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  Course Description
Course Name : Introduction To Environmental Engineering II

Course Code : CMZ104

Course Type : Compulsory

Level of Course : First Cycle

Year of Study : 1

Course Semester : Spring (16 Weeks)

ECTS : 6

Name of Lecturer(s) : Prof.Dr. AHMET YÜCEER

Learning Outcomes of the Course : Students are expected to develop an understanding for engineering science and its fundamental concepts. Specifically, a mass balance approach to problem solving will be developed and applied in a wide variety of environmental engineering contexts. Students will be challenged to think about environmental problems within the larger engineering, regulatory, social, and ethical perspective.

Mode of Delivery : Face-to-Face

Prerequisites and Co-Prerequisites : None

Recommended Optional Programme Components : None

Aim(s) of Course : The primary purpose of this course is to introduce the fundamental principles of pollution, pollution control, ecological balance, natural cycles, and necessity of global cooperation for environmental management and sustainable development to the environmental engineering students. The secondary purpose is to familiarize the students with the broad perspective of environmental engineering as a multi-disciplinary practice. Oral communications and ethics discussions are integral to developing contextual understanding and practical approaches to problem solving in environmental engineering.

Course Contents : Air pollution, noise pollution and its controls. Radioactive wastes, soil pollution, environmental impact assessment.

Language of Instruction : Turkish

Work Place : Classroom


  Course Outline /Schedule (Weekly) Planned Learning Activities
Week Subject Student's Preliminary Work Learning Activities and Teaching Methods
1 Knowledge for Air Pollution Reading and Research Lecture and Discussion
2 Air Pollution and Control Reading and Research Lecture and Discussion
3 Air Pollution and Control Reading and Research Lecture and Discussion
4 Knowledge for Noise Pollution and Control Reading and Research Lecture and Discussion
5 Knowledge for Noise Pollution and Control Reading and Research Lecture and Discussion
6 Knowledge for Noise Pollution and Control Reading and Research Lecture and Discussion
7 Mid-exam Preparation of Mid-exam Writing exam
8 Knowledge for Soil Pollution and Control Reading and Research Lecture and Discussion
9 Soil Pollution and Control Reading and Research Lecture and Discussion
10 Soil Pollution and Control Reading and Research Lecture and Discussion
11 Radioactivity Reading and Research Lecture and Discussion
12 Radioactivity Pollution and Control Reading and Research Lecture and Discussion
13 Radioactivity Pollution and Control Reading and Research Lecture and Discussion
14 Environmental Impact Assesment Reading and Research Lecture and Discussion
15 Final Exam Preparation of Final Exam Writing exam
16/17 Final Exam Preparation of Final Exam Writing exam


  Required Course Resources
Resource Type Resource Name
Recommended Course Material(s)  Karpuzcu M, 1996. Environmental Pollution and Control, Gebze Institute of Technology Publications, Gebze.
Required Course Material(s)  Vesilind P.A., 2010. Introduction To Environmental Engineering, Cengage Learning, USA.


  Assessment Methods and Assessment Criteria
Semester/Year Assessments Number Contribution Percentage
    Mid-term Exams (Written, Oral, etc.) 1 100
    Homeworks/Projects/Others 0 0
Total 100
Rate of Semester/Year Assessments to Success 40
 
Final Assessments 100
Rate of Final Assessments to Success 60
Total 100

  Contribution of the Course to Key Learning Outcomes
# Key Learning Outcome Contribution*
1 Becomes equipped with adequate knowledge in mathematics, science, environment and engineering sciences 4
2 Becomes able to apply theoretical knowledge in mathematics, science, environment and engineering sciences 4
3 Determines, describes, formulates and gains capabilities in solving engineering problems 4
4 Analyzes a system, components of the system or process, gains the designing capabilities of the system under the real restrictive conditions. 4
5 Chooses ans uses the ability to apply modern tools and design technics, suitable analytical methods, modeling technics for the engineering applications 3
6 Designs and performs experiments, data collection, has the ability of analyzing results 3
7 Works individually and in inter-disciplinary teams effectively 4
8 Becomes able to reach knowledge and for this purpose does literature research and to uses data base and other information sources 4
9 Becomes aware of the necessity of lifelong learning and continuously self renewal 5
10 Capable of effective oral and written skills in at least one foreign language for technical or non-technical use 3
11 Effective use of Information and communication technologies 4
12 Professional and ethical responsibility 5
13 Project management, workplace practices, environmental and occupational safety; awareness about the legal implications of engineering applications 3
14 Becomes aware of universal and social effects of engineering solutions and applications, entrepreneurship and innovation and to have idea of contemporary issues 4
* Contribution levels are between 0 (not) and 5 (maximum).

  Student Workload - ECTS
Works Number Time (Hour) Total Workload (Hour)
Course Related Works
    Class Time (Exam weeks are excluded) 13 3 39
    Out of Class Study (Preliminary Work, Practice) 13 7 91
Assesment Related Works
    Homeworks, Projects, Others 0 0 0
    Mid-term Exams (Written, Oral, etc.) 1 5 5
    Final Exam 1 10 10
Total Workload: 145
Total Workload / 25 (h): 5.8
ECTS Credit: 6