What is electrical engineering
Many people think that electrical engineering and electronic engineering are almost interchangeable. NO! NO! NO! In general, electrical engineers are involved in the distribution of power in large-scale production areas and distribution systems, while electronics engineers are concentrated in smaller electronic circuits. Electrical engineering seeks solutions for electrical, electronic and electromagnetic applications, which means everything from everyday items (such as kitchen mixers) to circuit boards and space equipment.
Students will learn design and production techniques for electronic and electronic systems, microelectronics, silicon devices and nanotechnology.
Skill requirement
The exciting field of electrical engineering requires you to understand complex designs and build them from scratch. To do this, you need to be good at solving problems and have strong analytical skills. At the same time, the ability to look at larger drawings, be interested in design, and even find errors in the tiniest details is also important.
Degree requirements
In order to obtain an undergraduate degree in electrical engineering, you need to have good math, physics or chemistry in college or high school (high school). However, most electrical engineering courses have some basic modules to ensure that all students are at the same starting point.
Acquired skills
You will acquire and develop a variety of skills that are common in engineering, as well as practical skills that are equally useful in many other areas. Your problem-solving skills will be gradually tempered, and your interpersonal and communication skills will increase as you work a lot.
Students will also learn how to better manage time and resources and learn to assess risks in the project. Other useful skills you will learn include design, leadership, and organizational skills.
What will you learn in electrical engineering?
The undergraduate degree in Electronic Engineering is designed to provide students with a solid foundation in the fundamentals of electronic engineering. After completing the course, students can choose a more specialized field based on their interests. The course will include a range of learning models, such as lab work sessions, lectures, project work, and personal research. On average, a bachelor's degree takes 4-5 years.
Electrical Engineering Specialties
Students can engage in a variety of common areas, including: energy production and transmission, electrical installations (such as heating and lighting systems), magnetostatic and electrostatic (charge types), computer hardware or software, network security, communications, signal processing, power system control, and Electronic design.
Internship opportunity
Most universities today offer students the opportunity to study abroad for one semester or more, and some have foreign internship programs. Not only will you experience the unique culture of the university of your choice, but you can further expand your knowledge by exploring cultures from another country!
For example, Columbia University has a comprehensive internship program with a global network of partners designed to prepare students for a solid, comprehensive internship. Students can participate in research projects at 16 different NNCI (National Nanotechnology Coordination Infrastructure) centers in Japan, France, Germany, and Belgium.
Career channel
The electrical engineering industry is large and electronic products are ubiquitous, so there are many areas to choose from. You can choose to work in government or the private sector. You can be responsible for studying the feasibility of new projects, designing new systems, maintaining complex systems, participating in troubleshooting, simulation and modeling, data analysis, and even evaluating device behavior.
Career choice depends on what you are looking for in your career, do you want to be in a fast-paced environment, or do you prefer to focus on research and development? In the field of medical and defense electronics, safety is the most important factor, and the product development cycle is long and requires a lot of research.
On the contrary, the consumer electronics industry is changing rapidly and fiercely, and companies need to release new products every six months. Therefore, you will work in a large team to improve the production process. You can even find yourself working on mobile technology giants like Samsung or Apple.
Opportunities for improvement are everywhere. You can be promoted to a managerial role or be used as a technical advisor to your rival company. The market will always need independent electronic contractors and consultants. If the job is nine-to-five, it will be attractive to you, and you will have many choices.
Which industries use electrical engineering
These industries include consumer goods, automotive, aerospace, construction, chemicals, consulting, electrical, electronics, instrumentation, medical imaging and monitoring, military, educational and research institutions, communications, defense, security, materials and metals, mathematics, machinery, Physics, power systems, power generation, software, transportation, railway engineering, tools, oil and gas industry.
The choice of degree in electrical engineering is endless. You don't necessarily have to be an engineer. You can work in finance, logistics or management positions in the engineering department, or you can move to related fields, such as the IT industry. Even you can enter other fields, such as science journalism, teaching, technology publishing, or legal areas that require strong technical knowledge or decisions. Given the rapid expansion of the technology sector, the demand for graduates anywhere in the world is growing, and you can easily find the job you want.
Some of the jobs you can choose from include broadcast engineers, control and instrumentation engineers, project engineers, quality managers, sales executives, management consultants, field engineers, and system developers.
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