Please note! Course description is confirmed for two academic years, which means that in general, e.g. Learning outcomes, assessment methods and key content stays unchanged. However, via course syllabus, it is possible to specify or change the course execution in each realization of the course, such as how the contact sessions are organized, assessment methods weighted or materials used.

LEARNING OUTCOMES

This course refreshes students' basic mathematical skills and develops software and programming competencies that are needed in studies for Master's degree. The contents include topics e.g. data analysis, mathematical transforms, matrix operations and differential equations. Exercises are solved using MATLAB and/or Mathematica, which supports the learning of these widely used programming platforms.

Credits: 5

Schedule: 07.09.2022 - 07.12.2022

Teacher in charge (valid for whole curriculum period):

Teacher in charge (applies in this implementation): Keijo Nikoskinen, Ilkka Tittonen

Contact information for the course (applies in this implementation):

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CEFR level (valid for whole curriculum period):

Language of instruction and studies (applies in this implementation):

Teaching language: English. Languages of study attainment: English

CONTENT, ASSESSMENT AND WORKLOAD

Content
  • valid for whole curriculum period:

    This course addresses analysis and modelling of mathematical problems in the fields of physics and engineering. Lectures focus on the theoretical backgrounds of studied problems and exercises on their computational solution methods. MATLAB and Mathematica are the main software platforms used for numeric modelling of the given problems. 

    Course consists of topics including: data analysis, symbolic and numeric approaches for solving physics and engineering problems, mathematical transforms, differential and integral equations, systems of differential equation, and numerical methods on differential equations. Contents may vary slightly every year.

  • applies in this implementation

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Assessment Methods and Criteria
  • valid for whole curriculum period:

    Homework exercises

  • applies in this implementation

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Workload
  • valid for whole curriculum period:

    Lectures: 24 h
    Computer exercises: 40 h
    Scientific writing: 6 h
    Individual work: 60 h

  • applies in this implementation

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DETAILS

Study Material
  • applies in this implementation

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Substitutes for Courses
Prerequisites

FURTHER INFORMATION

Further Information
  • valid for whole curriculum period:

    Teaching Language : English

    Teaching Period : 2022-2023 Autumn I - II
    2023-2024 Autumn I - II

  • applies in this implementation

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Details on the schedule
  • applies in this implementation

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