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Future career plans in electrical engineering
Career goal in electrical engineering
Proposed future career for electrical engineer
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Career Research
With hundreds, maybe even thousands of careers that I could choose from, only a few of them seemed like something I would actually work as. But finally, after limiting my choices, I obtained three careers, that I would be more than delighted to research about. My first one would have to be the electrical engineer. The way they work always intrigued me, with their fancy electronics, and the sounds of the things they invented, it’s no surprise my attentions been on it for a while now.
Using their knowledge of science, and applications of electricity, they forge revolutionary machines such as atom smashers, and microchips. Not only that, but they are also involved with all the devices we all use today, and maybe even the computer
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If you want to be an electrical engineer, specific classes will help! These classes range from algebra, trigonometry, calculus, biology, physics, chemistry, computer science, and other classes that will develop your understanding of the basics of electricity. Through hard work and perseverance, the student shall graduate as an electrical engineer, and gain approximately $60,000 per year.
To add on, the student should focus on becoming a (PE), or professional engineer. In order to become a professional engineer, you would need an accredited engineering curriculum. With this title, the professional engineer can now take projects that affect other’s lives, health, and property. This allows the engineer to take more projects, and earn more money.
Another great addition, is that electrical engineer’s demands are increasing. But, while the demands increase, the people who see the career as a potential career also increases, which then leads to all the positions being filled up. So, if the engineer wants a job, they should keep up with the electrical advancements, and learn how they work, allowing them to have an advantage to the other people that wants the same
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To elaborate, robots has always fascinated me. Converting our language, to 0’s and 1’s and understanding it! I’ve had past experience with robotics, and know that I’ll be a great candidate for a robotic engineer, because I can create ideas, and solve problems really well too.
To begin with, robotic engineers use their knowledge of computer science technology to create robots. Then, they develop software that allows them to communicate with the robot. Next, they program the robot with the software, to do actions automatically, or achieve tasks that will help humans. This is where the robotics engineers earn their money, the more complex, the more money, up to $80,000!
However, you’ll need a great deal of knowledge about computers, before becoming a robotics engineer. The student should take biology, chemistry, physics, algebra, trigonometry, geometry, calculus, graphics, computer science, English, speech, composition, social studies, and drafting, to get education that they need for college. In addition, the student should take classes that teach electrical schematic reading, and basics of electricity, or classes that gives a hands on experience with
When people hear the term “FIRST Robotics” or hear anything related to robotics, they automatically assume that it has something to do with robots destroying each other or nerds sitting in the corner eating pizza and building small robots; I used to be one of those people who thought that before joining FIRST Robotics. In all honesty, I was very reluctant on becoming a part of FIRST Robotics in the first place because I did not know if I would fit in or even enjoy it for that matter. However, thanks to two special people I gave FIRST Robotics a shot, and I’m thankful that I did because I wouldn’t be the person that I am today. FIRST Robotics has greatly impacted my high school experience by teaching me life skills that I can’t learn in the classroom, forming new bonds and
Landis, Raymond B. Studying Engineering: A Road Map to a Rewarding Career. Los Angeles, CA: Discovery, 2013. Print.
Computer hardware engineers research, develop, and test computer systems and components such as processors, circuit boards, memory devices, and many more (Bureau of Labor Statistics). They design new computer hardware, create blueprints of computer equipment to be built. Test the completed models of the computer hardware that they design. Update existing equipment so that it will work will new software. Oversee the manufacturing process for the computer hardware. Maintain knowledge of computer engineering trends and new technology(Bureau of Labor Statistics).
As an engineering student, design, develop and test electrical equipments is the major purpose of all time. In other words, electrical engineer is concerned with using electricity to transmit electric power. In electrical engineering, there are extensive subfields such as power engineering, control system and signal processing. It is also worth to point out the difference between electrical engineering and electronic engineering. According to the research, electronic engineering is a major that deal with the electronic system such as computers and radar, to be more specific, electronic engineers are concerned with using electricity to process information.
The word engineer comes from the latin word ingeniare. ingeniare means construct or craftsmanship. Ever since the beginning of time we have had engineers. Engineering is the combination of math and science , solving world problems to help better the world around us. Being an engineer takes a lot of knowledge, creativity, and hard work. A typical engineer can clearly see a problem and is capable of fining a solution. A senior engineer or engineering manager usually doesnt do as much technical work, but usally lot of managing. Some of the first official engineers were military engineers. They were employed by the goverment to build such things as roads, bridges, and weapons. US mililary Academy at Westpoint was the first school to offer an education in enginnering. Engineering is a very broad field. Engineers are always at a high demand, we could never have enough brilliant minds making the world better. Engineers are needed everywhere. Engineering managers have to have a bachelor's degree or higher, they usually direct and seek solutions to problems and are sometimes called executi...
Engineering has been a key interest of mine since childhood. While still in grade school I enjoyed listening to my father, an electrical engineer, teach me about advances in technology, and was always eager to hear more. I was introduced to my first computer at the age of five, and have loved interacting with them ever since. My decision to study engineering as a career was no surprise to those who knew me.
Electrical Engineers research, develop, design, and test electronic components, products, and systems for commercial, industrial, medical, military, and scientific applications (Cosgrove 749). They are concerned with devices that use small amounts of electricity that make up electronic components such as integrated circuits and microprocessors. By applying principles and techniques of electronic engineering they design, develop, and manufacture products such as computers, telephones, radios, and stereo systems (EGOE, 121). Electrical engineers touch everyone lives through the things they have designed or created. Electrical engineers have invented the lights in your house, the television, the stereo, the telephone, computers, and even your doctor’s blood pressure gauge (Stine 300).
Robots are machines that can do the work of a person and that work automatically or are controlled by a computer (Merriam-Webster, 2014). The Robot Institute of America (circa 1979) defines robots as “a reprogrammable, multifunctional manipulator designed to move material, parts, tools, or specialized devices through various programmed motions for the performance of a variety of tasks” (Branwyn, G.). The Japanese Industrial Robot Association (JIRA) has classified robots based on the following: manually operated manipulators, sequential manipulators, programmable manipulators, numerically controlled robots, sensate robots, adaptive robots, smart robots, and intelligent mechatronic systems (Branwyn, G.). Robots have been improved over time and have proven to be efficient because the computer is controlling them. The history of robots goes as far back as the Ancient Greeks and Romans for the use of toys, tool...
When people think of robots, an image of a mechanical, stiff, talking, moving, human-like machine might come to mind. Robots are, in fact, computerized machines that are ultimately utilized to simplify larger scale tasks. They include control machines, computer controllers, or microprocessor based automated systems just to name a few. The ultimate goal of industrial engineering is to expedite processes; therefore, with such developed and modern technology, the manufacturing process is more efficient, cost effective, and there is almost no human error. With all its benefits the automation and robotics movement has made way for new fetes and greater prospects in economic terms for large-scale firms.
My decision to become an electrical engineer was not a decision I took too long ago. It is something that I decided to pursue when I entered a Science, Technology, Engineering, and Math (STEM) high school. It was then that I realized how much I enjoyed working with computers and building circuits, and the fact that this career involved many subjects. Doing a lot of research to understand better what it meant to be an Electrical Engineer, I found out that in order to succeed in this career one had to know a little bit of everything. In other words, subjects such as science and math are essential to know if someone wants to be successful electrical engineer. An electrical engineer is someone who finds practical solutions to everyday problems that involve electricity, such as computers, cell phones, among other electrical equipments. In order to create a useful device one must know where to start and this is where science comes in. An electrical engineer must be able to use the scientific method, which means; one must form a procedure, test it out, and write a conclusion. These parts of the scientific method must be written clearly, so that others can recreate and test out a device or project. Math also plays a key role in this area of study, because one must be precise when creating a new device that others are going to use. For example, if one were to create a new type of cell phone one must know a lot of math in order to be able to progr...
Learning is a continuous process and the day that you stop learning is the day that you start decreasing your rewards and lower levels of satisfaction. My ardent desire to acquire knowledge has motivated me to pursue higher studies at graduate level, and to take up a career in research in industry. I have taken this decision after carefully considering my academic background, profound interest in research and strong aptitude for problem solving. Banking on an excellent academic record coupled with a keen interest in the ever-growing field of science and technology motivated me to take up engineering.
I am an ambitious young Saudi with a Bachelor’s degree in Power Systems and Electric from the College of Technology in Riyadh, Saudi Arabia. Through my academic and professional experiences, I have come to believe that only with hard work and determination can one realize his ambitions and dreams, and that failure to do so is only due to a loss of stamina or motivation. For me, my dream is to join (name of university) to attend the Electrical Engineering program, for it is my belief that by attending your program, I will be better equipped to conduct detailed theoretical and practical research in the science, and upon commencing my studies, I will possess the necessary skills and knowledge to function as a well-informed engineer and to contribute effectively towards researching, promoting and implementing innovated electrical engineering concepts and techniques that can assist in the advancement of the science.
People travel miles in search of their true passion; some find them early in their life and I consider myself lucky enough to be one among them. I found my true calling at the age of 12 on a field trip to a milk factory. It seemed like the Disneyland of science with huge machineries, conveyer belts running all around, and instruments working about in their own rhythm with sheer intricacies and perfection. As a kid, I was eager to understand the mechanics behind this magical rhythm. The desire of gaining in-depth knowledge about Control System and Automation eventually led me to choose Electronics and Instrumentation Engineering as my undergraduate study.
Robots are now providing more assistance than ever for industrial engineers. Industrial engineering can spread into a wide area of fields. An industrial engineer’s knowledge is useful in designing better systems to care for patients in hospitals, reduce air pollution, and for approaching large-scale challenges in enterprises(usually with a team of other engineers.) Industrial engineers will work with biological engineers to improve the environment, reduce wastes, and conserve