Industrial Engineering Bachelor's Degree Program

Program Outcomes

1) Sufficient knowledge in mathematics, sciences, and the related engineering discipline; the ability to apply theoretical and practical knowledge in these areas to solve complex engineering problems.

1.A) Adequate knowledge in mathematics; ability to use theoretical and applied knowledge in these fields to solve complex engineering problems.

1.B) Adequate knowledge in science; ability to use theoretical and applied knowledge in these fields to solve complex engineering problems.

1.C) Adequate knowledge in subjects specific to the Industrial Engineering discipline; ability to use theoretical and applied knowledge in these fields to solve complex engineering problems.

2) Ability to identify, define, formulate, and solve complex engineering problems; ability to select and apply appropriate analysis and modeling methods for this purpose.

2.A) Ability to define and formulate complex engineering problems;

2.B) Ability to solve complex engineering problems;

2.C) Ability to select and apply appropriate analysis and modeling methods for the purpose of defining, formulating and solving complex engineering problems.

3) Ability to design a complex system, process, device, or product under realistic constraints and conditions to meet specified requirements, and apply modern design methods for this purpose.

3.A) Ability to design a complex system, process, device or product to meet specific requirements under realistic constraints and conditions

3.B) Ability to apply modern design methods to design a complex system, process, device or product to meet specific requirements under realistic constraints and conditions.

4) Ability to develop, select, and use modern techniques and tools necessary for analyzing and solving complex engineering problems; ability to use information technologies effectively.

4.A) Ability to select and use modern techniques and tools required for the analysis and solution of complex problems encountered in engineering applications

4.B) Ability to effectively use information technologies required for the analysis and solution of complex problems encountered in engineering applications

5) Ability to design and conduct experiments, collect data, analyze and interpret results for investigating complex engineering problems or research topics related to the discipline.

5.A) Ability to design experiments to examine complex engineering problems or discipline-specific research topics

5.B) Ability to conduct experiments to examine complex engineering problems or discipline-specific research topics

5.C) Ability to collect data to examine complex engineering problems or discipline-specific research topics

5.D) Ability to analyze and interpret results to examine complex engineering problems or discipline-specific research topics

6) Ability to work effectively in disciplinary and multidisciplinary teams; ability to work independently.

6.A) Ability to work effectively in intra-disciplinary teams

6.B) Ability to work effectively in multi-disciplinary teams

6.C) Ability to work individually

7) Ability to communicate effectively in Turkish, both orally and in writing; proficiency in at least one foreign language; ability to write effective reports, including design and production reports; ability to comprehend written reports effectively; ability to deliver effective presentations; ability to give and receive clear and understandable instructions.

7.A) Ability to communicate effectively orally and in writing, to make effective presentations

7.B) Knowledge of at least one foreign language

7.C) Ability to write effective reports and understand written reports, to prepare design and production reports

7.D) Ability to give and receive clear and understandable instructions

8) Awareness of the necessity of lifelong learning; ability to access information, to follow developments in science and technology, and to constantly renew oneself.

9) Adherence to ethical principles and awareness of professional and ethical responsibilities; Knowledge of standards used in engineering applications.

9.A) Acting in accordance with ethical principles, awareness of professional and ethical responsibility

9.B) Having knowledge of standards used in engineering practices

10) Knowledge of business practices, including project management, risk management, and change management; awareness of entrepreneurship and innovation; understanding of sustainable development.

10.A) Having knowledge of applications in business life such as project management, risk management and change management

10.B) Awareness of entrepreneurship and innovation

10.C) Having knowledge of sustainable development

11) Awareness of the impact of engineering practices on health, environment, and safety at the universal and societal levels, as well as awareness of contemporary issues; knowledge of legal and regulatory frameworks relevant to engineering applications.

11.A) Having knowledge of the universal and societal effects of engineering practices on health, environment and safety and the problems of the age reflected in the field of engineering

11.B) Awareness of the legal consequences of engineering solutions

12) Ability to design, develop, implement and improve integrated systems that include people, materials, information, equipment and energy

13) Having comprehensive knowledge of appropriate analytical and experimental methods and calculation methods aimed at ensuring system integration