Mathematics (61-75 Credits), 15 credits

Matematik (61-75 hp), 15 hp

9AMA59

The course is disused.

Main field of study

Mathematics

Course level

Second cycle

Course type

Programme course

Examiner

Jonas Bergman Ärlebäck

Course coordinator

Jonas Bergman Ärlebäck

Director of studies or equivalent

Jesper Thorén
ECV = Elective / Compulsory / Voluntary
Course offered for Semester Weeks Language Campus ECV
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L1A79 Secondary School Teacher Programme - Grades 7-9 of the Compulsory School, Subject Mathematics, 270 hp (Subject: Mathematics) 7 (Autumn 2020) 202034-202044 Swedish Linköping, Valla E
L1A79 Secondary School Teacher Programme - Grades 7-9 of the Compulsory School, Subject Social Studies, 270 hp (Subject: Social Studies) 7 (Autumn 2020) 202034-202044 Swedish Linköping, Valla E
L1A79 Secondary School Teacher Programme - Grades 7-9 of the Compulsory School, Subject Swedish, 270 hp (Subject: Swedish) 7 (Autumn 2020) 202034-202044 Swedish Linköping, Valla E
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Main field of study

Mathematics

Course level

Second cycle

Advancement level

A1X

Course offered for

  • Secondary School Teacher Programme with a specialization in Teaching in Grades 7-9 of the Compulsory School

Examination

Applies to all courses regardless of grading scale.

  • Students failing an exam covering either the entire course or part of the course two times are entitled to have a new examiner appointed for the reexamination.

If the course has a three-graded grading scale (U - VG), following applies:

  • Students who have passed an examination may not retake it in order to improve their grades.

If the course is a VfU course, the following applies:

  • Examination of applied social and didactic abilities is limited to three (3) occasions.

The following applies to courses that include a compulsory component:

  • If special circumstances prevail, and if it is possible with consideration of the nature of the compulsory component, the examiner may decide to replace the compulsory component with another equivalent component.

If the LiU coordinator for students with disabilities has granted a student the right to an adapted examination for a written examination in an examination hall, the student has the right to it. If the coordinator has instead recommended for the student an adapted examination or alternative form of examination, the examiner may grant this if the examiner assesses that it is possible, based on consideration of the course objectives.

Grades

Three-grade scale, U, G, VG

Other information

Planning and implementation of a course must take its starting point in the wording of the syllabus. The course evaluation included in each course must therefore take up the question how well the course agrees with the syllabus.

The course is carried out in such a way that both men´s and women´s experience and knowledge is made visible and developed.

Department

Matematiska institutionen
Code Name Scope Grading scale
UPG1 Exam 2 credits U, G
STN1 Written exam 4 credits U, G, VG
LAB1 Laboratory work 2.5 credits U, G
DAT1 Computer examination 0.5 credits U, G, VG
LAB2 Laboratory work 1.5 credits U, G
DAT2 Computer examination 0.5 credits U, G, VG
SRE6 Oral examination with a written assignment 1 credits U, G
SRE7 Skriftlig redovisning, Matematiska modellerings aktiviteter 3 credits U, G
- Blum, W., Galbraith, P., Henn, H., & Niss, M. (Eds.) (2007). Modelling and applications in mathematics education. The 14th ICMI study. New York: Springer. - Frejd, P. (2014). Mathematical modelling in upper secondary school in Sweden : An exploratory investigation. Doctoral thesis. Linköping: Linköping University. (sid. 1-34) - Jablonka, E. (2010). Reflections on mathematical modelling. In H. Alrø, O. Ravn, & P. Valero (Eds.), Critical mathematics education: Past, present and future (pp. 89-100). Rotterdam: Sense Publishers. - Lesh, R. A., & Doerr, H. M. (2003). Foundations of a models and modeling perspective on mathematics teaching, learning, and problem solving. In R. A. Lesh & H. M. Doerr (Eds.), Beyond constructivism: Models and modeling perspectives on mathematics problem solving, learning, and teaching (pp. 3–33). Mahwah, NJ: Lawrence Erlbaum Associates. - Lesh, R. A., Cramer, K., Doerr, H. M., Post, T., & Zawojewski, J. S. (2003). Model development sequences. In R. A. Lesh & H. M. Doerr (Eds.), Beyond constructivism: Models and modeling perspectives on mathematics problem solving, learning, and teaching (pp. 35–58). Mahwah, NJ: Lawrence Erlbaum Associates - Tung, K. (2007). Topics in mathematical modeling. Princeton university Press. (valda kapitel) - Ärlebäck, J. B. (2010). Mathematical modelling in upper secondary mathematics education in Sweden: A curricula and design study. Doctoral thesis. Linköping: Linköping University. (sid. 1-75)

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