Subject

Software Engineering

1. Course Title Software Engineering
Software engineering
2. Code F23L2S029
3. Study Programme Application of Information Technologies, Computer Science, Computer Engineering, Professional Studies in Programming
4. Organizer of the study programme (unit, institute, department or division) Faculty of Computer Science and Engineering
5. Degree level (first, second, third cycle) First Cycle
6. Academic year / semester 4 / Summer
7. Number of ECTS credits 6
8. Teacher Dejan Gjorgjević, Georgi Madjarov, Ivica Dimitrovski, Katarina Trojačanec Dineva, Katerina Zdravkova
9. Prerequisites for enrolling in the course Object-oriented programming
10. Objectives of the course programme (competences) The goal of the course is to familiarize students with the methodologies for designing and implementing software systems through requirements analysis, design development and analysis, implementation, integration, and testing of the software; analysis of a software development problem, designing a modular structure of the solution that addresses the problem and analysis and evaluation of alternatives; implementation of efficient and correct modules, their integration and testing, planning and management of software projects.
11. Course content (1) Introduction to Software Engineering
(1) Characteristics of software and software projects
(2) Software development process and methodologies: decomposition, abstraction, object model
(1) Requirements analysis and modeling: structured analysis, object-oriented analysis, formal specifications
(2) Software and software architecture design: writing specifications, conceptual, logical, and physical software design
(2) Design templates, static and dynamic analysis, implementation, documentation, planning
(1) Introduction to testing: functional testing, systematic testing
(1) Leading and managing software projects
12. Learning methods Lectures using presentations, interactive lectures, exercises (using equipment and software packages), teamwork, case studies, guest lectures, independent preparation and defense of a project assignment and a seminar paper.
13. Total available time 6 ECTS x 30 hours = 180 hours
14. Distribution of available time 30 + 45 + 15 + 15 + 75 = 180 hours
15. Forms of teaching activities
15.1. Lectures - theoretical instruction 30 hours
15.2. Exercises (laboratory, auditory), seminars, teamwork 45 hours
16. Other forms of activities
16.1. Project assignments 15 hours
16.2. Independent assignments 15 hours
16.3. Home study 75 hours
17. Assessment method
17.1. Tests 10 points
17.2. Seminar paper / project (presentation: written and oral) 15 points
17.3. Activities and learning 10 points
17.4. Final exam 70 points
18. Grading criteria (points / grade)
up to 50 points5 (five) (F)
from 51 to 60 points6 (six) (E)
from 61 to 70 points7 (seven) (D)
from 71 to 80 points8 (eight) (C)
from 81 to 90 points9 (nine) (B)
from 91 to 100 points10 (ten) (A)
19. Requirement for obtaining a signature and taking the final exam Activities 15.2 and 16.1 completed
20. Language of instruction Macedonian and English
21. Method for monitoring the quality of teaching internal evaluation and survey mechanism
22. Literature
22.1. Required literature
1. Roger S. Pressman, Bruce R. Maxim | Software Engineering: A Practitioner's Approach (9th Edition) | McGraw Hill | 2019
2. Ian Sommerville | Software Engineering (10th Edition) | Pearson | 2015
22.2. Additional literature
No. Author Title Publisher Year