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Industrial Engineer

Industrial engineers find ways to eliminate wastefulness in production processes. They devise efficient ways to use workers, machines, materials, information, and energy to make a product or provide a service

Industrial engineers typically do the following:
  • Review production schedules, engineering specifications, process flows, and other information to understand methods and activities in manufacturing and services
  • Figure out how to manufacture parts or products, or deliver services, with maximum efficiency
  • Develop management control systems to make financial planning and cost analysis more efficient
  • Enact quality control procedures to resolve production problems or minimize costs
  • Work with customers and management to develop standards for design and production
  • Design control systems to coordinate activities and production planning to ensure that products meet quality standards
  • Confer with clients about product specifications, vendors about purchases, management personnel about manufacturing capabilities, and staff about the status of projects


Industrial engineers apply their skills to many different situations from manufacturing to business administration. For example, they design systems for
  • moving heavy parts within manufacturing plants
  • getting goods from a company to customers, including finding the most profitable places to locate manufacturing or processing plants
  • evaluating how well people do their jobs
  • paying workers


Industrial engineers focus on how to get the work done most efficiently, balancing many factors—such as time, number of workers needed, available technology, actions workers need to take, achieving the end product with no errors, workers' safety, environmental concerns, and cost.

To find ways to reduce waste and improve performance, industrial engineers first study product requirements carefully. Then they use mathematical methods and models to design manufacturing and information systems to meet those requirements most efficiently.

Their versatility allows industrial engineers to engage in activities that are useful to a variety of businesses, governments, and nonprofits. For example, industrial engineers engage in supply chain management to help businesses minimize inventory costs, conduct quality assurance activities to help businesses keep their customer bases satisfied, and work in the growing field of project management as industries across the economy seek to control costs and maximize efficiencies.
Personality & Interest

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Industrial engineers typically have an interest in the Thinker, Persuader and Organiser interest areas, according to the Holland Code framework. The Thinker interest area indicates a focus on researching, investigating, and increasing the understanding of natural laws. The Persuader interest area indicates a focus on influencing, motivating, and selling to other people. The Organiser interest area indicates a focus on working with information and processes to keep things arranged in orderly systems. 

If you are not sure whether you have a Thinker or Persuader or Organiser  interest which might fit with a career as an industrial engineer, you can take a career test to measure your interests.

Industrial engineers should also possess the following specific qualities:

Creativity. Industrial engineers use creativity and ingenuity to design new production processes in many kinds of settings to reduce use of material resources, time, or labour while accomplishing the same goal.


Critical-thinking skills. Industrial engineers create new systems to solve problems related to waste and inefficiency. Solving these problems requires logic and reasoning to identify strengths and weaknesses of alternative solutions, conclusions, or approaches to the problems.


Listening skills. These engineers often operate in teams, but they must also solicit feedback from customers, vendors, and production staff. They must listen to customers and clients to fully grasp ideas and problems the first time.


Math skills. Industrial engineers use the principles of calculus, trigonometry, and other advanced topics in mathematics for analysis, design, and troubleshooting in their work.


Problem-solving skills. In designing facilities for manufacturing and processes for providing services, these engineers deal with several issues at once, from workers’ safety to quality assurance.


Speaking skills. Industrial engineers sometimes have to explain their instructions to production staff or technicians before they can make written instructions available. Being able to explain concepts clearly and quickly is crucial to preventing costly mistakes and loss of time.


Writing skills. Industrial engineers must create documentation for other professionals or for future reference. The documentation must be coherent and explain their thinking clearly so that others can understand the information.
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