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State Technical College of Missouri


MNT 275 Nuclear Reactor Operation Fundamentals I. This course covers the operation of the following plant components as they are applied to integrated nuclear plant operations: valves, sensors and detectors, controllers and positioners, pumps, motors and generators, heat exchangers, condensers, demineralizers, ion exchangers, breakers, relays, and disconnects. This course also includes applied topics in nuclear reactor kinetics including neutrons, neutron sources, and neutron life cycle. Prerequisites: MNT 197 and MNT 274 with a grade of “B” or better. 2 credit hours.


MNT 278 Reactor Plant Operations. This course covers reactor plant safety design and operation. Basic reactor startup, shutdown, and emergency procedures and why those procedures are written are also covered. Review of past reactor accidents and events. Includes practical laboratory that prepares the student to fulfill the role of Nuclear Equipment Operator. Laboratory will cover practical operating procedures in valve operation, breaker operation, placing equipment on and off of service, lubrication, pump operation, air compressors, diesel engines, and other equipment. Prerequisites: MNT 270 and MNT 275 with a grade of “C” or better. 4 credit hours.


MNT 279 Nuclear Reactor Operation Fundamentals II. This course covers the following topics as they are applied to integrated nuclear plant operations and thermodynamic responses in nuclear plant systems: thermodynamic units and properties, steam tables, Mollier diagrams, steam systems, thermodynamic processes and cycles, fluid statics and dynamics, heat transfer and heat exchangers, thermal hydraulics, reactor core thermal limits, brittle fracture, and vessel thermal stress. This course also includes applied topics in nuclear reactor reactivity control including reactivity coefficients, control rods, fission product poisons, fuel depletion, burnable poisons, and reactor operational physics. Prerequisites: MNT 270 and MNT 275 with a grade of “C” or better. 3 credit hours.


MNT 290 Internship. The student will serve an internship of approximately 320 hours with a company that uses nuclear technicians in radiation protection, nuclear reactor operations, nuclear reactor maintenance or quality control. The student is expected to apply learned skills and training to be a productive employee, and the employer is expected to place the student in an environment that will build on the student’s first year of study and enhance the student’s knowledge of working in the nuclear industry. Prerequisites: Department Chair approval and Technical GPA of 2.500 or better required. 4 credit hours.


MNT 299 Special Topics in Nuclear Technology. Special Topics in Nuclear Technology (MNT) may include instruction on topics not covered in other MNT courses. Topics covered in other MNT courses may also be covered in more depth in this special topics course. Projects may be undertaken in any area related to the major program with credit hours determined by the level and amount of involvement. The minimum involvement required for one credit is 30 contact hours. The specific topic(s), objectives, plan of instruction, and evaluation criteria must be documented in the syllabus; approved by the Department/Division Chair; and filed in the Academic Records Office. Students may complete more than one Special Topics course, provided that the credits earned in this manner do not exceed a total of four (4) credits. 1-4 credit hours.


PHY 121 General Chemistry I. This is an introductory course dealing with the fundamental principles of chemistry. Meets for 3 hours of class and 4 hours of lab each week. Prerequisite: Two years of high school algebra or must be enrolled in or have completed College Algebra. This course is taught by Moberly Area Community College at the Advanced Technology Center in Mexico, Missouri. 5 credit hours.


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