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This document is an examination paper for the Nuclear Regulatory Commission's licensing process for operators of pressurized water reactors. It contains examination questions covering various topics
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Who needs PRESSURIZED WATER REACTOR GENERIC FUNDAMENTALS EXAMINATION?

01
Individuals seeking certification in nuclear power operations.
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Engineering students specializing in nuclear energy.
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Professionals working in nuclear power plants or regulatory agencies.
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Those preparing for careers in the energy sector focusing on nuclear technologies.
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Heat is produced by nuclear fission in the reactor core, and this causes the cooling water to boil, producing steam. The steam is directly used to drive a turbine, after which it is cooled in a condenser and converted back to liquid water. This water is then returned to the reactor core, completing the loop.
In BWRs (boiling water reactors) and PWRs (pressurized water reactors), collectively known as LWRs (light water reactors), the light water (H2O) coolant is also the moderator. PHWRs (pressurized heavy water reactors) use heavy water (deuterium oxide, D2O) as moderator.
Though the current BWRs are considered to be less likely to suffer core damage from the "1 in 100,000 reactor-year" limiting fault than the present fleet of PWRs (due to increased ECCS robustness and redundancy), there have been concerns raised about the pressure containment ability of the as-built, unmodified Mark I
Since the pressurizer is connected to the reactor coolant system via the surge line, the water will expand up into the pressurizer. This will cause the steam in the top of the pressurizer to be compressed, and therefore, the pressure to increase.
The key elements of the turbine-generator system of the pressurized water reactor (PWR) are turbines to convert thermal energy generated by the steam generators to kinetic (rotation) energy and a generator to convert the kinetic energy into electric energy.
In a PWR, water is used both as a neutron moderator and as coolant fluid for the reactor core. In the core, water is heated by the energy released by the fission of atoms contained in the fuel. Using high pressure (around 155 bar) ensures that the water stays in a liquid state.
PWRs keep water under pressure so that it heats, but does not boil. Water from the reactor and the water in the steam generator that is turned into steam never mix. In this way, most of the radioactivity stays in the reactor area.
The four Chernobyl reactors were pressurized water reactors of the Soviet RBMK design, or Reactor BolshoMoshchnosty Kanalny, meaning “high-power channel reactor.” Designed to produce both plutonium and electric power, they were very different from standard commercial designs and employed a unique combination of a

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The Pressurized Water Reactor Generic Fundamentals Examination (PWR-GFE) is an assessment designed to evaluate a candidate's understanding of the fundamental principles and operational requirements associated with pressurized water reactors.
Individuals seeking to obtain or maintain a license to operate a pressurized water reactor, particularly operators and senior operators, are required to file the PWR-GFE.
To fill out the PWR-GFE, candidates should complete the examination form provided by the regulatory agency, ensuring that all sections are filled accurately and submitted according to the provided instructions and deadlines.
The purpose of the PWR-GFE is to assess the knowledge and understanding of individuals regarding the safety, operation, and regulatory requirements of pressurized water reactors to ensure they are capable of operating these facilities safely and effectively.
Candidates must report their personal information, training background, relevant experience, and results of the examination, including answers to all questions and any additional required documentation as specified by the regulatory body.
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