İzmir Ekonomi Üniversitesi
  • TÜRKÇE

  • FACULTY OF ENGINEERING

    Department of Mechanical Engineering

    MEST 400 | Course Introduction and Application Information

    Course Name
    Engineering Summer Training II (4 weeks)
    Code
    Semester
    Theory
    (hour/week)
    Application/Lab
    (hour/week)
    Local Credits
    ECTS
    MEST 400
    SPRING
    0
    0
    0
    5

    Prerequisites None
    Course Language English
    Course Type Required (Core Course)
    Course Level First Cycle
    Mode of Delivery Face to face
    Teaching Methods and Techniques of the Course Field work/Application
    Report Writing
    National Occupational Classification Code -
    Course Coordinator
    • Dr. Öğr. Üyesi Yiğit Erçayhan
    Course Lecturer(s)
    • Dr. Öğr. Üyesi Yiğit Erçayhan
    Assistant(s) -
    Course Objectives The purpose of internship is to enhance academic studies of students with field experience. It is an opportunity for students to clarify their career interests.
    Learning Outcomes The students who succeeded in this course;
    Name Description PC Sub * Contribution Level
    1 2 3 4 5
    LO1 Apply the knowledge gained in undergraduate courses to real-life situations. 11 X
    LO2 Carry out verbal instructions received from collegues. 9.1 X
    LO3 Individually generate options to solve problems encountered in practice. 8.1 X
    LO4 Report the field observations in English 9.2 X
    Course Description Internship covers field experience at any work place for 4 weeks. Students should follow the instructions stated in IUE Internship Guide in order to successfully complete their internships.
    Related Sustainable Development Goals
    -

     



    Course Category

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

     

    WEEKLY SUBJECTS AND RELATED PREPARATION STUDIES

    Week Subjects Required Materials Learning Outcome
    1 Training at the work place IEU Summer Training Guidelines (https://kariyer.ieu.edu.tr/en/staj-kilavuzu) 0c8ab428
    2 Training at the work place IEU Summer Training Guidelines (https://kariyer.ieu.edu.tr/en/staj-kilavuzu) 0c8ab428
    3 Training at the work place IEU Summer Training Guidelines (https://kariyer.ieu.edu.tr/en/staj-kilavuzu) 098e1350
    4 Training at the work place IEU Summer Training Guidelines (https://kariyer.ieu.edu.tr/en/staj-kilavuzu) 416cd11b
    5 Report writing IEU Summer Training Guidelines (https://kariyer.ieu.edu.tr/en/staj-kilavuzu) 2b86cc67
    6 Report writing IEU Summer Training Guidelines (https://kariyer.ieu.edu.tr/en/staj-kilavuzu) 2b86cc67

     

    Course Notes/Textbooks İEÜ Internship Booklet (http://phoenix.ieu.edu.tr/betanix/uploads/cms/kariyer.ieu.edu.tr/4649_1615462047.pdf)
    Suggested Readings/Materials -

     

    EVALUATION SYSTEM

    Semester Activities Number Weighting LO1 LO2 LO3 LO4
    Participation 1 70 X X X X
    Project 1 30 X X X X
    Total 2 100

     

    ECTS / WORKLOAD TABLE

    Semester Activities Number Duration (Hours) Workload
    Participation - - -
    Theoretical Course Hours - - -
    Laboratory / Application Hours - - -
    Study Hours Out of Class - - -
    Field Work 1 150 150
    Quizzes / Studio Critiques - - -
    Portfolio - - -
    Homework / Assignments - - -
    Presentation / Jury - - -
    Project - - -
    Seminar / Workshop - - -
    Oral Exams - - -
    Midterms - - -
    Final Exam - - -
        Total 150

     

    COURSE LEARNING OUTCOMES AND PROGRAM QUALIFICATIONS RELATIONSHIP

    # PC Sub Program Competencies/Outcomes * Contribution Level
    1 2 3 4 5
    1

    Engineering Knowledge: Knowledge of mathematics, science, basic engineering, computation, and related engineering discipline-specific topics; the ability to apply this knowledge to solve complex engineering problems.

    1

    Mathematics

    2

    Science

    3

    Basic Engineering

    4

    Computation

    5

    Related engineering discipline-specific topics

    6

    The ability to apply this knowledge to solve complex engineering problems

    2

    Problem Analysis: Ability to identify, formulate and analyze complex engineering problems using basic knowledge of science, mathematics and engineering, and considering the UN Sustainable Development Goals relevant to the problem being addressed.

    3

    Engineering Design: The ability to devise creative solutions to complex engineering problems; the ability to design complex systems, processes, devices or products to meet current and future needs, considering realistic constraints and conditions.

    1

    Ability to design creative solutions to complex engineering problems

    2

    Ability to design complex systems, processes, devices or products to meet current and future needs, considering realistic constraints and conditions

    4

    Use of Techniques and Tools: Ability to select and use appropriate techniques, resources, and modern engineering and computing tools, including estimation and modeling, for the analysis and solution of complex engineering problems, while recognizing their limitations.

    5

    Research and Investigation: Ability to use research methods to investigate complex engineering problems, including literature research, designing and conducting experiments, collecting data, and analyzing and interpreting results.

    1

    Literature research for the study of complex engineering problems

    2

    Designing experiments

    3

    Ability to use research methods, including conducting experiments, collecting data. analyzing and interpreting results

    6

    Global Impact of Engineering Practices: Knowledge of the impacts of engineering practices on society, health and safety, economy, sustainability, and the environment, within the context of the UN Sustainable Development Goals; awareness of the legal implications of engineering solutions.

    1

    Knowledge of the impacts of engineering practices on society, health and safety, economy, sustainability, and the environment, within the context of the UN Sustainable Development Goals

    2

    Awareness of the legal implications of engineering solutions

    7

    Ethical Behavior: Acting in accordance with the principles of the engineering profession, knowledge about ethical responsibility; awareness of being impartial, without discrimination, and being inclusive of diversity.

    1

    Acting in accordance with the principles of the engineering profession, knowledge about ethical responsibility ethical responsibility

    2

    Awareness of being impartial and inclusive of diversity, without discriminating on any subject

    8

    Individual and Teamwork: Ability to work effectively, individually and as a team member or leader on interdisciplinary and multidisciplinary teams (face-to-face, remote or hybrid).

    1

    Ability to work individually and within the discipline

    LO3
    2

    Ability to work effectively as a team member or leader in multidisciplinary teams (face-to-face, remote or hybrid)

    9

    Verbal and Written Communication: Taking into account the various differences of the target audience (such as education, language, profession) on technical issues.

    1

    Ability to communicate verbally

    LO2
    2

    Ability to communicate effectively in writing

    LO4
    10

    Project Management: Knowledge of business practices such as project management and economic feasibility analysis; awareness of entrepreneurship and innovation.

    1

    Knowledge of business practices such as project management and economic feasibility analysis

    2

    Awareness of entrepreneurship and innovation

    11

    Lifelong Learning: Lifelong learning skills that include being able to learn independently and continuously, adapting to new and developing technologies, and thinking questioningly about technological changes.

    LO1

    *1 Lowest, 2 Low, 3 Average, 4 High, 5 Highest


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