Electricity is ubiquitous from your personal cellular to large transportation systems such as the subway or planes. Since its invention, electricity has made our life much easier and convenient. But electricity would be only an energy source without people creating and maintaining equipments or applications using it. Electrical engineers are the people who create, improve and maintain electronic devices and equipments. Because of the ubiquity of electricity, electrical engineers can be found in any industrial branches of the economy and may work on as many different products as cars, robots, cell phone systems, or lighting and wiring systems in buildings. Indeed, whether you take a look at the personal electronic, plane or automotive industry electrical engineers play a core role designing the circuits and electronics parts, testing designs and improving them.
As the field of work for electrical engineers is wide, there is a common distinction made between an electrical engineer and an electronic engineer. Electrical engineers typically deal with large-scale electrical systems such as power transmission and motor control, whereas electronic engineers typically deal with the study of small-scale electronic systems such as computers and integrated circuits
How to become an electrical engineer? If you want to embrace a career as an electrical engineer, you are generally required to graduate from college in engineering. Just like any other engineering career, you will need to have excellent grade in mathematics and science to study in an engineering schools. Being a science-oriented student is not enough, you will be required to have good skills in English, social studies, and computers. Most recruiters also expect their engineers to be creative, curious, logical, detail-oriented and good team-workers.
In the U.S., there were about 299,000 electrical engineers and electronics engineers in 2004. Most of them worked for companies manufacturing medical device, communications equipment, or electronics. Despite varying greatly from one sector to another, electrical engineers earn in average $67,340. Besides prospects for electrical engineers are very good since jobs are expected to grow about as fast as the average for all occupations through 2014.
Electric Job can help you find electrical jobs, engineering jobs, and utility jobs and all jobs in the electrical jobs and engineering jobs industry. Electrical jobs, engineering jobs, electrician jobs, lineman jobs, power jobs, energy jobs, utility jobs, careers, and employment search.
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amazing! how do you do this! it must take forever!
hi nat and nooooo nothing happened i just was up ’til 5 am and stared on an empty feed
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I have had jobs where I worked 70+ hrs a week. Currently I don't even put in 40.
When you are young and trying to work your way up, you will have to put in extra effort in any job.
This is anecdotal but in my experience the mechanical guys always went home before us and hardly ever needed to go out of town.
Typically the mechanical engineers job is finished before the machine assembly even starts.
An electrical engineer must design, program, start-up, and troubleshoot the machine. All this, near the deadline for completion of the project.
Even though I may have to work harder (only my opinion), I think I also have more fun and would not trade jobs with a gear head for anything.
slow fluctuations can be loads turning off and on.
The wire is sized so there is a few or 5 volts drop in the wires. This is with full load. But if someone turns off something, the load goes down, the current goes down, and the voltage goes up. On the other hand. something is turned on, current goes up, and voltage goes down.
Or the fluctuations can go back further in the system, where entire blocks of power may be switched off or on as power use shifts, or problems occur.
Actually, I consider it great that the voltage is as constant as it is, given the many variables between the generator, the transformers, the distribution, the power lines, more splits, another power line, more transformers, etc.
Short term fluctuations, voltage spikes, can be caused by inductive loads like motors turning off or on. .
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