Every topic on the exam, explained in depth: intuition, key equations, worked examples, and the traps to avoid. Organized by the NCEES FE Other Disciplines exam specification and cross-referenced to the FE Reference Handbook 10.6.
14 exam areas
Analytic geometry & trigonometry, single-variable calculus, differential equations, linear algebra, and numerical methods.
Distributions and expected value, point and interval estimation, hypothesis testing, and goodness of fit.
Stoichiometry and equilibrium, acids/bases and pH, oxidation-reduction and corrosion, and gas laws.
Sensors and transducers, data acquisition, sampling and A/D resolution, signal conditioning, and logic diagrams.
NCEES Model Rules, licensure and public protection, intellectual property, sustainability and life-cycle impacts.
Industrial hygiene and exposure limits, radiation half-life, ventilation rates, gas detection, confined spaces, and hazard communication.
Time value of money, cost analysis, break-even and benefit-cost, depreciation, replacement, and decision analysis.
Force systems and resultants, equilibrium and support reactions, trusses and frames, friction, centroids, and moments of inertia.
Kinematics, Newton's second law, work-energy and impulse-momentum, rotation, mass moment of inertia, and natural frequency.
Axial, bending, torsion and shear stress, deformations, shear-moment diagrams, Mohr's circle, column buckling, and failure theories.
Phase diagrams and phase change, mechanical and thermal properties, electrical properties, and material selection.
Fluid statics, Bernoulli and momentum, pipe friction losses, open-channel flow, flow measurement, dimensionless numbers, and turbomachinery.
Charge, current and voltage laws, DC and AC circuits, reactance and impedance, three-phase power, and measuring devices.
First and second laws, properties and phase diagrams, processes and cycles, conduction/convection/radiation, combustion, and psychrometrics.