Syllabus ( ENVE 491 )
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Basic information
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Course title: |
Graduation Project I |
Course code: |
ENVE 491 |
Lecturer: |
Prof. Dr. Ahmet KARAGÜNDÜZ
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ECTS credits: |
6 |
GTU credits: |
2 () |
Year, Semester: |
4, Fall |
Level of course: |
First Cycle (Undergraduate) |
Type of course: |
Compulsory
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Language of instruction: |
English
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Mode of delivery: |
Face to face
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Pre- and co-requisites: |
None |
Professional practice: |
No |
Purpose of the course: |
This course aims students to gain the ability of literature research, selecting the proper characterization technique and collecting data, reporting the results by making interpretations. |
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Learning outcomes
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Upon successful completion of this course, students will be able to:
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Make research for a certain topic and select the proper literature that the topic is based on
Contribution to Program Outcomes
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Obtain fundamental knowledge in Environmental Engineering
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Define and solve environmental engineering problems using necessary engineering concepts and formulas
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Reach necessary technical, academic and practical information
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Understand the importance of the concepts of innovation and entrepreneurship to adapt rapid changing technological environment by improving personal knowledge and ability continuously
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Have proficiency in English for literature research, technical presentations and writing research articles
Method of assessment
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Term paper
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Determine the proper characterization techniques to collect data about a topic related to Environmental Engineering
Contribution to Program Outcomes
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Obtain fundamental knowledge in Environmental Engineering
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Analyze and interpret data, as well as design and conduct experiments
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Reach necessary technical, academic and practical information
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Learn how to use different modern technical equipment and software for engineering applications
Method of assessment
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Term paper
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Analyze the experimental results by comparing with the existing literature
Contribution to Program Outcomes
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Obtain fundamental knowledge in Environmental Engineering
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Define and solve environmental engineering problems using necessary engineering concepts and formulas
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Design systems to solve specific environmental problems and evaluate the performances of present systems
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Analyze and interpret data, as well as design and conduct experiments
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Reach necessary technical, academic and practical information
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Learn how to use different modern technical equipment and software for engineering applications
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Demonstrating professional and ethical responsibility.
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Promote environmental consciousness and scientific research.
Method of assessment
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Term paper
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Contents
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Week 1: |
Research for selecting the project topic |
Week 2: |
Research for selecting the project topic |
Week 3: |
Research for selecting the project topic |
Week 4: |
Preparing the outline for the project |
Week 5: |
Project Study |
Week 6: |
Project Study |
Week 7: |
Midterm Project Evaluation |
Week 8: |
Project Study |
Week 9: |
Project Study |
Week 10: |
Midterm Project Evaluation |
Week 11: |
Project Study |
Week 12: |
Project Study |
Week 13: |
Project Study |
Week 14: |
Project Final Report |
Week 15*: |
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Week 16*: |
Project Presentation |
Textbooks and materials: |
Seçilen konu içeriğine göre belirlenir. |
Recommended readings: |
Seçilen konu içeriğine göre belirlenir. |
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* Between 15th and 16th weeks is there a free week for students to prepare for final exam.
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Assessment
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Method of assessment |
Week number |
Weight (%) |
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Mid-terms: |
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0 |
Other in-term studies: |
- |
0 |
Project: |
1-14 |
100 |
Homework: |
- |
0 |
Quiz: |
- |
0 |
Final exam: |
- |
0 |
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Total weight: |
(%) |
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Workload
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Activity |
Duration (Hours per week) |
Total number of weeks |
Total hours in term |
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Courses (Face-to-face teaching): |
0 |
0 |
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Own studies outside class: |
0 |
0 |
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Practice, Recitation: |
5 |
13 |
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Homework: |
0 |
0 |
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Term project: |
6 |
14 |
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Term project presentation: |
1 |
1 |
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Quiz: |
0 |
0 |
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Own study for mid-term exam: |
0 |
0 |
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Mid-term: |
0 |
0 |
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Personal studies for final exam: |
0 |
0 |
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Final exam: |
0 |
0 |
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Total workload: |
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Total ECTS credits: |
* |
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* ECTS credit is calculated by dividing total workload by 25. (1 ECTS = 25 work hours)
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