ECTS - Design Thinking for Social Sustainability

Design Thinking for Social Sustainability (ART303) Course Detail

Course Name Course Code Season Lecture Hours Application Hours Lab Hours Credit ECTS
Design Thinking for Social Sustainability ART303 Fall and Spring 3 0 0 3 4
Pre-requisite Course(s)
N/A
Course Language English
Course Type Elective Courses
Course Level Bachelor’s Degree (First Cycle)
Mode of Delivery
Learning and Teaching Strategies .
Course Coordinator
Course Lecturer(s)
Course Assistants
Course Objectives
Course Learning Outcomes The students who succeeded in this course;
Course Content This course introduces the students to the design thinking process and aims to apply it to challenges related to social sustainability. It explores how design thinking can be used to address social sustainability challenges,particularly those that require collaboration between natural/applied sciences,social sciences and art.Through hands-on projects, interdisciplinary collaboration,and engagement with community stakeholders, students learn how to approach complex social issues creatively and

Weekly Subjects and Releated Preparation Studies

Week Subjects Preparation

Sources

Evaluation System

Requirements Number Percentage of Grade
Attendance/Participation - -
Laboratory - -
Application - -
Field Work - -
Special Course Internship - -
Quizzes/Studio Critics - -
Homework Assignments - -
Presentation - -
Project - -
Report - -
Seminar - -
Midterms Exams/Midterms Jury - -
Final Exam/Final Jury - -
Toplam 0 0
Percentage of Semester Work
Percentage of Final Work 100
Total 100

Course Category

Core Courses X
Major Area Courses
Supportive Courses
Media and Managment Skills Courses
Transferable Skill Courses

The Relation Between Course Learning Competencies and Program Qualifications

# Program Qualifications / Competencies Level of Contribution
1 2 3 4 5
1 Understands and applies the basic concepts of mathematics and physics.
2 Knows and applies the theoretical and practical concepts of basic electricity and electronic circuits.
3 Knows the computer architecture, data buses, and analog/digital devices of the aircraft in detail.
4 Identifies aircraft materials and hardware, and uses this knowledge in maintenance.
5 Installs all avionics equipment, troubleshoots faults, performs disassembly and replacement, and conducts tests.
6 Knows and applies the maintenance, repair, and overhaul standards of aircraft electrical and electronic systems and components.
7 Uses the technical knowledge, skills, and modern maintenance tools required for avionic maintenance practices.
8 Works in multidisciplinary environments and demonstrates individual and teamwork skills.
9 Communicates effectively in oral and written forms in multiple languages (English, Turkish, etc.).
10 Recognizes the necessity of lifelong learning, accesses information effectively, and follows innovations in science and technology.
11 Acts with professional and ethical responsibility.

ECTS/Workload Table

Activities Number Duration (Hours) Total Workload
Course Hours (Including Exam Week: 16 x Total Hours)
Laboratory
Application
Special Course Internship
Field Work
Study Hours Out of Class
Presentation/Seminar Prepration
Project
Report
Homework Assignments
Quizzes/Studio Critics
Prepration of Midterm Exams/Midterm Jury
Prepration of Final Exams/Final Jury
Total Workload 0