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Career and Education Opportunities for Electrical Engineers in Alexandria, Virginia

Many educational and employment opportunities exist for electrical engineers in the Alexandria, Virginia area. The national trend for electrical engineers sees this job pool growing by about 1.7% over the next eight years. Electrical engineers generally design, develop, or supervise the manufacturing and installation of electrical equipment, components, or systems for commercial, industrial, or scientific use.

The income of an electrical engineer is about $40 hourly or $84,240 per year on average in Virginia. In the U.S. as a whole, their income is about $39 per hour or $82,160 annually on average. Earnings for electrical engineers are not quite as good as earnings in the general category of Engineering in Virginia and not quite as good as general Engineering category earnings nationally. Jobs in this field include: electrical designer, hydroelectric plant electrical engineer, and electrolysis engineer.

There are eighty-four schools of higher education in the Alexandria area, including six within twenty-five miles of Alexandria where you can get a degree to start your career as an electrical engineer. Given that the most common education level for electrical engineers is a Bachelor's degree, it will take about four years to learn to be an electrical engineer if you already have a high school diploma.

CAREER DESCRIPTION: Electrical Engineer

Electrical Engineer video from the State of New Jersey Dept. of Labor and Workforce Development

In general, electrical engineers design, develop, or supervise the manufacturing and installation of electrical equipment, components, or systems for commercial, industrial, or scientific use.

Electrical engineers talk with others to consider existing or potential engineering projects and products. They also ready and study technical drawings, specifications of electrical systems, and topographical maps to insure that installation and operations conform to standards and customer requirements. Equally important, electrical engineers have to ready requirements for purchase of materials and equipment. They are often called upon to operate computer-assisted engineering and layout software and apparatus to perform engineering tasks. They are expected to oversee project production efforts to assure projects are completed satisfactorily, on time and within budget. Finally, electrical engineers direct and schedule manufacturing, construction and testing efforts to insure adherence to specifications and customer requirements.

Every day, electrical engineers are expected to be able to articulate ideas and problems. They need to read and understand documents and reports. It is also important that they listen to and understand others in meetings.

It is important for electrical engineers to compile data and write reports regarding existing and potential engineering studies and projects. They are often called upon to layout and improve electrical instruments and systems for commercial and domestic purposes. They also design budgets and construction costs. They are sometimes expected to investigate customer or public complaints, decide on nature and extent of problem, and recommend remedial measures. Somewhat less frequently, electrical engineers are also expected to help in developing capital project programs for new equipment and major repairs.

They also have to be able to investigate and test vendors' and competitors' products and inspect completed installations and observe operations to insure conformance to layout and equipment specifications and adherence to operational and safety standards. And finally, they sometimes have to supervise and train project team members as needed.

Like many other jobs, electrical engineers must be thorough and dependable and be able to absorb the factors involved and a problem and provide a well thought out solution.

Similar jobs with educational opportunities in Alexandria include:

  • Aerodynamics Engineer. Perform a variety of engineering work in designing, constructing, and testing aircraft, missiles, and spacecraft. May conduct basic and applied research to evaluate adaptability of materials and equipment to aircraft design and manufacture. May recommend improvements in testing equipment and techniques.
  • Agricultural Engineer. Apply knowledge of engineering technology and biological science to agricultural problems concerned with power and machinery, electrification, structures, soil and water conservation, and processing of agricultural products.
  • Biomedical Engineer. Apply knowledge of engineering, biology, and biomechanical principles to the design, development, and evaluation of biological and health systems and products, such as artificial organs, prostheses, instrumentation, medical information systems, and health management and care delivery systems.
  • Chemical Engineer. Design chemical plant equipment and devise processes for manufacturing chemicals and products, such as gasoline, synthetic rubber, and pulp, by applying principles and technology of chemistry, physics, and engineering.
  • Civil Engineer. Perform engineering duties in planning, designing, and overseeing construction and maintenance of building structures, and facilities, such as roads, railroads, airports, bridges, harbors, channels, dams, irrigation projects, pipelines, power plants, water and sewage systems, and waste disposal units. Includes architectural, structural, and geo-technical engineers.
  • Computer Engineer. Research, design, and test computer or computer-related equipment for commercial, industrial, or scientific use. May supervise the manufacturing and installation of computer or computer-related equipment and components.
  • Electronics Engineer. Research, design, and test electronic components and systems for commercial, industrial, or scientific use utilizing knowledge of electronic theory and materials properties. Design electronic circuits and components for use in fields such as telecommunications, aerospace guidance and propulsion control, acoustics, or instruments and controls.
  • Materials Engineer. Evaluate materials and develop machinery and processes to manufacture materials for use in products that must meet specialized design and performance specifications. Develop new uses for known materials. Includes those working with composite materials or specializing in one type of material, such as graphite, metal and metal alloys, ceramics and glass, plastics and polymers, and naturally occurring materials.
  • Mechanical Engineer. Perform engineering duties in planning and designing tools, engines, and other mechanically functioning equipment. Oversee installation, operation, and repair of such equipment as centralized heat, gas, and steam systems.

EDUCATIONAL OPPORTUNITIES: Electrical Engineer Training

Howard University - Washington, DC

Howard University, 2400 Sixth St NW, Washington, DC 20059-0001. Howard University is a large university located in Washington, District of Columbia. It is a private not-for-profit school with primarily 4-year or above programs. It has 10,696 students and an admission rate of 49%. Howard University has bachelor's degree, master's degree, and doctor's degree programs in Electrical, Electronics and Communications Engineering which graduated eighteen, two, and four students respectively in 2008.

George Washington University - Washington, DC

George Washington University, 2121 I Street, NW, Washington, DC 20052. George Washington University is a large university located in Washington, District of Columbia. It is a private not-for-profit school with primarily 4-year or above programs. It has 25,027 students and an admission rate of 37%. George Washington University has bachelor's degree, master's degree, post-master's certificate, and doctor's degree programs in Electrical, Electronics and Communications Engineering which graduated nine, thirty-three, two, and three students respectively in 2008.

Capitol College - Laurel, MD

Capitol College, 11301 Springfield Rd, Laurel, MD 20708. Capitol College is a small college located in Laurel, Maryland. It is a private not-for-profit school with primarily 4-year or above programs. It has 701 students and an admission rate of 38%. Capitol College has a bachelor's degree and a master's degree program in Electrical, Electronics and Communications Engineering which graduated fourteen and six students respectively in 2008.

Catholic University of America - Washington, DC

Catholic University of America, 620 Michigan Avenue, NE, Washington, DC 20064. Catholic University of America is a medium sized university located in Washington, District of Columbia. It is a private not-for-profit school with primarily 4-year or above programs. It has 6,705 students and an admission rate of 81%. Catholic University of America has bachelor's degree, master's degree, and doctor's degree programs in Electrical, Electronics and Communications Engineering which graduated two, three, and two students respectively in 2008.

University of Maryland-College Park - College Park, MD

University of Maryland-College Park, , College Park, MD 20742. University of Maryland-College Park is a large university located in College Park, Maryland. It is a public school with primarily 4-year or above programs. It has 37,000 students and an admission rate of 39%. University of Maryland-College Park has bachelor's degree, master's degree, and doctor's degree programs in Electrical, Electronics and Communications Engineering which graduated 121, 103, and fifty-six students respectively in 2008.

George Mason University - Fairfax, VA

George Mason University, 4400 University Dr, Fairfax, VA 22030-4444. George Mason University is a large university located in Fairfax, Virginia. It is a public school with primarily 4-year or above programs. It has 30,800 students and an admission rate of 63%. George Mason University has bachelor's degree, postbaccalaureate certificate, master's degree, and doctor's degree programs in Electrical, Electronics and Communications Engineering which graduated fifty-nine, two, thirty-four, and five students respectively in 2008.

CERTIFICATIONS

Planning and Scheduling Professional: The PSP certification is to recognize specialists who meet a demanding set of planning and scheduling criteria by a rigorous examination, experience, education and ethical qualificaion.

For more information, see the AACE International (Association for the Advancement of Cost Engineering through total cost management) website.

Geometric Dimensioning & Tolerancing Professional - Technologist: ASME GDTP Certification provides the means to recognize proficiency in the understanding and application of the geometric dimensioning and tolerancing (GD&T) principles expressed in the ASME Y14.

For more information, see the American Society of Mechanical Engineers International website.

Certified Energy Manager: Since its inception in 1981, the Certified Energy Manager (CEM®) credential has become widely accepted and used as a measure of professional accomplishment within the energy management field.

For more information, see the Association of Energy Engineers website.

Certified Lighting Efficiency Professional: AEE's Certified Lighting Efficiency Professional (CLEP) program is designed to provide recognition for professionals who have distinguished themselves as leaders in the field of lighting efficiency.

For more information, see the Association of Energy Engineers website.

CompTIA Radio Frequency Identification (RFID+) Certification: CompTIA Radio Frequency Identification (RFID+) certification validates the knowledge and skills of professionals who work with RFID technology.

For more information, see the Computing Technology Industry Association (CompTIA) website.

IPC-A-600 Acceptability of Printed Circuit Boards: The IPC-A-600 Training and Certification Program helps all segments of the electronics interconnection industry improve their understanding of printed board quality issues; greatly enhances communication between PCB manufacturers, their suppliers and their customers; and provides a valuable portable credential to industry professionals as well as recognition for their companies.

For more information, see the IPC (Institute of Interconnecting and Packaging Electronic Circuits) website.

Certified Lighting Management Consultant: The lighting industry prides itself on distinguishing those persons who have accomplished this professional and personal achievement.

For more information, see the International Association of Lighting Management Companies website.

Protective Coatings Specialist: This certification is geared toward individuals who are experienced, knowledgeable and capable of performing work at an advanced level in both the theory and practice of corrosion prevention and control, and who are capable of performing work at an advanced level in the protective coatings field.

For more information, see the NACE International website.

Junior Telecommunications Engineer: Telecommunications certification is applicable to professionals involved in the science and practice of communications by electromagnetic means.

For more information, see the National Association of Radio and Telecommunications Engineers, Inc. website.

PV Installer Certification: The target candidate for NABCEP certification is the person responsible for the system installation (e.

For more information, see the North American Board of Certified Energy Practitioners website.

System Operator Certification: The System Operator Certification Program awards certification credentials to those individuals who demonstrate that they have attained sufficient knowledge relating to NERC reliability standards and the basic principles of bulk power system operations by passing one of four specialty examinations.

For more information, see the North American Electric Reliability Corporation website.

LICENSES

Engineer, Electrical

Licensing agency: Department of Professional and
Address: Occupational Regulation, APELSCIDLA Board, 3600 West Broad Street, Richmond, VA 23230-4917

Phone: (804) 367-8506
Website: Department of Professional and Occupational Regulation APELSCIDLA Board

LOCATION INFORMATION: Alexandria, Virginia

Alexandria, Virginia
Alexandria, Virginia photo by SchuminWeb

Alexandria is situated in Alexandria City County, Virginia. It has a population of over 143,885, which has grown by 12.2% in the past ten years. The cost of living index in Alexandria, 124, is far greater than the national average.

The three big industries for women in Alexandria are professional, scientific, and technical services, public administration, and health care. For men, it is professional, scientific, and technical services, public administration, and construction. The average commute to work is about 30 minutes. More than 54.3% of Alexandria residents have a bachelor's degree, which is higher than the state average. The percentage of residents with a graduate degree, 24.8%, is higher than the state average.

The unemployment rate in Alexandria is 4.6%, which is less than Virginia's average of 6.4%.

Church of Resurrection Episcopal, Agudas Achim Synagogue and Alexandria Bible Church are some of the churches located in Alexandria.

Alexandria is home to the Circle Terrace Hospital and the Kate Waller Barrett Branch as well as Marina Park and Founders Park. Shopping centers in the area include Hamlet Shopping Center, Landmark Shopping Center and Arlandria Shopping Center. Visitors to Alexandria can choose from Comfort Inn-Landmark, Best Western Old Colony Inn and Hilton Inn for temporary stays in the area.