ECTS - Introduction to Sustainability
Introduction to Sustainability (MAN408) Course Detail
| Course Name | Course Code | Season | Lecture Hours | Application Hours | Lab Hours | Credit | ECTS |
|---|---|---|---|---|---|---|---|
| Introduction to Sustainability | MAN408 | General Elective | 3 | 0 | 0 | 3 | 5 |
| Pre-requisite Course(s) |
|---|
| N/A |
| Course Language | English |
|---|---|
| Course Type | Elective Courses |
| Course Level | Bachelor’s Degree (First Cycle) |
| Mode of Delivery | Face To Face |
| Learning and Teaching Strategies | Lecture, Demonstration, Discussion, Question and Answer, Observation Case Study, Problem Solving, Team/Group. |
| Course Lecturer(s) |
|
| Course Objectives | This course introduces students to the principles of sustainability and their implications for business strategy, management, and policy. It explores environmental, social, and governance (ESG) dimensions, sustainable development, circular economy, climate change, sustainable innovation, and ethical leadership. The course combines theory, case analysis, and applied projects. |
| Course Learning Outcomes |
The students who succeeded in this course;
|
| Course Content | What is sustainability; sustainability and related polices; climate and global change; environmental and resource economics; sustainable business practices; sustainability: ethics, culture, and history; sustainable development; sustainability indicators. |
Weekly Subjects and Releated Preparation Studies
| Week | Subjects | Preparation |
|---|---|---|
| 1 | Introduction | |
| 2 | Introduction to Sustainability What is sustainability? Triple Bottom Line Historical evolution of sustainable development | |
| 3 | Sustainable Development & Global Agenda Overview of the 17 Sustainable Development Goals (SDGs) Global sustainability challenges Role of governments and institutions | |
| 4 | Climate Change and Business Climate and Global Change Climate science basics Carbon footprint Climate risk and business strategy | |
| 5 | Corporate Social Responsibility (CSR) Evolution of CSR Strategic CSR, Sustainable products and services Sustainable Business Practices Corporate governance | |
| 6 | ESG and Sustainable Finance What is ESG? ESG ratings and reporting Sustainable investment | |
| 7 | Circular Economy Linear vs circular models Waste management Sustainable production systems | |
| 8 | Sustainable Operations & Supply Chains Green supply chain management Sustainable sourcing Scope 1, 2, 3 emissions | |
| 9 | Sustainable Innovation & Entrepreneurship Green innovation Clean technologies Social entrepreneurship | |
| 10 | Sustainable Leadership & Organizational Culture Ethical leadership Stakeholder theory Change management for sustainability | |
| 11 | Sustainable Marketing & Consumer Behavior Greenwashing Responsible consumption Sustainable branding | |
| 12 | Digitalization & Sustainability Industry 4.0 Smart cities Digital transformation for sustainability | |
| 13 | Measuring Impact KPIs for sustainability Sustainability reporting Integrated reporting | |
| 14 | Planetary Boundaries Concept Growth Dynamics Energy Case Population Dynamics |
Sources
| Other Sources | 1. Sustainability: A Comprehensive Foundation by Tom Theis and Jonathan Tomkin, Editors |
|---|---|
| 2. Brinkmann, R. (2016). Introduction to sustainability. John Wiley & Sons | |
| 3. Other related course materials provided by instructor. |
Evaluation System
| Requirements | Number | Percentage of Grade |
|---|---|---|
| Attendance/Participation | - | - |
| Laboratory | - | - |
| Application | - | - |
| Field Work | - | - |
| Special Course Internship | - | - |
| Quizzes/Studio Critics | - | - |
| Homework Assignments | 1 | 30 |
| Presentation | - | - |
| Project | - | - |
| Report | - | - |
| Seminar | - | - |
| Midterms Exams/Midterms Jury | 1 | 30 |
| Final Exam/Final Jury | 1 | 40 |
| Toplam | 3 | 100 |
| Percentage of Semester Work | 60 |
|---|---|
| Percentage of Final Work | 40 |
| 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 | Obtain adequate knowledge in mathematics, science and subjects specific to the Materials Engineering; the ability to apply theoretical and practical knowledge of these areas to solve complex engineering problems and to model and solve of materials systems | |||||
| 2 | Obtain understanding of science and engineering principles related to the structures, properties, processing and performance of Materials systems | |||||
| 3 | Obtain the ability to identify, define, formulate and solve complex engineering problems; selecting and applying proper analysis and modeling techniques for this purpose | |||||
| 4 | Obtain the ability to design and choose proper materials for a complex system, process, device or product under realistic constraints and conditions to meet specific requirements; the ability to apply modern design and materials selection methods for this purpose | |||||
| 5 | Obtain the ability to develop, select and utilize modern techniques and tools essential for the analysis and solution of complex problems in Materails Engineering applications; the ability to utilize information technologies effectively | |||||
| 6 | Obtain the ability to design and conduct experiments, collect data, analyse and interpret results using statistical and computational methods for complex engineering problems or research topics specific to Materials Engineering | |||||
| 7 | Obtain the ability to work effectively in inter/inner disciplinary teams; ability to work individually | |||||
| 8 | Obtain effective oral and written communication skills in Turkish; knowlegde of at least one foreign language; the ability to write effective reports and comprehend written reports, to prepare design and production reports, to make effective presentations, to give and receive clear and understandable instructions | |||||
| 9 | Obtain recognition of the need for lifelong learning; the ability to access information; follow recent developments in science and technology with continuous self-development | |||||
| 10 | Obtain the ability to behave according to ethical principles, awareness of professional and ethical responsibility; knowledge of standards used in engineering applications | |||||
| 11 | Obtain knowledge on business practices such as project management, risk management and change management; awareness in entrepreneurship and innovativeness; knowledge of sustainable development | |||||
| 12 | Obtain knowledge of the effects of Materials Engineering applications on the universal and social dimensions of health, environment and safety, knowledge of modern age problems reflected on engineering; awareness of legal consequences of engineering solutions | |||||
ECTS/Workload Table
| Activities | Number | Duration (Hours) | Total Workload |
|---|---|---|---|
| Course Hours (Including Exam Week: 16 x Total Hours) | 16 | 3 | 48 |
| Laboratory | |||
| Application | |||
| Special Course Internship | |||
| Field Work | |||
| Study Hours Out of Class | |||
| Presentation/Seminar Prepration | |||
| Project | |||
| Report | |||
| Homework Assignments | 12 | 2 | 24 |
| Quizzes/Studio Critics | |||
| Prepration of Midterm Exams/Midterm Jury | 1 | 25 | 25 |
| Prepration of Final Exams/Final Jury | 1 | 25 | 25 |
| Total Workload | 122 | ||