Software engineering
Structure Type: | Course |
Code: | KL04BTOHTE1 |
Type: | Compulsory |
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Level: | Bachelor |
Credits: | 3.0 points |
Responsible Teacher: | Lahti, Markku |
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Teacher Team: | Mäkelä, Petteri |
Language of Instruction: | Finnish |
Course Implementations, Planned Year of Study and Semester
Curriculum   | Semester   | Credits   | Start of Semester   | End of Semester |
TITE-2013   |
3 spring   |
3.0   |
2016-01-01   |
2016-07-31   |
TITE-2013   |
3 spring   |
3.0   |
2016-01-01   |
2016-07-31   |
TITE-2013   |
3 spring   |
3.0   |
2016-01-01   |
2016-07-31   |
TITE-2014   |
3 spring   |
3.0   |
2017-01-01   |
2017-07-31   |
TITE-2014   |
3 spring   |
3.0   |
2017-01-01   |
2017-07-31   |
TITE-2014   |
3 spring   |
3.0   |
2017-01-01   |
2017-07-31   |
TITE-2015   |
3 spring   |
3.0   |
2018-01-01   |
2018-07-31   |
TITE-2015   |
3 spring   |
3.0   |
2018-01-01   |
2018-07-31   |
TITE-2015   |
3 spring   |
3.0   |
2018-01-01   |
2018-07-31   |
TITE-2016   |
3 spring   |
3.0   |
2019-01-01   |
2019-07-31   |
TITE-2016   |
3 spring   |
3.0   |
2019-01-01   |
2019-07-31   |
Learning Outcomes
Student is familiar with the basic knowledge of the software proces. Student learns to use software development tools and methods.
Student's Workload
80 h, of which scheduled studies 40 h and autonomous studies 40 h
Prerequisites / Recommended Optional Courses
No previous studies are required.
Contents
- software life cycle models
- agile methods
- UML - modelling
Recommended or Required Reading
Will be announced at the beginning of the course.
Mode of Delivery / Planned Learning Activities and Teaching Methods
Lectures, exercises and independent study
Assessment Criteria
- Excellent (5): The student can utilize the learned skills in the exercises
- Good (3-4): The student masters well the principles
- Satisfactory (1-2) The student knows the basics
Assessment Methods
Exam and exercices
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