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NCEES National Council of Examiners for Engineering and Surveying Fundamentals of Engineering (FE) Exam Comprehensive Study Guide Questions with Verified Solutions | 100% Pass Guaranteed | Graded A+ | $14.99
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NCEES National Council of Examiners for Engineering and Surveying Fundamentals of Engineering (FE) Exam Comprehensive Study Guide Questions with Verified Solutions | 100% Pass Guaranteed | Graded A+ |

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NCEES National Council of Examiners for Engineering and Surveying Fundamentals of Engineering (FE) Exam Comprehensive Study Guide Questions with Verified Solutions | 100% Pass Guaranteed | Graded A+ |

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  • November 9, 2024
  • 111
  • 2024/2025
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Purdue University
(College of Engineering)

National Council of Examiners for Engineering and
Surveying (NCEES)
Fundamentals of Engineering (FE) Exam

Course Title and Number: NCEES Fundamentals of Engineering
(FE) Exam
Exam Title: NCEES Fundamentals of Engineering (FE) Exam
Exam Date: Exam 2024- 2025
Instructor: [Insert Instructor’s Name]
Student Name: [Insert Student’s Name]
Student ID: [Insert Student ID]

Examination
180 minutes
Instructions:
1. Read each question carefully.
2. Answer all questions.
3. Use the provided answer sheet to mark your responses.
4. Ensure all answers are final before submitting the exam.
5. Please answer each question below and click Submit when you have completed
the Exam.
6. This test has a time limit, The test will save and submit automatically when the
time expires
7. This is Exam which will assess your knowledge on the course Learning
Resources.


Good Luck!

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NCEES National Council of Examiners for Engineering and
Surveying 2024-2025
Fundamentals of Engineering (FE) Exam Comprehensive Study
Guide Questions with Verified Solutions | 100% Pass
Guaranteed | Graded A+ |


Read All Instructions Carefully and Answer All the
Questions Correctly Good Luck: -

Zeroth Law of Thermodynamics - Answer>> If two
thermodynamic systems are each in thermal
equilibrium with a third, then they are in thermal
equilibrium with each other. Must have same temp

Specific Volume - Answer>> reciprocal of density;
volume per unit mass m3/kg

Enthalpy - Answer>> total energy of a system, J

internal energy - Answer>> the sum of the kinetic and
potential energies of all particles in the system; kJ/kg

Entropy - Answer>> Measure of energy no longer
available for useful work

specific heat - Answer>> The amount of energy
required to raise the temperature of 1 gram of a
substance by 1 degree celcius; q=mc(t-t)

Ideal Gas Law - Answer>> PV=nRT

isentropic process - Answer>> constant entropy

polytropic process - Answer>> pV^n=constant


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adiabatic process - Answer>> a thermodynamic
process during which no energy is transferred to or
from the system as heat (thus no heat loss)

first law of thermodynamics - Answer>> The principle
of conservation of energy. Energy can be transferred
and transformed, but it cannot be created or destroyed.

second law of thermodynamics - Answer>> when
energy is transformed, the quantity of energy remains
the same, but its ability to do work diminishes; entropy
is increased

Carnot cycle - Answer>> a cycle (of expansion and
compression) of an idealized reversible heat engine
that does work without loss of heat

Otto Cycle - Answer>> a thermodynamic cycle,
consisting of a pair of adiabatic processes and a pair of
isochoric processes, that converts heat into work, e.g.,
the four-stroke engine cycle of intake, compression,
ignition, and exhaust

Rankine Cycle - Answer>> 1-2 Isentropic compression
in a pump
2-3 Constant pressure heat addition in a boiler
3-4 isentropic expansion in a turbine
4-1 constant pressure heat rejection in a condenser

power cycle - Answer>> develop a net energy transfer
by work in the form of electricity using an energy input
by heat transfer from hot combustion gases

Q= - Answer>> Mc(t-t)


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mole fraction - Answer>> the ratio of the number of
moles of solute in solution to the total number of moles
of solute and solvent

Dalton's law of partial pressure - Answer>> Total
pressure of gas mix is the sum of the partial pressures

Gibbs rule - Answer>> Total properties of a mixture =
sum of properties that individual gases would have if
each occupied total mix

Specific mixture properties - Answer>> Gravimetrical

Molar Properties - Answer>> Volumetrically weighed

Dry Bulb Temperature - Answer>> The temperature of
air measured by a thermometer freely exposed to the
air

wet bulb temperature - Answer>> The lowest
temperature that can be obtained by evaporating water
into the air.; gone through adiabatic saturation

dew point temperature - Answer>> the temperature
to which air has to be cooled in order to reach
saturation, starts to condense

If the vapor pressure equals the saturation pressure... -
Answer>> The air is said to be saturated

saturated air - Answer>> All temps are equal

Unsaturated air - Answer>> Dew point is less than the
wet bulb temp


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