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Dynamic causal modelling and structural equation modelling are analytical methods that have the potential to further our understanding of pain.
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These models are analytical models, which are created by a Design of Experiments approach.
The model is analytical, one-dimensional (1D) and derived by a fin-theory approach.
One model is analytical and is based on classical thin shell theory and the Galerkin's method is being employed.
Mathematical models are necessary to design and characterize the device, preferably the model is analytical such that geometrical scalings are revealed.
The first model uses the direct-step finite element method to predict the ballistic properties of fabric armour while the second model is analytical.
The present model, being analytical and simple, can be implemented in circuit simulator for design and analysis of circuits based on AlGaAs/InGaAs/GaAs based pHEMTs.
The model is analytical.
The model is analytical and gives the binding rate between two molecules exactly.
The model is analytical; hence, the results do not depend on the size of the time-step.
Although our models are not analytical formulas, they can be plugged in transport protocols to make them TCP-Friendly.
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