CET2052 Human-Computer InteractionBahçeşehir UniversityDegree Programs ARTIFICIAL INTELLIGENCE ENGINEERINGGeneral Information For StudentsDiploma SupplementErasmus Policy StatementNational QualificationsBologna Commission
ARTIFICIAL INTELLIGENCE ENGINEERING
Bachelor TR-NQF-HE: Level 6 QF-EHEA: First Cycle EQF-LLL: Level 6

Course Introduction and Application Information

Course Code Course Name Semester Theoretical Practical Credit ECTS
CET2052 Human-Computer Interaction Spring
3 0 3 6
This catalog is for information purposes. Course status is determined by the relevant department at the beginning of semester.

Basic information

Language of instruction: English
Type of course: Non-Departmental Elective
Course Level: Bachelor’s Degree (First Cycle)
Mode of Delivery: Face to face
Course Coordinator : Dr. Öğr. Üyesi YAVUZ SAMUR
Course Lecturer(s): Dr. Öğr. Üyesi ÖZGÜR ERKUT ŞAHİN
Recommended Optional Program Components: There is no recommended optional program component.
Course Objectives: To introduce principles of human-computer interaction and usability of interafce design. Conducting usability testing and reporting results

Learning Outcomes

The students who have succeeded in this course;
o Identify fundamental design principles of human-computer interaction,
o Explain analysis, design and evaluation principles of human-computer interaction,
o Explain usability testing methods,
o Evaluate the software by conducting usability test.

Course Content

Computer-human interface designs: principles, types, models; human factors: ergonomics, physiological issues, cognitive processing, task analysis, hardware; evaluations: usability, surveys, ethnographic; practical examples; data visualization.

Weekly Detailed Course Contents

Week Subject Related Preparation
1) Introduction and Theoretical Foundations : Introduction to HCI, Human, Interaction and Computer Chapter 1, 2 and 3: “Dix, A., Finlay, J., Abowd, G. & Beale, R. (2004). Human-Computer Interaction (3rd Edt.), USA: Prentice Hall.”
2) Introduction and Theoretical Foundations : Software Life Cycle and HCI, Project Planning, Analysis, Design and Evaluation Chapter 1-3: “Dix, A., Finlay, J., Abowd, G. & Beale, R. (2004). Human-Computer Interaction (3rd Edt.), USA: Prentice Hall.”
3) Interaction design basics Chapter 5: “Dix, A., Finlay, J., Abowd, G. & Beale, R. (2004). Human-Computer Interaction (3rd Edt.), USA: Prentice Hall.”
4) Design rules & usability Chapter 7: “Dix, A., Finlay, J., Abowd, G. & Beale, R. (2004). Human-Computer Interaction (3rd Edt.), USA: Prentice Hall.”
5) Design Process and Evaluation Optimizing the User Experience Accessibility Hardware & Software Chapter 1-4: “Leavitt, M.O. & Shneiderman, B. (2006). Research-Based Web Design & Usability Guidelines. U.S. Department of Health & Human Services & U.S. General Services Administration.”
6) The Homepage Page Layout Navigation Scrolling and Paging Chapter 5-8: “Leavitt, M.O. & Shneiderman, B. (2006). Research-Based Web Design & Usability Guidelines. U.S. Department of Health & Human Services & U.S. General Services Administration.”
7) Headlines, Titles, and Labels Links Text Appearance Lists Screen-based Controls (Widgets) Chapter 9-13: “Leavitt, M.O. & Shneiderman, B. (2006). Research-Based Web Design & Usability Guidelines. U.S. Department of Health & Human Services & U.S. General Services Administration.”
8) Graphics, Images and Multimedia Writing Web Content Content Organization Search Chapter 14-17: “Leavitt, M.O. & Shneiderman, B. (2006). Research-Based Web Design & Usability Guidelines. U.S. Department of Health & Human Services & U.S. General Services Administration.”
9) Ergonomics
10) Usability & Mobile Usability
11) Usability Testing Metrics and Methods
12) Usability Testing Metrics and Methods
13) Usability testing
14) Usability testing

Sources

Course Notes / Textbooks: “Leavitt, M.O. & Shneiderman, B. (2006). Research-Based Web Design & Usability Guidelines. U.S. Department of Health & Human Services & U.S. General Services Administration. [http://www.usability.gov/pdfs/guidelines.html]”
“Dix, A., Finlay, J., Abowd, G. & Beale, R. (2004). Human-Computer Interaction (3rd Edt.), USA: Prentice Hall. [http://www.hcibook.com/e3/] “
References: Zaphiris, P. & Kurniawan, S. (2007). Human-Computer Interaction Research in Web Design and Evaluation. London: IDEA Group Pub.

Evaluation System

Semester Requirements Number of Activities Level of Contribution
Attendance 16 % 10
Project 1 % 40
Midterms 1 % 20
Final 1 % 30
Total % 100
PERCENTAGE OF SEMESTER WORK % 30
PERCENTAGE OF FINAL WORK % 70
Total % 100

Contribution of Learning Outcomes to Programme Outcomes

No Effect 1 Lowest 2 Low 3 Average 4 High 5 Highest
           
Program Outcomes Level of Contribution
1) Have sufficient background in mathematics, science and artificial intelligence engineering.
2) Use theoretical and applied knowledge in the fields of mathematics, science and artificial intelligence engineering together for engineering solutions.
3) Identify, define, formulate and solve engineering problems, select and apply appropriate analytical methods and modeling techniques for this purpose.
4) Analyse a system, system component or process and design it under realistic constraints to meet desired requirements; apply modern design methods in this direction.
5) Select and use modern techniques and tools necessary for engineering applications.
6) Design and conduct experiments, collect data, and analyse and interpret results.
7) Work effectively both as an individual and as a multi-disciplinary team member.
8) Access information via conducting literature research, using databases and other resources
9) Follow the developments in science and technology and constantly update themself with an awareness of the necessity of lifelong learning.
10) Use information and communication technologies together with computer software with at least the European Computer License Advanced Level required by their field.
11) Communicate effectively, both verbal and written; know a foreign language at least at the European Language Portfolio B1 General Level.
12) Have an awareness of the universal and social impacts of engineering solutions and applications; know about entrepreneurship and innovation; and have an awareness of the problems of the age.
13) Have a sense of professional and ethical responsibility.
14) Have an awareness of project management, workplace practices, employee health, environment and work safety; know the legal consequences of engineering practices.