right of admission

  • Bachelor of Engineering in Nanotechnology, Aalborg University

8: The programme title in Danish and English

The Master’s programme entitles the graduate to the Danish designation Civilingeniør, cand.polyt. i nanomaterialer og nanofysik. The English designation is: Master of Science (MSc) in Engineering (Nanomaterials and Nanophysics).

9: Programme specifications in ECTS credits

The Master’s programme is a 2-year, research-based, full-time study programme. The programme is set to 120 ECTS credits.

10: Rules concerning credit transfer (merit), including the possibility for choice of modules that are part of another programme at a university in Denmark or abroad

The Study Board can approve that passed programme elements from other educational programmes at the same level replaces programme elements within this programme (credit transfer).

Furthermore, the Study Board can, upon application, approve that parts of this programme is completed at another university or a further education institution in Denmark or abroad (pre-approval of credit transfer).

The Study Board’s decisions regarding credit transfer are based on an academic assessment.

11: Exemptions

The Study Board’s possibilities to grant exemption, including exemption to further examination attempts and special examination conditions, are stated in the Examination Policies and Procedures published at this website: https://www.studieservice.aau.dk/regler-vejledninger

12: Rules for examinations

The rules for examinations are stated in the Examination Policies and Procedures published at this website: https://www.studieservice.aau.dk/regler-vejledninger

13: Rules concerning written work, including the Master’s Thesis

In the assessment of all written work, regardless of the language it is written in, weight is also given to the student's formulation and spelling ability, in addition to the academic content. Orthographic and grammatical correctness as well as stylistic proficiency are taken as a basis for the evaluation of language performance. Language performance must always be included as an independent dimension of the total evaluation. However, no examination can be assessed as ‘Pass’ on the basis of good language performance alone; similarly, an examination normally cannot be assessed as ‘Fail’ on the basis of poor language performance alone.

The Study Board can grant exemption from this in special cases (e.g., dyslexia or a native language other than Danish).

The Master’s Thesis must include an English summary. If the project is written in English, the summary can be in Danish. The summary is included in the evaluation of the project as a whole.

14: Requirements regarding the reading of texts in a foreign language

At programmes that are taught in Danish, it is assumed that the student can read academic texts in modern Danish, Norwegian, Swedish, and English and use reference works, etc., in other European languages. At programmes taught in English, it is assumed that the student can read academic texts and use reference works, etc., in English.

15: Competence profile on the diploma

The following competence profile will appear on the diploma:

A Candidatus graduate has the following competency profile:

A Candidatus graduate has competencies that have been acquired via a course of study that has taken place in a research environment.

A Candidatus graduate is qualified for employment on the labour market based on his or her academic discipline as well as for further research (PhD programmes). A Candidatus graduate has, compared to a Bachelor, developed his or her academic knowledge and independence so as to be able to apply scientific theory and method on an independent basis within both an academic and a professional context.

16: Competence profile of the programme

The graduate of the Master’s programme

Knowledge

  • within selected areas have knowledge that is based on the highest international research level, for instance in fields like solid state physics, optics, semiconductor physics, surfaces and interfaces, properties of materials and components on the nanoscale
  • on a scientific level be able to understand and reflect over theory, methods and experiments within the mentioned areas

Skills

  • can use basic scientific methods and tools within the field of physics and materials science
  • can be able to select appropriate theories, methods and tools to solve practical problems
  • can communicate research-based knowledge and discuss professional scientific problems both with peers and non-specialists

Competencies

  • can manage work and development situations that are complex, unpredictable and require new solutions
  • can independently initiate and implement discipline-specific and interdisciplinary cooperation and assume professional responsibility
  • can independently take responsibility for own professional development and specialization

17: Structure and Contents of the programme

The program is structured in modules and organised as a problem-based study. A module is a program element or a group of program elements, which aims to give students a set of professional skills within a fixed time frame specified in ECTS credits, and concluding with one or more examinations within specific exam periods that are defined in the curriculum.
The program is based on a combination of academic, problem-oriented and interdisciplinary approaches and organised based on the following work and evaluation methods that combine skills and reflection:

  • lectures
  • classroom instruction
  • project work
  • workshops
  • exercises (individually and in groups)
  • teacher feedback
  • reflection
  • portfolio work

All modules are assessed through individual grading according to the 7-point scale or Pass/Fail. All modules are assessed by external examination (external grading) or internal examination (internal grading or by assessment by the supervisor only).

18: Overview of the programme

Offered as: 1-professional
Study programme: Nanomaterials and Nanophysics
Module name Course type ECTS Applied grading scale Evaluation method Assessment method Language
1 Semester
Characterisation and Synthesis (Project)
(F-NFM-K1-1)
Project 15 7-point grading scaleInternal examinationOral exam based on a project English
Materials Chemistry
(K-KEM-K1-20)
Course 5 7-point grading scaleInternal examinationWritten or oral exam English
Synthesis and Characterisation (course module)
(F-FYS-K3-8)
Course 5 Passed/Not PassedInternal examinationWritten or oral exam Danish and English
Semiconductors: Physics, Devices and Engineering
(F-FYS-K3-9)
Course 5 7-point grading scaleInternal examinationWritten or oral exam English
2 Semester
Functional Nanostructures
(F-NFM-K2-1)
Project 15 7-point grading scaleInternal examinationOral exam based on a project Danish and English
Optical Nanostructures and Materials
(F-NFM-K2-2)
Course 5 Passed/Not PassedInternal examinationWritten or oral exam Danish and English
Computational Modeling for Physics and Engineering
(F-FYS-K2-4)
Course 5 Passed/Not PassedInternal examinationWritten exam English
Physics and Chemistry of Surfaces
(F-FYS-K2-5)
Course 5 7-point grading scaleInternal examinationWritten or oral exam English
3 Semester
Elective track A
Advanced Applications of Nanotechnology (15 ECTS)
(F-NFM-K3-4)
Project 15 Passed/Not PassedInternal examinationOral exam based on a project Danish and English
Elective courses on 3'rd semester Course 15
3 Semester
Elective track B
Advanced Applications of Nanotechnology (20 ECTS)
(F-NFM-K3-2)
Project 20 Passed/Not PassedInternal examinationOral exam based on a project Danish and English
Elective courses on 3'rd semester Course 10
3 Semester
Elective track C
Advanced Applications of Nanotechnology (25 ECTS)
(F-NFM-K3-5)
Project 25 Passed/Not PassedInternal examinationOral exam based on a project Danish and English
Elective courses on 3'rd semester Course 5
3 Semester
Elective track D
Advanced Applications of Nanotechnology (30 ECTS)
(F-NFM-K3-1)
Project 30 Passed/Not PassedInternal examinationOral exam based on a project Danish and English
3 Semester
Elective track E
Academic Internship (30 ECTS)
(F-FYS-K3-4)
Project 30 7-point grading scaleInternal examinationOral exam based on a project Danish
3-4 Semester
Elective track A
Master’s Thesis (45 ECTS)
(F-NFM-K3-7)
Project 45 7-point grading scaleExternal examinationOral exam based on a project English
Elective courses on 3'rd semester Course 15
3-4 Semester
Elective track B
Master’s Thesis (50 ECTS)
(F-NFM-K3-6)
Project 50 7-point grading scaleExternal examinationOral exam based on a project English
Elective courses on 3'rd semester Course 10
3-4 Semester
Elective track C
Master’s Thesis (60 ECTS)
(F-NFM-K3-3)
Project 60 7-point grading scaleExternal examinationOral exam based on a project English
4 Semester
Master’s Thesis (30 ECTS)
(F-NFM-K4-1)
Project 30 7-point grading scaleExternal examinationMaster's thesis/final project Danish and English

The project on the 3'rd semester can either be 15, 20, 25 or 30 ECTS, dependent on how many elective courses are chosen. The project on the 3rd semester can also be extended to become a Long Master’s Thesis which goes over 2 semesters and will thereby be equal to 60 ECTS. The Long Master’s thesis can also be combined with 2 or 3 elective courses, which means that a Long Master’s thesis can either be 45, 50, or 60 ECTS if no elective courses are chosen.

Students on the 3'rd semester have also the possibility to study at another Danish or international university (go abroad), as well as they can spend the semester at a company performing an academic internship. Studying at another university (including universities abroad), an academic internship at a company, and a Long Master’s Thesis need to be approved by the board of studies.

 
Projects on 3'rd semester
Module name Course type ECTS Applied grading scale Evaluation Method Assessment method Language
Advanced Applications of Nanotechnology (30 ECTS)
(F-NFM-K3-1)
Project 30 Passed/Not Passed Internal examination Oral exam based on a project Danish and English
Advanced Applications of Nanotechnology (25 ECTS)
(F-NFM-K3-5)
Project 25 Passed/Not Passed Internal examination Oral exam based on a project Danish and English
Advanced Applications of Nanotechnology (20 ECTS)
(F-NFM-K3-2)
Project 20 Passed/Not Passed Internal examination Oral exam based on a project Danish and English
Advanced Applications of Nanotechnology (15 ECTS)
(F-NFM-K3-4)
Project 15 Passed/Not Passed Internal examination Oral exam based on a project Danish and English
Academic Internship (30 ECTS)
(F-FYS-K3-4)
Project 30 7-point grading scale Internal examination Oral exam based on a project Danish

 
Elective courses on 3'rd semester
Module name Course type ECTS Applied grading scale Evaluation Method Assessment method Language
Test and Validation
(N-EE-K3-21)
Course 5 Passed/Not Passed Internal examination Written and oral exam English
Reaction Engineering and Molecular Electronics
(F-NB-K1-3)
Course 5 7-point grading scale Internal examination Oral exam English
Modern Physics
(F-FYS-K1-5)
Course 5 7-point grading scale Internal examination Oral exam Danish

 
Master's Thesis (long)
Module name Course type ECTS Applied grading scale Evaluation Method Assessment method Language
Master’s Thesis (60 ECTS)
(F-NFM-K3-3)
Project 60 7-point grading scale External examination Oral exam based on a project English
Master’s Thesis (50 ECTS)
(F-NFM-K3-6)
Project 50 7-point grading scale External examination Oral exam based on a project English
Master’s Thesis (45 ECTS)
(F-NFM-K3-7)
Project 45 7-point grading scale External examination Oral exam based on a project English

19: Additional information

All students who have not participated in Aalborg University’s PBL introductory course during their Bachelor’s degree must attend the introductory course “Problem-based Learning and Project Management”. The introductory course must be approved before the student can participate in the project exam. For further information, please see the School of  Engineering adn Science’ website. 

20: Commencement and transitional rules

The curriculum is approved by the dean and enters into force as of 1'st September 2017.

Students who wish to complete their studies under the previous curriculum from 2016 must conclude their education by the summer examination period 2018 at the latest, since examinations under the previous curriculum are not offered after this time.

21: Amendments to the curriculum and regulations

On July 14 the Pro Dean of Education has approved that there will be prerequisites for enrollment for the exam in the module "Semiconductors: Physics, Devices and Engineering". The exemption is valid from September 2021.

On July 14 the Pro Dean of Education has approved the following changes to the module "Physics and Chemistry of Surfaces":

  • The type of exam is changed from "oral" to "written or oral"
  • There will be prerequisites for enrollment for the exam

The exemption is valid from September 2021.