IE306 Production Planning IIIstanbul Okan UniversityDegree Programs Industrial Engineering (English)General Information For StudentsDiploma SupplementErasmus Policy StatementNational Qualifications
Industrial Engineering (English)
Bachelor TR-NQF-HE: Level 6 QF-EHEA: First Cycle EQF-LLL: Level 6

General course introduction information

Course Code: IE306
Course Name: Production Planning II
Course Semester: Spring
Course Credits:
Theoretical Practical Credit ECTS
3 0 3 6
Language of instruction: EN
Course Requisites:
Does the Course Require Work Experience?: No
Type of course: Compulsory
Course Level:
Bachelor TR-NQF-HE:6. Master`s Degree QF-EHEA:First Cycle EQF-LLL:6. Master`s Degree
Mode of Delivery: Face to face
Course Coordinator : Dr.Öğr.Üyesi PELİN ALCAN GEZGİNCİ
Course Lecturer(s): Dr.Öğr.Üyesi PARMİS SHAH MALEKI
Course Assistants:

Course Objective and Content

Course Objectives: I. To educate engineers with regard to product planning and controlling activities.
II. To educate engineers about Aggregate Production Planning and Master Production Scheduling.
III. To give an ability related to loading and sequencing jobs and scheduling.
Course Content: Aggregate Production Planning, Master Production Scheduling, Materials Requirements Planning (MRP), Capacity Requirements Planning (CRP), Loading Jobs, Scheduling, Sequencing Jobs.

Learning Outcomes

The students who have succeeded in this course;
Learning Outcomes
1 - Knowledge
Theoretical - Conceptual
2 - Skills
Cognitive - Practical
1) Make aggregate production planning and master production scheduling,
2) Learn about Materials Requirements Planning (MRP), MRP Structure, MRP Management
3) Conduct capacity requirements planning, and scheduling jobs. analyzing finite and infinite loads.
4) Schedule jobs with regard to priority rules, job flows and performance criteria,
5) Schedule jobs for a single and/or two machines, and determine a schedule for workforce.
3 - Competences
Communication and Social Competence
Learning Competence
Field Specific Competence
Competence to Work Independently and Take Responsibility

Lesson Plan

Week Subject Related Preparation
1) Aggregate Production Planning
2) Aggregate Production Planning
3) Master Production Schedule
4) Master Production Schedule
5) The 1st Quiz- Master Production Schedule
6) Materials Requirements Planning (MRP)
7) Materials Requirements Planning (MRP)
8) Materials Requirements Planning (MRP)
9) Midterm
10) Capacity Requirements Planning
11) Spring Break
12) Capacity Requirements Planning
13) The 2nd Quiz – Loading Jobs, Scheduling
14) Scheduling, Sequencing Jobs
15) Review the Course, Problem solving
16) Final

Sources

Course Notes / Textbooks: Üretim Yönetimi / Operations Management (Krajewski, L.J., Ritzman, L.P., Malhotra, M.K.), Ed: Birgün, S. (2014). Nobel Akademik Danışmanlık, 9. Basım.
References: Krajewski, L.J., Ritzman, L.P., Malhotra, M.K. (2013). Operations management processes and supply chain, Pearson, Prentice Hall.

Heizer, J., Render, B. (2011). Operations Management, 10th edition, Pearson.

Winston, W.L. (1994), Operations Research, Second Edition, PWS-KENT Publishing Company, Boston.

Course-Program Learning Outcome Relationship

Learning Outcomes

1

2

3

4

5

Program Outcomes
1) Adequate knowledge in mathematics, science and engineering subjects pertaining to the relevant discipline; ability to use theoretical and applied information in these areas to model and solve engineering problems.
2) Ability to identify, formulate, and solve complex engineering problems; ability to select and apply proper analysis and modelling methods for this purpose.
3) Ability to design a complex system, process, device or product under realistic constraints and conditions, in such a way so as to meet the desired result; ability to apply modern design methods for this purpose. (Realistic constraints and conditions may include factors such as economic and environmental issues, sustainability, manufacturability, ethics, health, safety issues, and social and political issues according to the nature of the design.)
4) Ability to devise, select, and use modern techniques and tools needed for engineering practice; ability to employ information technologies effectively.
5) Ability to design and conduct experiments, gather data, analyse and interpret results for investigating engineering problems.
6) Ability to work efficiently in intra-disciplinary and multi-disciplinary teams; ability to work individually.
7) Ability to communicate effectively i Turkish, both orally and in writing; knowledge of a minimum of one foreign language.
8) Recognition of the need for lifelong learning; ability to access information, to follow developments in science and technology, and to continue to educate him/herself.
9) Awareness of professional and ethical responsibility.
10) Information about business life practices such as project management, risk management, and change management; awareness of entrepreneurship, innovation, and sustainable development.
11) Knowledge about contemporary issues and the global and societal effects of engineering practices on health, environment, and safety; awareness of the legal consequences of engineering solutions.

Course - Learning Outcome Relationship

No Effect 1 Lowest 2 Low 3 Average 4 High 5 Highest
           
Program Outcomes Level of Contribution
1) Adequate knowledge in mathematics, science and engineering subjects pertaining to the relevant discipline; ability to use theoretical and applied information in these areas to model and solve engineering problems.
2) Ability to identify, formulate, and solve complex engineering problems; ability to select and apply proper analysis and modelling methods for this purpose.
3) Ability to design a complex system, process, device or product under realistic constraints and conditions, in such a way so as to meet the desired result; ability to apply modern design methods for this purpose. (Realistic constraints and conditions may include factors such as economic and environmental issues, sustainability, manufacturability, ethics, health, safety issues, and social and political issues according to the nature of the design.)
4) Ability to devise, select, and use modern techniques and tools needed for engineering practice; ability to employ information technologies effectively.
5) Ability to design and conduct experiments, gather data, analyse and interpret results for investigating engineering problems.
6) Ability to work efficiently in intra-disciplinary and multi-disciplinary teams; ability to work individually.
7) Ability to communicate effectively i Turkish, both orally and in writing; knowledge of a minimum of one foreign language.
8) Recognition of the need for lifelong learning; ability to access information, to follow developments in science and technology, and to continue to educate him/herself.
9) Awareness of professional and ethical responsibility.
10) Information about business life practices such as project management, risk management, and change management; awareness of entrepreneurship, innovation, and sustainable development.
11) Knowledge about contemporary issues and the global and societal effects of engineering practices on health, environment, and safety; awareness of the legal consequences of engineering solutions.

Learning Activity and Teaching Methods

Lesson
Problem Solving

Assessment & Grading Methods and Criteria

Written Exam (Open-ended questions, multiple choice, true-false, matching, fill in the blanks, sequencing)

Assessment & Grading

Semester Requirements Number of Activities Level of Contribution
Midterms 1 % 40
Final 1 % 60
total % 100
PERCENTAGE OF SEMESTER WORK % 40
PERCENTAGE OF FINAL WORK % 60
total % 100

Workload and ECTS Credit Grading

Activities Number of Activities Duration (Hours) Workload
Course Hours 14 3 42
Study Hours Out of Class 10 12 120
Project 1 10 10
Midterms 1 2 2
Final 1 2 2
Total Workload 176