Course Summary Course Objectives Learning Outcomes Course Materials Teaching Methods Weekly Topics Course Schedule Office Hours Assestment ECTS Calculation Course Policies Learning Tips Print Syllabi Download as PNG

BIO412 Special Topics in Bioengineering

Syllabus   |  International University of Sarajevo  -  Last Update on Mar 03, 2026

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Genetics and Bioengineering

Spring 2023 - 2024 | 6 ECTS Credits | International University of Sarajevo

Academic Year
2023 - 2024
Semester
Spring
Course Code
BIO412
Weekly Hours
3 Teaching + 0 Practice
ECTS
6
Prerequisites
Senior Standing
Teaching Mode Delivery
Face-to-face
Prerequisite For
-
Teaching Mode Delivery Notes
-
Cycle
I Cycle
Prof. Jane Doe

Jasmin Šutković

Course Lecturer

Position
Associate Professor Dr.
Email
jsutkovic@ius.edu.ba
Phone
033 957 187
Assistant(s)
-
Assistant E-mail
-

Course Objectives

This course shall teach the students to acquire knowledge about nature and its compositions. In order to accomplish this, the following objectives will be achieved: • To introduce students to the various types of problems encountered in bioengineering, biosciences, and other related scientific areas; • To develop students’ skills in problem-solving, data interpretation, literature searches, scientific writing, and presentations in a creative way; • To encourage the explorative spirit of students for the latest news in biosciences and science in general.

Learning Outcomes

After successful completion of the course, the student will be able to:

1
Understanding and evaluating information and literature relevant to bioengineering problems
2
Apply engineering ethical analysis and problem solving skills to design solutions to ethical problems
3
Apply creative problem solving techniques to propose approaches that may solve real bioengineering
4
Understand how different fields of bioengineering are correlated with each other
5
Evaluate and refine proposals in light of new information and to work constructively in teams resolving problems through application of bioengineering techniques

Course Materials

Required Textbook

Introduction to Biomedical Engineering, John Enderle and Joseph Bronzino - Third Edition Lecture notes.

Additional Literature
Will be assigned during the lectures

Teaching Methods

Lectures and project notes
Special lecture notes

Weekly Topics

This weekly planning is subject to change with advance notice.
Week Topic Readings / References
1 Introduction and syllabus /
2 What is Bioengineering? To be determined
3 Bioinformatics and miRNAs To be determined
4 How to write a diploma thesis? How to write a journal paper? Project ? Special lecture 1 To be determined
5 Obesity - Nutrition and Nutrigenomic To be determined
6 Biomechanics and Tissue engineering To be determined
7 Special lecture 2 - Topic to be determined. To be determined
8 MIDTERM exam! To be determined
9 Organ-on-a-Chip To be determined
10 GMO -Prime Editing To be determined
11 Special lecture 3 - Topic to be determined. To be determined
12 Minibioreactors /Nanorobots To be determined
13 Individual project presentations To be determined
14 Individual project presentations To be determined
15 Final exam instruction and preparation To be determined

Course Schedule (All Sections)

SectionTypeDay 1Venue 1Day 2Venue 2
BIO412.1 Course - - - -

Office Hours & Room

DayTimeOfficeNotes
Tuesday 09:00 - 12:00 A F1.13 Or any time via teams
Thursday 09:00 - 11:00 A F1.13 Or any time via teams

Assessment Methods and Criteria

Assessment Components

35%x1
Final Exam
AI: Not Allowed

Alignment with Learning Outcomes : 

20%x1
Presentations/ papers
AI: Not Allowed

Alignment with Learning Outcomes : 

30%x1
In-term exam/Midterm
AI: Not Allowed

Alignment with Learning Outcomes : 

5%x1
Participation and attendance
AI: Not Allowed

Alignment with Learning Outcomes : 

10%x2
Quiz
AI: Not Allowed

Alignment with Learning Outcomes : 

IUS Grading System

Grading Scale IUS Grading System IUS Coeff. Letter (B&H) Numerical (B&H)
0 - 44 F 0 F 5
45 - 54 E 1
55 - 64 C 2 E 6
65 - 69 C+ 2.3 D 7
70 -74 B- 2.7
75 - 79 B 3 C 8
80 - 84 B+ 3.3
85 - 94 A- 3.7 B 9
95 - 100 A 4 A 10

IUS Grading System

Letter marks that do not affect student's CGPA:
  • "IP" – In progress is assigned for recording unfulfilled student obligations related to graduation project/thesis/dissertation and internship.
  • "S" – Satisfactory is assigned to a student who passed the examinations that are not numerically graded or whose written assignment has been accepted.
  • "U" – Unsatisfactory is assigned to a student who failed to pass the examinations that are not numerically graded.
  • "W" – Withdrawal signifies that student has withdrawn from the relevant course.
Additional letter mark that affects student's CGPA:

"N/A" – Not attending, and it is assigned to a student who is suspended from the course or who does not meet the minimal requirement for attendance on lectures or tutorials. The course lecturer must follow the attendance policy and assign "N/A" in each case of a student failing attendance.

Late Work Policy

Information about late submission policies will be shared during class and posted in this section. Please check back for official guidelines.

ECTS Credit Calculation

📚 Student Workload

This 6 ECTS credit course corresponds to 150 hours of total student workload, distributed as follows:

Lecture hours

39 hours ⏳ (13 week × 3 h)

Project preparation

18 hours ⏳ (3 week × 6 h)

Quiz study

6 hours ⏳ (2 week × 3 h)

Midterm exam study

24 hours ⏳ (4 week × 6 h)

Final exam study

36 hours ⏳ (4 week × 9 h)

Home study

13 hours ⏳ (13 week × 1 h)

Attendance

14 hours ⏳ (14 week × 1 h)

150 Total Workload Hours

6 ECTS Credits


Course Policies

Academic Integrity

All work submitted must be your own. Plagiarism, cheating, or any form of academic dishonesty will result in disciplinary action according to university policies. When in doubt about citation practices, consult the instructor.

Attendance Policy

Students are expected to adhere to the attendance requirements as outlined in the International University of Sarajevo Study Rules and Regulations. Excessive absences, whether excused or unexcused, may impact academic performance and eligibility for assessment. Mandatory sessions (e.g., labs, workshops) require attendance unless formally exempted. For detailed policies on absences, documentation, and penalties, please refer to the official university regulations.

Technology & AI Policy

Laptops/tablets may be used for note-taking only during lectures. Phones should be silenced and put away during all class sessions. Audio/video recording requires prior permission from the instructor.

Artificial Intelligence (AI) Usage: The use of AI tools (e.g., ChatGPT, Copilot, Gemini) varies by assessment component. Please refer to the AI usage indicator next to each assessment item in the Assessment Methods and Criteria section above. Submitting AI-generated content as your own work, where AI is not explicitly allowed, constitutes an academic integrity violation.

Communication Policy

All course-related communication should occur through official university channels (institutional email or SIS). Emails should include [BIO412] in the subject line.

Academic Quality Assurance Policy

Course Academic Quality Assurance is achieved through Semester Student Survey. At the end of each academic year, the institution of higher education is obliged to evaluate work of the academic staff, or the success of realization of the curricula.

More info

Article 112: Evaluation of Work of the Academic Staff

  1. At the end of each academic year, the institution of higher education is obliged to evaluate work of the academic staff, or the success of realization of the curricula.
  2. Evaluation of work of each academic staff member is to be carried out in accordance with the Statute of the institution of higher education by the institution as well as by students.
  3. The institutions of higher education are obliged to carry out a students’ evaluation survey on the academic staff performance after the end of each semester, or after the completed teaching cycle for the subject taught.
  4. Evaluation must evaluate: lecture quality, student-academic staff interaction, correctness of communication, teacher’s attitudes towards students attending the teaching activities and at assessments, availability of suggested reading material, attendance and punctuality of the teacher, along with other criteria which are defined in the Statute.
  5. The institution of higher education by a specific act determines the procedure for evaluation of the academic staff performance, the content of survey forms, the manner of conducting the evaluation, grading criteria for the evaluation, as well as adequate measures for the academic staff who received negative evaluation for two consecutive years.
  6. The evaluation of the academic staff performance is an integral process of establishment the quality assurance system, or self-control and internal quality assurance.
  7. Results of the evaluation of the academic staff performance are to be adequately analyzed by the institution of higher education, and the decision of the head of the organizational unit about the employee’s work performance is an integral part of the personal file of each member of academic staff.

Learning Tips

Engage Actively

Be prepared to contribute thoughtfully during class discussions, labs, or collaborative work. Active participation deepens understanding and encourages critical thinking.

Read and Review Purposefully

Complete assigned readings or prep materials before class. Take notes, highlight key ideas, and jot down questions. Aim to grasp core concepts and their applications—not just facts.

Think Critically in Assignments

Use course frameworks or methodologies to analyze problems, case studies, or projects. Begin early to allow time for reflection and refinement. Seek feedback to improve your work.

Ask Questions Early

Don’t hesitate to reach out when something is unclear. Use office hours, discussion boards, or peer networks to clarify concepts and stay on track.

Course Academic Quality Assurance: Semester Student Survey

Syllabus Last Updated on Mar 03, 2026 | International University of Sarajevo

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Course Code Course Title Weekly Hours* ECTS Weekly Class Schedule
T P
BIO412 Special Topics in Bioengineering 3 0 6 Thursday from 9-12h
Prerequisite Senior Standing It is a prerequisite to -
Lecturer Jasmin Šutković Office Hours / Room / Phone
Tuesday:
9:00-12:00 Or any time via teams
Thursday:
9:00-11:00 Or any time via teams
A F1.13 - 033 957 187
E-mail jsutkovic@ius.edu.ba
Assistant Assistant E-mail
Course Objectives This course shall teach the students to acquire knowledge about nature and its compositions. In order to accomplish this, the following objectives will be achieved:
• To introduce students to the various types of problems encountered in bioengineering, biosciences, and other related scientific areas;
• To develop students’ skills in problem-solving, data interpretation, literature searches, scientific writing, and presentations in a creative way;
• To encourage the explorative spirit of students for the latest news in biosciences and science in general.
Textbook Introduction to Biomedical Engineering, John Enderle and Joseph Bronzino - Third Edition Lecture notes.
Additional Literature
  • Will be assigned during the lectures
Learning Outcomes After successful  completion of the course, the student will be able to:
  1. Understanding and evaluating information and literature relevant to bioengineering problems
  2. Apply engineering ethical analysis and problem solving skills to design solutions to ethical problems
  3. Apply creative problem solving techniques to propose approaches that may solve real bioengineering
  4. Understand how different fields of bioengineering are correlated with each other
  5. Evaluate and refine proposals in light of new information and to work constructively in teams resolving problems through application of bioengineering techniques
Teaching Methods Lectures and project notes. Special lecture notes.
Teaching Method Delivery Face-to-face Teaching Method Delivery Notes
WEEK TOPIC REFERENCE
Week 1 Introduction and syllabus /
Week 2 What is Bioengineering? To be determined
Week 3 Bioinformatics and miRNAs To be determined
Week 4 How to write a diploma thesis? How to write a journal paper? Project ? Special lecture 1 To be determined
Week 5 Obesity - Nutrition and Nutrigenomic To be determined
Week 6 Biomechanics and Tissue engineering To be determined
Week 7 Special lecture 2 - Topic to be determined. To be determined
Week 8 MIDTERM exam! To be determined
Week 9 Organ-on-a-Chip To be determined
Week 10 GMO -Prime Editing To be determined
Week 11 Special lecture 3 - Topic to be determined. To be determined
Week 12 Minibioreactors /Nanorobots To be determined
Week 13 Individual project presentations To be determined
Week 14 Individual project presentations To be determined
Week 15 Final exam instruction and preparation To be determined
Assessment Methods and Criteria Evaluation Tool Quantity Weight Alignment with LOs AI Usage
Final Exam 1 35 all Not Allowed
Semester Evaluation Components
Presentations/ papers 1 20 all Not Allowed
In-term exam/Midterm 1 30 all Not Allowed
Participation and attendance 1 5 all Not Allowed
Quiz 2 10 all Not Allowed
***     ECTS Credit Calculation     ***
 Activity Hours Weeks Student Workload Hours Activity Hours Weeks Student Workload Hours
Lecture hours 3 13 39 Project preparation 6 3 18
Quiz study 3 2 6 Midterm exam study 6 4 24
Final exam study 9 4 36 Home study 1 13 13
Attendance 1 14 14
        Total Workload Hours = 150
*T= Teaching, P= Practice ECTS Credit = 6
Course Academic Quality Assurance: Semester Student Survey Last Update Date: 27/03/2026

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