Master\u2019s Degree in Industrial Engineering \u2013 Two Year Duration\nThe Master\u2019s Degree in Industrial Engineering prepares students to enter management and leadership roles in the field. In addition to qualifying for industrial engineer and industrial production manager positions in a variety of businesses, they may find themselves working as supply chain managers or health and safety managers. Concentration options in master\u2019s programs may include operations research, logistics and transportation systems, quality engineering and management, engineering management, and manufacturing systems.\n
These are some common courses offered at this level:
\n
\n- Hypothesis Testing
\n- Data Modeling
\n- Control Theory
\n- Quality Control and Improvement
\n- Facility Planning and Design
\n- Multistage Manufacturing
\n- Transportation and Supply Chain Systems
\n- Warehousing Systems
\n
\n
Doctoral Degree in Industrial Engineering \u2013 Five to Seven Year Duration
\nPh.D. programs in the field are focused on preparing students to present a thesis on an industrial engineering topic. Courses commonly cover:
\n
\n- Engineering Theories
\n- Research Methodologies
\n- Variance Analysis \u2013 the difference between budgeted and actual performance
\n- Systems Design
\n- Advanced Statistics for Engineering
\n- Information Systems
\n- Industrial Engineering Management
\n
", "display_order": 2, "created_at": "2019-08-29T17:56:39.291143-07:00", "updated_at": "2021-12-13T13:11:18.658871-08:00"}, {"degree_id": 90, "page": 1, "title": "Degrees Similar to Industrial Engineering", "summary_markdown": "**[Business Administration](/degrees/business-administration-degree/)** \r\nDegree programs in business administration teach students how to operate a business from the perspectives of marketing, accounting, human resources, and operations. Typical courses include operations management, financial management, management information systems, business ethics and law, human resources, and marketing.\r\n\r\n**[Management Information Systems](/degrees/management-information-systems-degree/) / [Systems Engineering](/degrees/systems-engineering-degree/)** \r\nThese degree programs are concerned with how to use math and science to develop innovative technologies that help run businesses. Students take courses in operations management, computer-based simulation systems, and statistical applications in business.\r\n\r\n**Engineering Technology** \r\nEngineering technology programs teach the engineering skills required to assist engineers in their work. Common classes are computers for engineering technology, construction methodologies, structural systems, strength of materials, and technical drawing.", "content_markdown": "**[Chemical Engineering](/degrees/chemical-engineering-degree/)** \r\nThis degree field is focused on how the chemical, biochemical, and physical properties of substances can be changed to turn them into something else. Examples of this work are making plastic from oil, developing synthetic fibers for clothing, identifying ways to mass-produce drugs, and finding ways to solve environmental problems.\r\n\r\n**[Robotics Technology](/degrees/robotics-technology-degree/)** \r\nAs its name implies, this field uses engineering principles to create and test robots to be used in various sectors. Coursework in the degree program covers robotics and robot design, testing, and repair.\r\n\r\n**[Mechanical Engineering](/degrees/mechanical-engineering-degree/)** \r\nStudents of mechanical engineering learn about the science behind machines. They study statics and dynamics, thermodynamics, fluid dynamics, stress analysis, mechanical design, and technical drawing.", "content_html": "
Chemical Engineering
\nThis degree field is focused on how the chemical, biochemical, and physical properties of substances can be changed to turn them into something else. Examples of this work are making plastic from oil, developing synthetic fibers for clothing, identifying ways to mass-produce drugs, and finding ways to solve environmental problems.
\n
Robotics Technology
\nAs its name implies, this field uses engineering principles to create and test robots to be used in various sectors. Coursework in the degree program covers robotics and robot design, testing, and repair.
\n
Mechanical Engineering
\nStudents of mechanical engineering learn about the science behind machines. They study statics and dynamics, thermodynamics, fluid dynamics, stress analysis, mechanical design, and technical drawing.
", "display_order": 3, "created_at": "2019-08-29T17:56:39.293299-07:00", "updated_at": "2021-12-13T13:05:53.811333-08:00"}, {"degree_id": 90, "page": 1, "title": "Skills You’ll Learn", "summary_markdown": "Industrial engineering students learn how to combine technical knowledge with business acumen. Upon completing their studies, therefore, they have developed several transferable skills:\r\n\r\n- Math and Quantitative Skills\r\n- Research\r\n- Data Analysis\r\n- Detailed Thinking / Creative Problem-Solving\r\n- Patience\r\n- Willingness to Learn\r\n- Passion for Improving Methods and Systems\r\n- Quality Control\r\n- Cost Control\r\n- Understanding of Processes\r\n- Facility Design\r\n- Understanding of Human Factors\r\n- Organizational Management", "content_markdown": "", "content_html": "
Industrial engineering students learn how to combine technical knowledge with business acumen. Upon completing their studies, therefore, they have developed several transferable skills:
\n
\n- Math and Quantitative Skills
\n- Research
\n- Data Analysis
\n- Detailed Thinking / Creative Problem-Solving
\n- Patience
\n- Willingness to Learn
\n- Passion for Improving Methods and Systems
\n- Quality Control
\n- Cost Control
\n- Understanding of Processes
\n- Facility Design
\n- Understanding of Human Factors
\n- Organizational Management
\n
", "display_order": 4, "created_at": "2019-08-29T17:56:39.295367-07:00", "updated_at": "2021-11-18T13:55:37.980468-08:00"}, {"degree_id": 90, "page": 1, "title": "What Can You Do with an Industrial Engineering Degree?", "summary_markdown": "To function at the highest level of productivity, companies in many industries employ [industrial engineers](/careers/industrial-engineer/) to improve processes, products, and systems.\r\n\r\nHere are some examples of those industries and sectors:\r\n\r\n- Aerospace and Aviation\r\n- Aluminum and Steel\r\n- Banking\r\n- Construction\r\n- Consulting\r\n- Electronics Assembly\r\n- Energy\r\n- Entertainment\r\n- Forestry and Logging\r\n- Government Agencies\r\n- Insurance\r\n- Materials Testing\r\n- Medical Services\r\n- Military\r\n- Mining\r\n- Oil and Gas\r\n- Plastics and Forming\r\n- Retail\r\n- Shipbuilding\r\n- Transportation", "content_markdown": "Within any of these sectors, industrial engineers may be employed or contracted to manage a variety of tasks. Listed for each kind of work below is an example of a potential assignment.\r\n\r\n**Project Management** \r\nConduct facility planning; revise designs of production plants and office buildings\r\n\r\n**Manufacturing, Production, and Distribution** \r\nCreate instructions and documentation to optimize production and distribution\r\n\r\n**Supply Chain Management** \r\nManage supplier relationships\r\n\r\n**Productivity, Methods, and Process Engineering** \r\nIdentify efficient processes for work flow\r\n\r\n**Quality Measurement and Improvement** \r\nWork with design and production teams to maintain / improve product quality\r\n\r\n**Program Management** \r\nManage program schedule, budget, and performance expectations\r\n\r\n**Ergonomics / Human Factors** \r\nDefine ergonomics policies to minimize causes of employee injury and discomfort\r\n\r\n**Technology Development and Transfer** \r\nDetermine if a technology- or a process-based solution is best\r\n\r\n**Strategic Planning** \r\nDevelop long-range planning models, often five to ten years in scope\r\n\r\n**Change Management** \r\nCoordinate change programs and ensure that everyone involved understands and supports the change\r\n\r\n**Financial Engineering** \r\nPerform *make* versus *buy* versus *lease* analyses", "content_html": "
Within any of these sectors, industrial engineers may be employed or contracted to manage a variety of tasks. Listed for each kind of work below is an example of a potential assignment.
\n
Project Management
\nConduct facility planning; revise designs of production plants and office buildings
\n
Manufacturing, Production, and Distribution
\nCreate instructions and documentation to optimize production and distribution
\n
Supply Chain Management
\nManage supplier relationships
\n
Productivity, Methods, and Process Engineering
\nIdentify efficient processes for work flow
\n
Quality Measurement and Improvement
\nWork with design and production teams to maintain / improve product quality
\n
Program Management
\nManage program schedule, budget, and performance expectations
\n
Ergonomics / Human Factors
\nDefine ergonomics policies to minimize causes of employee injury and discomfort
\n
Technology Development and Transfer
\nDetermine if a technology- or a process-based solution is best
\n
Strategic Planning
\nDevelop long-range planning models, often five to ten years in scope
\n
Change Management
\nCoordinate change programs and ensure that everyone involved understands and supports the change
\n
Financial Engineering
\nPerform make versus buy versus lease analyses
", "display_order": 5, "created_at": "2019-08-29T17:56:39.297549-07:00", "updated_at": "2021-12-13T13:07:00.066043-08:00"}], "degree_specializations": []}">