Bitirme Tezi Nasıl Yazılmalı

ENVR 1001 Introduction to Environmental Engineering

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While most of the chapters in this course focus on specific environmental problems, such as pollution in surface waters or degradation of air quality, there are a number of important concepts that find application throughout the study of environmental engineering and science. In a similar way, the law of conservation of energy is also an essential accounting tool with special environmental implications. When coupled with other thermodynamic principles, it will be useful in a number of applications, including the study of global climate change, thermal pollution, and the dispersion of air pollutants.
ENVR 1002 Environmental Chemistry I
– Recognize the basic aspects of chemistry that are relevant to understanding environmental engineering applications.
– Identify various organic compounds with their environmental significances.
– Recognize the fate of organics in the environment.
ENVR 2001 Environmental Microbiology
The overall objective of the course is to define the important microorganism involved in environmental microbiology, the nature of the different possible environments in which they are situated, the methodologies used to monitor microorganisms and their activities, and finally the possible effects of microorganisms on human activities.
ENVR 2002 Environmental Ecology
This is a basic subject in ecology that seeks to improve the understanding of the flow of energy and materials through ecosystems and the regulation of the distribution and abundance of organisms. The course covers productivity and biogeochemical cycles in ecosystems, trophic dynamics, community structure and stability, competition and predation, evolution and natural selection, population growth and physiological ecology. There is particular emphasis placed on aquatic systems.
ENVR 2003 Environmental Chemistry II
– Realize the principles of volumetric and gravimetric methods used in quantitative analysis.
– Recognize the significances of turbidity, color, acidity, alkalinity, hardness, dissolved oxygen, biochemical oxygen demand, chemical oxygen demand, and solids determinations in waters and wastewaters.
– Recognize the methods of determining turbidity, color, acidity, alkalinity, hardness, dissolved oxygen, biochemical oxygen demand, chemical oxygen demand, and solids determinations in waters and wastewaters.
ENVR 2005 Fundamentals of Statics and Strength of Materials Students completing this course will identify theory and application of statics and mechanics of materials. Students will develop problem-solving skills on topics such as load transfer, support systems, stress/strain test, etc. Students will evaluate a solid structure in terms of durability and stress/strain interactions.
ENVR 2010 Material Science
– Recognize the structures of basic material types (metallic, ceramic, polymeric) and of composites and construction materials, also the interrelations between structure and various material properties for each type of material.
– Recognize the applications and limitations of engineering materials, based on their properties, in various fields.
– Recognize the principles of corrosion and corrosion prevention.
ENVR 2012 Fluid Mechanics and Hydraulics
A student taking this course will identify elements of fluid mechanics at systems ranging from lab-scale to field-scale. Students will be able to decode fluidic systems and solve problems regarding fluidic systems. They will also use their fluid mechanics and hydraulics knowledge and skills to analyze and determine the needs to construct fluidic systems.
ENVR 3001 Drinking Water Treatment
Safe and accessible water is a requirement for environmental and human health. A student completing this
course will identify individual units, their operating principles, and design requirements that are used in design
of drinking water treatment. Students will design a drinking water treatment plant for a given urban area and
water supply system.

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ENVR 3002 Geotechnical Engineering
This course is intended to give students a basic understanding of the theoretical and empirical principles of
geotechnical engineering. A student completing this course will interpret the relationship between soil and
water and how that affects soil mechanics. As it is a prominent field within the earth sciences domain,
Geotechnical engineering course will convey the students’ necessary information, skills and qualifications to
integrate water structures both within and upon soil.
ENVR 3003 Urban Water Systems
At the end of this course, students will have ability to perform a water supply project including uptake from
wells or surface waters by pumps, transmission of water through a transmission pipeline (gravity operated or
pumping pipeline) to a storage tanks and then distributing the water through the water distribution pipelines in
the urban areas.
ENVR 3004 Wastewater Treatment
Every community produces wastewater and when uncontrollably discharged to the environment, wastewater
poses great risk for environmental and human health. A student completing this course will apply basic
principles of science and engineering to the problems of water pollution control. For given wastewater
characteristics, which students identify and examine at the beginning of the semester, they will design a
wastewater treatment plant.
ENVR 3005 Unit Operations and Processes
A student completing this course will identify the fundamentals of each operation and process that is used in
water and wastewater engineering field. Students will recall and refresh their knowledge and skills in
chemistry, mathematics, and fluid mechanics. Students will solve problems for each unit operation and process
that is covered in class.
ENVR 3006 Air Pollution and Control
The objective of this course is to discuss; physics and chemistry of the atmosphere; production, transformation,
transport, and removal of air pollutants; problems of photochemical smog, the greenhouse effect and climate
change, acid rain, and visibility; engineering aspects of industrial gas cleaning, control of particulate pollutants.
In addition, when the students have finished this course, they should be able to design an effective control
system.
ENVR 3007 Geographical Information Systems
A geographic information system (GIS) integrates hardware, software, and data for capturing, managing,
analyzing, and displaying all forms of geographically referenced information. The objective of this course is to
provide students with both a theoretical and practical background with focus in GIS application. The course
place particular emphasis on combining education and training to the use of GIS for analysis and management
of environmental resources. The basic goals are to provide education on basic principles and concepts of GIS as
well as on related field of data sources and image interpretation, to educate to the use of GIS in different
professional fields, and to promote integration between different professional backgrounds.
ENVR 3008 Solid Waste Management

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The basic goal of Integrated Solid Waste Management is to manage society’s waste in a manner that meets
public health and environmental concerns and the public’s desire to reuse and recycle waste materials. The
need for a course that puts the engineering and scientific details of Integrated Solid Waste Management into
the framework of resource management has grown significantly in recent years. This course is a response to
that need. Both the student and the practitioner will find in this book the engineering principles, the data, the
engineering and scientific formulas, and examples of the day-to day issues associated with the municipal solid
waste.
ENVR 3990 Summer Training I
The Summer Training course is meant to bridge the gap between the professional life and academic institutions. The objective of the first summer training is to give students the opportunity to observe environmental engineering applications in laboratory for a period of four weeks; to provide students with opportunities to apply the concepts learnt in the classroom to real-life situations; to initiate students to the operation of a work environment by assigning time-bound projects; to provide students a platform for networking which may be useful for their professional careers.
ENVR 4002 Integrated Pollution Prevention Control
Students completing this course will examine the Integrated Pollution Prevention and Control directive that is in action to control industrial facilities of high pollution risk. Students will recognize and evaluate the best available technology concept. Students will also evaluate case studies from Europe for the implementation and operation of the IPPC directive.
ENVR 4004 Environmental Modeling
This course will provide a graduate level introduction on environmental fate and transport modeling of pollutants.
ENVR 4101 Air Pollution Monitoring
The basic objectives of this course are to discuss the nature of the emissions limits, legislation on emissions of air pollutants and their monitoring, gas composition calculations, collecting and processing of the data, quality assurance and control, calibration and accuracy, safety and the management of site work. After this course, student will be able to use appropriate sampling methods and procedures for stack emission and ambient air monitoring, and identify the common equipments used in stack emission and ambient air monitoring.
ENVR 4102 Atmospheric Chemistry
The objective of the Atmospheric Chemistry is to develop advanced understanding of the composition of the atmosphere and the chemical and physical processes that control it. And also students will learn the atmospheric chemical and physical process of inorganic and organic chemical species in the tropospheric atmosphere.
ENVR 4103 Air Pollution Modeling
The course provides a physical understanding of dynamical meteorology, land- and water-surface processes, radiation, gas chemistry, aerosol microphysics and chemistry, and cloud processes; a description of numerical methods and computational techniques used to simulate these processes, and a catalogue of steps required to construct, apply, and test a numerical model.
ENVR 4105 Climate Data Analysis

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This course introduces techniques of data analysis in the climate sciences and advanced statistical techniques for the analysis of climate and weather data. Students will learn about weather and climate data storage formats, statistical methods to reduce and analyze data sets. The goal is to get the students comfortable with the technique so that they can use it in their research. It includes practical considerations like knowing their data, physical interpretation of the results, data collection, data analysis, and data interpretation in the climate etc. Students will gain a fundamental knowledge of how to efficiently construct programs to calculate various quantities needed to analyze large meteorological data sets.
ENVR 4107 Industrial Air Pollution Control
This course provides with the philosophy and procedures for the design of air pollution control systems. In addition to design work, the responsibility of air pollution engineers can include monitoring, permitting, performance testing, maintenance scheduling, and operational troubleshooting. The two main objectives of this course are to present essential basic information about air pollution and its control and to provide formal design training of engineering students.
ENVR 4201 Hazardous Waste Management
Main objective of this course is to explain the concepts of safe and economical management of hazardous waste. All aspects of hazardous waste management in accordance with state regulations, including the identification of hazardous wastes, hazardous waste storage and disposal, and hazardous waste minimization are evaluated.
ENVR 4203 Solids and Biosolids Treatment and Disposal
The aim of this course to examine the physical, chemical and biological unit operations and unit processes utilized in treating and disposing of sludges produced at water and wastewater treatment facilities. It covers sources, types and composition of municipal solid wastes, chemical and biological properties of municipal solid wastes, sewage sludge and biosolids pumping, conversion from sludge to biosolids, dewatering processes, stabilization process, disinfection process, converting to useful material, land application and storage. Moreover, the course cover relevant legislation on biosolids in Turkey, European Union and North America.
ENVR 4204 Solid Wastes Analysis
This course introduces the concepts of municipal solid waste (MSW) including refuse generation, source reduction, collection, transportation, recycling and resource recovery, burial in landfills, landfill capacity, feasibility of recycling and combustion.
ENVR 4301 Advanced Wastewater Treatment
The aim of the course is to examine the advanced treatment units individually and then integrate these units to develop an advanced wastewater treatment plant. This course also seeks to initiate discussion in terms of feasibility and viability of advanced treatment options.

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ENVR 4302 Operation of Treatment Plants
The aim of this course is to apply the acquired knowledge in previous subjects to design and operate pollution treatment plants, including selection of alternatives and proposal of adequate treatment schemes, identifying the main operational parameters used in the design and control of the waste treatment plants, elaborate operational protocols for these plants.
ENVR 4303 Industrial Wastewater Treatment
In this course, students will develop ability to apply basic understanding of physical, chemical and biological phenomena to successful design and operation of industrial wastewater treatment plants.
ENVR 4304 Marine Pollution
The aim of this course is to develop a detailed understanding of the major categories of anthropogenic impacts on marine systems, their mechanisms of effect, their sources and fates.
ENVR 4305 Biological and Chemical Processes

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Students completing this course will recognize established principles of microbiology and chemistry regarding environmental engineering field. They will apply these principles through solving problems and design tasks.
ENVR 4400 Environmental Impact and Risk Assessment
The objective of this course is to discuss the process and techniques for assessing and managing the impacts on and risks to humans and the ecosystem associated with engineered facilities, processes and products. Both biophysical and social impacts are addressed.
ENVR 4402 Environmental Biotechnology
This is an advanced level course that demonstrates various uses of microorganisms for treatment purposes, conveys oxidation/reduction reactions in the cell machinery, conducts phylogeny and function analyses, and discusses advanced molecular techniques. After completing the course, students will elucidate microbial communities in terms identity and function and will assemble a treatment scheme for a given pollution task.
ENVR 4403 Environmental Impact of Energy Systems
The aim of the course is the study of the environmental impact of energy systems used to produce thermal and electric energy, and to assess the scientific basis for the projection of possible future climatic changes resulting from man-made releases of carbon dioxide into the atmosphere. A focus will be given also to the energy produced by renewable energy systems and their environmental impact.
ENVR 4405 Environmental Law
Students taking this course explore the relationship between law and natural world, with emphasis upon the ways in which we manage risk and uncertainty in the creation of public goods in the environment. What is characteristics of environmental law regimes is their effort to provide stewardship of a natural heritage left to us from the past for the sake of best-knowing it the future. How this is and ought to be accomplished through combinations of state, market and civil society initiatives will provide the subject matter of the course.
ENVR 4406 Noise Pollution and Control
Students taking this course will be introduced to the basic concepts of noise pollution and its control. By the end of the course students are expected to identify the sources of noise pollution, recognize the various adverse impacts of noise pollution, quantify the noise levels and develop methodologies to control noise pollution.
ENVR 4408 Noise Mapping and Measurement A student completing this course will identify and manipulate a method of presenting complex noise information in a clear and simple way either on a physical map or in a database. Main goal is to provide experience in preparation of noise maps in order to evaluate noise pollution along major highways, railways and airports and within agglomerations in compliance with 2002/EU Directive 49. Environmental engineers are obliged to be trained in noise mapping according to the Turkish regulation titled: Evaluation and Management of Environmental Noise, issued in 2010.
ENVR 4409 Persistent Organic Pollutants

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This course deals with persistent organic pollutants (POPs) which can be transported across ınternational boundaries through environment far from their sources. Moreover, they persist in the environment, bioaccumulate through food web and pose a risk to human health and the environment. The POPs will be covered under this course are legacy POPs such as legacy pesticides (i.e. DDT), industrial chemicals; i.e. polychlorinated biphenlys (PCBs), flame retardants i.e. polybrominated diphenyl ethers (PBDEs), unintentional by products; i.e. dioxins, furans, emerging chemicals; i.e. novel flame retardants (i.e. non-PBDE and phosphate flame retardants), current use pesticides, pharmaceuticals etc.
ENVR 4501 Global Environmental Changes
The course will introduce some of the major subjects in global environmental change. In particular the major components of the Earth system will be described. In addition to the basic concepts of environmental change, both natural and anthropogenic, the ways in which our understandings of those concepts have developed will also be discussed.
ENVR 4502 Sustainable Environmental Management
Environmental education plays an important role in achieving changes in attitudes that contribute to environmental awareness in society. There is dire need for understanding the basis of environmental problems and their proposed solutions. The course is constructed to cover recent advances in environmental management and sustainable development. The objective of this course is to evaluate some of the major environmental problems facing the developing as well as the developed regions of the world.
ENVR 4503 International Environmental Legislation
The main objective of this course is to introduce students to international environmental legislation and consider how international law may be used to facilitate environmental protection.
ENVR 4990 Summer Training II

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The Summer Training course is meant to bridge the gap between the professional life and academic institutions. The objective of the second summer training is to give students the opportunity to observe environmental engineering applications in the office environment; to provide students with opportunities to apply the concepts acquired in the classroom to real-life situations; to initiate students to the operation of a work place by assigning time-bound projects; to provide students a platform of networking which may be useful for their career in future.
ENVR 4997 Capstone Project I
This is a senior year course for Environmental Engineering students and is designed to provide a project environment through which students practice and integrate what they have learned throughout the undergraduate program. In this course, students will apply developed skills and learned subjects in all four years of education. The course will elaborate student’s knowledge in the field, will enhance experience and develop environmental engineering literacy.
ENVR 4998 Capstone Project II
This is a senior year course for Environmental Engineering students and is designed to provide a project environment through which students practice and integrate what they have learned throughout the undergraduate program. In this course, students will apply developed skills and learned subjects in all four years of education. The course will elaborate student’s knowledge in the field, will enhance experience and develop environmental engineering literacy.

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