Career and Education Opportunities for Aerodynamics Engineers in Arlington, Texas
Aerodynamics engineers can find many career and educational opportunities in the Arlington, Texas area. There are currently 8,430 jobs for aerodynamics engineers in Texas and this is projected to grow 18% to 9,900 jobs by 2016. This is better than the national trend for aerodynamics engineers, which sees this job pool growing by about 10.4% over the next eight years. In general, aerodynamics engineers perform a variety of engineering work in designing, constructing, and testing aircraft, missiles, and spacecraft.
Aerodynamics engineers earn approximately $44 hourly or $91,770 per year on average in Texas. Nationally they average about $44 per hour or $92,520 yearly. Earnings for aerodynamics engineers are better than earnings in the general category of Engineering in Texas and better than general Engineering category earnings nationally. Jobs in this field include: scientist, project engineer, and aerodynamicist.
There is one school within twenty-five miles of Arlington where you can study to be an aerodynamics engineer, among eighty-seven schools of higher education total in the Arlington area. The most common level of education for aerodynamics engineers is a Bachelor's degree. It will take about four years to learn to be an aerodynamics engineer if you already have a high school diploma.
CAREER DESCRIPTION: Aerodynamics Engineer
In general, aerodynamics engineers perform a variety of engineering work in designing, constructing, and testing aircraft, missiles, and spacecraft. They also may conduct basic and applied research to evaluate adaptability of materials and equipment to aircraft design and manufacture.
Every day, aerodynamics engineers are expected to be able to read and understand documents and reports. They need to think through problems and come up with general rules. It is also important that they listen to and understand others in meetings.
It is important for aerodynamics engineers to direct and schedule efforts of engineering or technical personnel designing or testing of aircraft or aerospace products. They are often called upon to formulate conceptual layout of aeronautical or aerospace products or systems to fit customer requirements. They also analyze project requests and proposals and engineering data to establish feasibility and production time of aerospace or aeronautical product. They are sometimes expected to inspect performance reports and documentation from customers and field engineers, and inspect malfunctioning or damaged products to establish problem. Somewhat less frequently, aerodynamics engineers are also expected to evaluate and approve selection of vendors by study of past performance and new advertisements.
Aerodynamics engineers sometimes are asked to direct research and development programs. and formulate and direct efforts concerned with investigating and resolving customers' reports of technical problems with aircraft or aerospace vehicles. And finally, they sometimes have to evaluate and approve selection of vendors by study of past performance and new advertisements.
Like many other jobs, aerodynamics engineers must be thorough and dependable and be reliable.
Similar jobs with educational opportunities in Arlington include:
- 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.
- 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.
- Electrical Engineer. Design, develop, or supervise the manufacturing and installation of electrical equipment, components, or systems for commercial, industrial, or scientific use.
- 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.
- Fire Prevention Research Engineer. Research causes of fires, determine fire protection methods, and design or recommend materials or equipment such as structural components or fire-detection equipment to assist organizations in safeguarding life and property against fire, explosion, and related hazards.
- Health, Safety, and Environment Manager. Plan, implement, and coordinate safety programs, requiring application of engineering principles and technology, to prevent or correct unsafe environmental working conditions.
- Industrial Engineer. Design, develop, and evaluate integrated systems for managing industrial production processes including human work factors, quality control, inventory control, logistics and material flow, cost analysis, and production coordination.
- Industrial Engineering Technician. Apply engineering theory and principles to problems of industrial layout or manufacturing production, usually under the direction of engineering staff. May study and record time, motion, and speed involved in performance of production, maintenance, and other worker operations for such purposes as establishing standard production rates or improving efficiency.
- Manufacturing Engineer. Apply knowledge of materials and engineering theory and methods to design, integrate, and improve manufacturing systems or related processes. May work with commercial or industrial designers to refine product designs to increase producibility and decrease costs.
- 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.
- Product Safety Engineer. Develop and conduct tests to evaluate product safety levels and recommend measures to reduce or eliminate hazards.
EDUCATIONAL OPPORTUNITIES: Aerodynamics Engineer Training
The University of Texas at Arlington - Arlington, TX
The University of Texas at Arlington, 701 S. Nedderman Dr., Arlington, TX 76013. The University of Texas at Arlington is a large university located in Arlington, Texas. It is a public school with primarily 4-year or above programs. It has 25,070 students and an admission rate of 56%. The University of Texas at Arlington has bachelor's degree, master's degree, and doctor's degree programs in Aerospace, Aeronautical and Astronautical Engineering which graduated twenty-eight, ten, and one students respectively in 2008.
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.
LOCATION INFORMATION: Arlington, Texas
Arlington is located in Tarrant County, Texas. It has a population of over 374,417, which has grown by 12.4% in the past ten years. The cost of living index in Arlington, 89, is well below the national average. New single-family homes in Arlington are priced at $154,300 on average, which is well below the state average. In 2008, four hundred twenty-six new homes were constructed in Arlington, down from eight hundred twelve the previous year.
The three most popular industries for women in Arlington are educational services, health care, and finance and insurance. For men, it is construction, accommodation and food services, and administrative and support and waste management services. The average travel time to work is about 27 minutes. More than 30.4% of Arlington residents have a bachelor's degree, which is higher than the state average. The percentage of residents with a graduate degree, 8.8%, is higher than the state average.
The unemployment rate in Arlington is 7.5%, which is less than Texas's average of 8.1%.
The percentage of Arlington residents that are affiliated with a religious congregation, 52.5%, is more than the national average but less than the state average. Advent Lutheran Church, Pleasantview Baptist Church and Central Assembly of God Church are some of the churches located in Arlington. The largest religious groups are the Southern Baptist Convention, the Catholic Church and the United Methodist Church.
Arlington is home to the Festival Marketplace and the The Parks at Arlington as well as Arlington Tennis Center - University of Texas and Doug Russel Park. Visitors to Arlington can choose from Budget Host International, Baymont Inns & Suites and Candlewood Suites for temporary stays in the area.