## Engineering fundamentals for professional engineers' examinations |

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acceleration adiabatic amount Assume beam Bernoulli's equation body Btu/lb calculated capacitor Carnot cycle center of pressure centroid circuit coefficient compression constant cost curve cycle depreciation determine diameter discharge distance dry-bulb temperature efficiency energy engine enthalpy entropy equation equivalent example Figure flow fluid forces acting friction ft long ft-lb ft/sec fundamentals examinations gases given gives heat horizontal horsepower illustrated inductive inertia isothermal process kips lb-in liquid load mass maximum mole motor neutral axis nozzle ohms parabola past examination problem percent phase angle phasor pipe plane pounds power factor pressure psia psig pump radius refrigeration relationship resistance rivet shaft shear diagram shearing stress shown in Fig simple harmonic motion slope solution speed static steam steel surface tangent tank temperature tension torque vapor vector velocity voltage volts volume weight