A study program on the development of mathematical model/s/ for microbial burden prediction. Volume 1 - Technical report Final report
Mathematical models and computer program for microbial burden prediction - phases 1, 2, 3
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Mathematical models and computer program for microbial burden prediction - phases 1, 2, 3
Mathematical models and computer program for microbial burden prediction - users manual
Mathematical models and computer program for microbial burden prediction - appendices of assumptions, bibliography, and functional analyses data tables
Mathematical models and computer program for microbial burden prediction - phases 4, 5, 6
Mathematical models and computer program for microbial burden prediction - phases 4, 5, and 6 input data tables
Mathematical analysis of Fitzgerald apparatus measuring solids dynamic mechanical properties
Minor variations in mathematical model for GEOS 1 /Explorer 29/ studied for effects on orbit
Least squares, minimum variance, and Kalman estimation applied to mathematical model of free flight trajectories
Mathematical model of predator effect on bacteria growth
Mathematical model for human gas exchange and energy consumption in enclosed chambers
Mathematical models of vestibular functions during weightlessness
Mathematical model for solar cell performance in space environments
Mathematical model determines reaction between new predator and microbe competitor when the competitor is the predator's sole nutrient resource. The model utilizes differential equations to describe the interactions with the specific growth rates, and analyzes these growth rates as they are affected by population density and nutrient concentration.
Mathematical programming methods of pattern classification
Mathematical models of magnetospheric convection and its coupling to ionosphere
Computer program for analyzing hand printed mathematical expressions
Computer program improvements of mathematical models for microbial burden prediction
Mathematical model for predicting performance of solar cells in aerospace environments