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- W586903370 abstract "This chapter discusses Monte Carlo methods for neutronics problems. The Monte Carlo method can be described as the device of studying a mathematical or physical problem by stochastic methods. The problems to be handled by Monte Carlo are generally expressible in terms of integro-differential equations, the Boltzmann transport equation being the particular example in neutronics applications. The essence of the method is that it substitutes, for the solving of the mathematical equations, a process that consists of probes or neutrons from point to point in phase space in accordance with definite, though probabilistic, laws. The strength or weakness of any theoretical calculation depends on the realism of the mathematical model that simulates the physics underlying the process, the degree of approximation in the representation of the physical constants appropriate to the system under study, and the fundamental accuracy of these physical constants. The Monte Carlo method is a method of solving neutronics and indeed other physical problems, which in principle reduces the effect of items to any desired level." @default.
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- W586903370 date "1962-01-01" @default.
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- W586903370 title "MONTE CARLO METHODS FOR NEUTRONICS PROBLEMS" @default.
- W586903370 doi "https://doi.org/10.1016/b978-0-08-009660-5.50035-x" @default.
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