Eskisehir Technical University Info Package Eskisehir Technical University Info Package
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About the Program Educational Objectives Key Learning Outcomes Course Structure Diagram with Credits Field Qualifications Matrix of Course& Program Qualifications Matrix of Program Outcomes&Field Qualifications
  • Faculty of Engineering
  • Department of Environmental Engineering
  • Course Structure Diagram with Credits
  • Ecology
  • Learning Outcomes
  • Description
  • Learning Outcomes
  • Course's Contribution to Prog.
  • Learning Outcomes & Program Qualifications

  • The student will be able to define the fundamental rules and concepts of ecology, interpret the relationships and differences between them.
  • Defines individual ecology, population ecology, community ecology, and ecosystem ecology.
  • Explains concepts related to habitats, biological communities, and ecological factors.
  • Interprets the principles of balancing environmental factors, environmental awareness, environmental education, and environmental ethics.
  • Explains the widespread use of ecology in different scientific disciplines and in many areas from production to consumption.
  • The student will be able to list ecological factors.
  • Classifies climatic abiotic factors.
  • Classifies non-climatic abiotic factors.
  • Classifies biotic factors and defines biological relationships among organisms.
  • The student will be able to classify subfields of ecology, define related details, and discuss their interrelationships.
  • Lists structural characteristics of populations and defines population dynamics.
  • Defines communities and ecotones.
  • Lists functional features of communities.
  • Classifies stages in the formation of succession.
  • Defines the concept of an ecosystem.
  • Lists biogeochemical cycles and defines the environmental factors that affect them.
  • Explains the concepts of energy flow and energy pyramid.
  • The student will be able to classify the major ecosystems of Turkey and the world.
  • Defines terrestrial ecosystems along with examples.
  • Defines freshwater ecosystems along with examples.
  • Defines marine and special ecosystems along with examples.
  • The student will be able to define the application areas of ecology, which forms the basis of environmental sciences, and will be able to plan and implement projects.
  • Defines the application areas of ecology within the global ecosystem.
  • Defines application areas regarding environmental pollution and relates them to organisms.
  • Plans and implements projects by researching studies in the field of applied ecology.
  • Interprets concepts of environmental planning and ecological design with examples.
  • Lists solution proposals to reduce the ecological footprint.
  • States that the primary service objectives as an environmental engineer are nature and living organisms, and plans and implements work not only on a regional scale but also to contribute to the global ecosystem.

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