Transitional arrangement 2016-2017

Transitional arrangement 2016-2017

Mark Bentum, October 2016

In this document an overview is presented of the arrangements for ‘old courses’, which are not given anymore in the current program.

Principles:

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After a course is terminated in the old curriculum, there will be test-opportunities for two additional years.

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These tests can be a written exam in the same quartile as in the old curriculum, but also an oral exam might be scheduled if only a few students need to take the resit. Contact the responsible teacher of the course (see Osiris).

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For a couple of courses in the old curriculum, tests are possible by doing a sub-test in the new module. Contact the module coordinator for details.

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Two years after termination of the course, no extra tests will be offered. Students who did not complete all the courses in the old curriculum will be transferred to the TOM-module curriculum (which can result in re-doing parts which were finished before).

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In some cases it is possible to finish a couple of old courses by finishing a module in the new curriculum.

Arrangements for first year courses:

No possibilities for old first year courses are given anymore.

Arrangements for the second year courses:

No possibilities for old second year courses are given anymore.

Arrangements for the third year courses:

Quartile

Course

Arrangements 2015-2016

3.1

Minor

The minor space in the old curriculum is 20EC in total. It is possible to do new minors, however, these are 15 EC. Contact minor coordinator for possibilities.

Electrodynamics

Oral exams are possible. Contact the teacher: Wouter Olthuis

Practical Realizing in Materials

Project is integrated in module 2.3a. Please consult the coordinator of this module.

3.2

Minor

See above.

Optical basic functions and micro systems

An exam will be scheduled in quartile 3.2 and the final resit in April 2017.

3.3

Embedded Signal Processing

Contact Daniel Schinkel. You can do the ESP part in module 11. With an additional lab session you finish ESP.

Random Signal and Noise

An exam will be scheduled in quartile 3.1 and the final resit in the summer of 2017.

The content will be given in module 2.4 (see also special arrangements). It is not possible to take the subtests in module 2.4.

Introduction to Communication Systems

An exam will be scheduled in quartile 3.3 and the final resit in the summer of 2017.

The content will be given in module 2.4 (see also special arrangements). It is not possible to take the subtests in module 2.4.

3.4

Bachelor project

No change.

For all arrangements contact the teacher and/or the bachelor coordinator for details about the exams etc. Be sure to do this on time !!
Also contact the study advisor for the latest information and the planning.

Special arrangements:

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In case the courses “Theory of Electromagnetic fields + practical work” and “Electrodynamics” should be done, students can do the module “Fields and Waves” (without the math part). The grade for the module will be taken as grade for both the Theory of Electromagnetic fields + practical work” and “Electrodynamics” courses.

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For the courses “Control Engineering”, “Dynamical Systems”, “Linear Systems” and the “Mechatronics project” the module “Systems and Control” can be done. The grade for the subtests in the module will count as grade for the individual courses. You should do the complete module!! Be sure to contact the module coordinator in advance.

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For the courses ‘Probability theory’, ‘Introduction to communication systems’ and ‘Random signals and noise’ module 2.4 can be taken as alternative. This module integrates the three courses, so it is all or nothing. Grade of the module will count as grade for the four courses.

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The course ‘Dynamical Systems’ is identical to the MSc-course ‘Engineering Systems Dynamics’ (191210431). This MSc-course is a bridging course for non-EE students. Students who need to do the ‘Dynamical Systems’ course can follow the MSc-course (in first quartile). Several written tests will be offered during the academic year

List of written tests:

October 2016:

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Random Signals and Noise

January 2017:

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Optical Basicfunctions and microsystems

April 2017:

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Optical Basicfunctions and microsystems (last possibility)

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Embedded Signal Processing

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Introduction to Communication Systems

June/July 2017:

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Embedded Signal Processing (last possibility)

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Random Signals & Noise (last possibility)

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Introduction to Communication Systems (last possibility)

Oral exams (contact teacher):

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Introduction to Semiconductor Devices

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Electrodynamics