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Bachelors of Science in Environmental Science

Getting a Degree in Bachelors of Science in Environmental Science Degree

Bachelors of Science in Environmental ScienceOur world is very dynamic and changes come and go so frequently. One of the new topics for change that continues to gain more and more support is sustainability. Sustainability is promoting the preservation of resources and avoiding practices that can lead to environmental damage. The need and desire to conserve our planet is the reason for the huge increase in the demand for graduates of environmental sciences. The ultimate goal of environmental scientists is to conduct research that will help their employer who can be a private, public, or government entity to make a smooth transition towards green practices. Green practices refer to measures and processes that do not cause significant harm to the surroundings. Students of Bachelors of Science in Environmental Science are taught advanced courses regarding the science of the environment. They are also taught on how to enhance their information gathering, analytical thinking, and critical thinking skills.

What You’ll Learn

A Bachelor of Science in Environmental Science undergraduate degree program is engineered to equip students with prolific academic competency in their chosen specialization. They will be made aware of the things that affect the environment either positively or negatively and either directly or indirectly. The students will also be kept up to date with the latest innovations and technological advancements that concern environmental sciences. The students will also be educated in the basic core courses such as mathematics and English. The students will be provided with everything they need in order to pass any certification process a state may require them to pass before they can practice the profession.

Career Paths

There are two employment roads a graduate of the program can choose to tread.

1. Research

Environmental scientists can practice the profession as researches in which they will spend most of their time inside laboratories performing tests and experiments about various things relevant to the environment and its sustainability. They will be focused on troubleshooting present and potential problems and threats to the well being of the planet. Their ultimate goal is to create a green alternative for every harmful traditional process or activity.

2. Education

Graduates of the program can also serve as teachers in any level of education. They can enter the education sector as elementary or high school teachers of general science. They can also serve as professors in colleges and universities as instructors of environmental sciences. This is the commonly the more popular choice because of the ease of finding employment and the various benefits that come with being a teacher. Those who are teaching in the public sector for example receive salary or year round even during semester breaks and spring breaks and summer breaks.

Students will have better understanding of the connection between prevailing scientific principles and the environment. Common courses that need to be completed are:

  • Environmental Management and Law
  • Ethics
  • Fundamentals of Biology
  • Fundamentals of ecology
  • Global Health
  • Risk Assessment
  • Technology
  • The Environment and Society

Graduates of environmental sciences are high in demand today because of the growing pressure to corporations and other business entities to scrap their conventional methods and switch to green processes and strategies. Hence, these entities now need an expert that they can consult regarding which practices are sustainable and which are not. They will also need someone who can lead or supervise the development of alternative practices and how such alternatives can be adopted and implemented in the system.

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Bachelors of Science in Environmental Engineering

Why Study in a Bachelors of Science in Environmental Engineering Degree Program?

Bachelors of Science in Environmental EngineeringThe call for sustainability has never been louder. This was brought about by the growing awareness that traditional practices are hurting the environment and may in the near future cause the planet to become no longer able to support life. Environmentalists blame disregard for the environment as the main reason why numerous parts of the globe are suffering from the wrath of climate change. Today we are experiencing violent storms and hurricanes as well as downpours in a much more frequent and destructive scale. Many blame the said phenomena to global warming. Professions that promote sustainability are becoming more and more in demand today and one of the said professions is that obtained by accomplishing a degree program in Bachelors of Science in Environmental Engineering.

Purpose of the Program

The baccalaureate degree program intends to produce quality graduates that can help save and preserve the environment and our natural resources. This is accomplished by educating students on how they can utilise the latest in science and technology to formulate green solutions. The students will learn how to combine science and technology, engineering principles, and environmental ethics to come up with new products or processes that can deliver near the same benefits without causing harm to the environment or without expending material amounts of resources. One example for such innovations is the structure and design of a skyscraper in which it traps cold air to during the night to keep the inside of the building cool during the day hence lowering the need for air conditioning.  The primary goals of environmental engineering can be summarized into three.

1. Reduction in the consumption of resources
The natural resources contained in our planet are not infinite and are in fact very limited. Oil which is one of the most widely used resources for example, might experience huge shortages after just a decade. It is then up to environmental engineers to develop and implement means of extracting, storing, and consuming the said resources in a more efficient fashion.

2. Recycling and reuse of resources
Some resources can be recycled and some resources can be reused. Recycling means utilising a used item in a completely different manner than the way it was first used. Reusing on the other hand means using the same item in the same way over and over again until it is no longer usable. It is up to environmental engineers to devise new strategies and means of recycling and reusing products to slow down the need for the extraction of resources.

3. Minimization of waste
Waste is an undesirable by-product of the extraction, storage, or consumption of resources. Chemicals can cause great harm to Mother Earth. The chemicals in artificial fertilizers and industrial pesticides for example gradually diminish the nourishment of the soil until it becomes completely unable to support plant life on its own. It is up to environmental engineers to develop new and more efficient ways and strategies for waste management and waste disposal.

A Bachelors of Science in Environmental Engineering degree combines science and technology with engineering which is why it is referred to as a double degree as completing it will automatically mean the individual is qualified in both science and engineering industries.

Common areas of concentration are:

  • Astrophysics
  • Atmospheric Science
  • Chemistry
  • Computational Science
  • Ecology and Conservation Biology
  • Genetics
  • Geographical Science
  • Geosciences
  • Marine and Freshwater Biology
  • Mathematics
  • Physics
  • Plant Sciences
  • Statistics
  • Zoology
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Bachelors of Science in Engineering Science

Bachelors of Science in Engineering Science Overview

Bachelors of Science in Engineering ScienceEngineers are very important in today’s modern society because they have a hand at almost every big or advanced structure and infrastructure. They are problem solvers and are responsible for turning plants, designs, and blueprints into reality. In complex projects they commonly work with architects. The architects formulate the plan and the engineers find ways to make the plan doable. The demand for engineers is always there which is why so many colleges and universities offer the undergraduate program. Some students however do not have the luxury of time or finances to complete a full engineering program which usually takes four to five years to finish. Most engineering graduates also need to pass both Fundamentals in Engineering Exams and Engineering License Exams before they can be considered accredited professionals.

The Alternative Course

A degree program in Bachelors of Science in Engineering Science is the best alternative for students who want to finish tertiary education as soon as possible but have ample opportunities waiting for them in the engineering industry. The program does not provide a complete professional engineering status but it is enough for the graduate to reach the level of an engineering technologists. Technologists are assistants or members of a team that work directly under a professional engineer. The graduates will have almost the same start as engineering graduates. They are however not qualified for promotion to higher positions such as that of a head engineer.

Advantages of the Alternative

The foremost advantage of the program is how quickly it can launch a student to a career in the engineering industry. The baccalaureate program takes only two to three years to complete and the graduate is not required to pass any kind of license before he can maximize his options. The graduate can find employment almost immediately and is likely to have the same salary rate as new board passers of engineering who do not yet have any work experience. You can always decide to advance your degree to a complete engineering degree anytime you want and most of the courses you have completed under the Bachelors of Science in Engineering Science program are likely to be credited. So you can first take the said program so you can work and save money and then upgrade to a full engineering degree.

Specialization Option

The degree program can be taken with a major in general engineering. This way, the students are taught all the basics and essentials of all types of engineers. This is the recommended path for students who are still undecided on what kind of engineer they want to be in the future. It also has the most varied career paths because the graduate will be able to apply to any kind of project. The other option is to choose a specialization immediately after the first year of studying under the program. For example, if you want to be an electrical engineer in the future then choose a major in electrical engineering. Most graduates of the program pursue a professional engineer status after a few years of working as technologists so the second option can be said to be more ideal.

Career Options

You will be employed mostly as a part of an engineering team where you will be supervised by a professional engineer. You will be performing the minor engineering tasks with low margins for error. Engineers of big projects need their own team of competent individuals to make their work easy so finding a job is easy for graduates of the degree program.

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Bachelors of Science in Engineering Physics

The Basics of a Bachelors of Science in Engineering Physics Degree Program

Bachelors of Science in Engineering PhysicsA Bachelors of Science in Engineering Physics is one of the newest courses that many colleges and universities have started offering. The undergraduate program takes four years to complete and the curriculum basically focuses on helping students master how to answer modern engineering questions using physics and how to answer modern physics questions using engineering. This is possible because both fields are actually closely related to each other.

What is the difference between Engineering Physics and other majors in Engineering?

The most notable difference in the curriculum of Bachelors of Science in Engineering Physics and other engineering majors is the fact that the former tackles up to the most advanced Physics courses. Hence, the students are likely to know as much about Physics as those who are taking up a Bachelor of Science in Physics degree. The students would tackle about quantum mechanics and statistical mechanics which are both highly advanced areas of physics. This is so much different from other kinds of engineering majors where students only get to study the basics of physics.

Physics engineers work primarily in laboratories as opposed to the other types of engineers who work in the field such as in the construction site of a project. They can also find employment in the government, the public, and the private sectors of society. The degree program also equips the graduates with the necessary qualifications to be able to pursue advancements in Physics such as master of physics or doctor of physics.

What are some of the practical differences for a student pursuing Engineering Physics rather than Physics?

Engineering Physics students are required to complete at least 105 units as opposed to the only 80 units of Physics majors because the former needs to take up two sets of advanced classes: one in physics and one in engineering. If in the middle of the program a student finds it difficult to handle the huge loads he can shift into a purely Physics major or a purely Engineering major without any hassle or worries. The program is concerned with both the theoretical and experimental aspects of Physics since research would be the primary function of the graduates when they decide to practice what they have learned.

What can I do with a degree in Engineering Physics?

The program can be very gruelling especially since most of the time the bachelor needs to upgrade his competence with a master’s degree before he is able to find suitable employment. The rewards however are well worth it since you will enjoy the potential of earning double or even triple the amounts earned by the other engineers. You are likely to work in a laboratory tinkering about different things related to science and technology with the hope of coming up with new innovations that will greatly help the industry you are working at as well as mankind in general. Common areas where graduates of the program can find employment are:

  • Biophysics
  • Energy
  • Energy Policy
  • Government
  • History of Science
  • Law
  • Management in Technical Fields
  • Materials and Development
  • Medical Physics
  • Medicine
  • Philosophy of Science
  • Quantum Information Science
  • Science Policy
  • Science Writing
  • Semiconductors
  • Systems Engineering
  • Teaching
  • Transportation

The possibilities are endless and you can take almost any career path because of the advanced critical thinking and problem solving skills the program will inculcate into you. You will be armed with both a strong quantitative background and advanced analytical foundations.