The FE Industrial Engineering Exam is expertly administered by NCEES as a computer-based test designed to evaluate aspiring engineering professionals across thirteen domains. These subjects include advanced mathematics, engineering sciences, probability, statistics, engineering economics, quantitative analysis, management, production systems, facilities, human factors, work design, quality control, and systems engineering. Examinees utilize the official reference handbook throughout the evaluation.
Engineering students near graduation and professionals pursuing licensure should take this exam. Candidates demonstrate knowledge across industrial and systems engineering principles required by state boards.
Review the official NCEES reference handbook extensively before your scheduled exam day to ensure complete familiarity with all provided formulas. Practice solving industrial engineering problems using both metric and USCS units. Focus your study time diligently on high-weight areas like probability, statistics, manufacturing systems, engineering economics, quantitative analysis, modeling, and quality control.
This specific mathematics domain thoroughly covers analytic geometry, calculus involving derivatives, integrals, progressions, and series, plus linear algebra operations and extensive vector analysis within the evaluation scope for all candidates.
This engineering sciences domain carefully addresses thermodynamics, fluid mechanics, statics, dynamics, material properties, and electricity for competency evaluation during the official testing appointment session administered by the board.
This professional practice section focuses heavily on codes of ethics, professional licensure requirements, legal agreements, contracts, legal responsibility, and public protection issues during actual engineering practice and professional employment.
This economic domain involves discounted cash flows, alternative evaluations, detailed cost analyses, various depreciation methods, and corporate taxes affecting financial decisions in complex engineering projects and capital investments.
This statistical domain covers discrete and continuous probabilities, statistical distributions, hypothesis testing, confidence intervals, linear regression models, and systematic design of experiments applications used in analytical problem solving.
This quantitative section focuses on data analytics, process flowcharts, linear programming methods, optimization models, queuing theories, and stochastic simulation techniques designed for evaluating complex engineering systems and operational networks.
This broad management domain examines administrative principles, project management techniques, performance measurements, risk analysis, and strategic decision making for industrial engineering projects, professional teams, and modern enterprise operations.
This vital production systems domain covers manufacturing processes, industrial production systems, forecasting methods, aggregate planning, operational scheduling, and continuous process improvements within modern industrial facilities and manufacturing plants.
This crucial facilities module involves facility layout planning, location analysis, manufacturing capacity analysis, and supply chain network design principles intended to achieve maximum operational efficiency and resource utilization.
This safety domain addresses human factors engineering, user displays, machine controls, workplace safety standards, industrial hygiene, and physical ergonomics in industrial environments to protect workers from occupational hazards.
This structured work design section focuses on methods analysis, workstation design, principles of motion economy, time study, work sampling, and learning curves for improving productivity in various industrial operations.
This quality domain covers quality management systems like Six Sigma and TQM, alongside statistical quality control methods and process capability measurements for manufacturing environments and service industry operations.
This complete systems engineering domain examines requirements analysis, system design, functional analysis, risk management, life-cycle engineering, and system reliability across various engineering projects and complex enterprise architectures.
Arrive prepared for a 360-minute computer-based test that includes 110 questions, a tutorial, and an optional break. Use the electronic PDF reference handbook provided during the exam.
The exam contains 110 questions administered via a computer-based format. Examinees have 360 minutes to complete the test, which includes a tutorial and an optional scheduled break.
NCEES does not publish a specific passing score for the exam. Scoring models use psychometric adjustments and scaling determined by NCEES; check with NCEES for current details.
The total appointment time allocated for this computer-based evaluation is exactly 360 minutes, which includes answering the 110 questions, reviewing an introductory software tutorial, and taking an optional scheduled break during the session.
The exam is closed book. An electronic PDF version of the FE Reference Handbook is provided within the computer-based testing interface for your use during the exam.
Verified 2026-09-13
This page was built using official NCEES exam specifications and reference documentation to outline test domains, question counts, duration rules, and policies for examinees.