Where To Study Environmental Engineering In South Africa

Last Updated on December 28, 2022

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Masters in Environmental Engineering

Masters in Environmental Engineering are interdisciplinary degrees, which integrate principles from disciplines like Environmental Sciences, Engineering, Physics, Chemistry, and Ecology. Students learn how to develop tools, machinery, and systems that decrease the pollution of the environment and protect our health.

You should study a Master’s in Environmental Engineering if you’re passionate about technology and gadgets and are worried about the long-term future of the natural environment and resources. It’s an ideal study discipline for students who easily understand and enjoy learning mathematical principles and other concepts related to the Natural Sciences.

Environmental Engineering specialisations

Most Environmental Engineering courses are offered as M.Sc. (Master of Science) or M.Eng. (Master of Engineering) degrees. It usually takes 1 or 2 years to graduate. While studying Environmental Engineering, you can choose to specialise in areas such as Energy Management, Geology Engineering, Waste Management, Renewable Energy, Urban Agriculture, Wastewater Management, and others.

Environmental Engineering courses and skills

The courses you’ll take during a graduate degree in Environmental Engineering vary from one university and programme to another. However, you can expect to take classes in Data-based Engineering Modelling, Issues in Global Health, Environmental Biotechnology, Air & Water Quality Technology, Process Design, Environmental Assessment, etc.

Environmental Engineering classes also help students develop essential industry-related skills. They range from technical reading and writing, problem-solving, and analytical mindset to interpersonal abilities, time and project management, and creative thinking.

These skills allow environmental engineers to tackle difficult projects and challenges. They often have to meet the client’s expectations and follow sustainable development principles as well as environmental regulations. To achieve their goals, environmental engineers often collaborate with other professionals, like civil engineers. This is where interpersonal skills and teamwork are important.

Environmental Engineering careers

Environmental Engineering graduates usually find work opportunities in the engineering industry, but they can also collaborate with technical consulting firms or with federal or local governments. Some of the most popular jobs are water project manager, environmental engineer, health and safety manager, green building engineer, environmental consultant, etc.

These are some of the most recent and exciting trends in Environmental Engineering: eco-concrete and eco-bricks (made out of recycled waste), the skywater technology (extracting water from the atmosphere), nano membrane toilets (that don’t require energy or water to function), and many others.

requirements for environmental engineering

Admissions Requirements – Environmental Engineering Bachelor’s Programs

Every environmental engineering program establishes its own admissions criteria; more rigorous programs usually have more rigorous requirements. Not surprisingly, highly competitive programs have steeper GPA and exam requirements and might even require an interview. Examples of typical admission requirements from real environmental engineering schools include:

  • Successful completion of prerequisite high school courses (e.g., physics, chemistry, calculus, algebra, trigonometry)
  • Minimum high school GPA of 3.0
  • SAT and ACT scores
  • Admissions essay or statement of purpose

Typical Courses – Environmental Engineering Bachelor’s Programs

Bachelor’s programs in environmental engineering usually offer a range of classroom, lab, and field-based components. Students balance required general education and core engineering courses with specialized electives. Here are some typical courses in undergraduate environmental engineering programs:

  • Introduction to Environmental Engineering
  • Drafting and Computer-Aided Design (CAD)
  • Introduction to Engineering Fundamentals
  • Fluid Mechanics
  • Elements of Geology
  • Engineering Economy
  • Transport Processes
  • Water Quality Control
  • Chemical Engineering Process Design
  • Green Engineering
  • Sustainable Design

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