Exact(10)
Assume that the bounded rationality model (M={varLambda,X^,f,varPhi }) for (SVQEP) is given.
Assume that the bounded rationality model M = { Λ, X, f, Φ } for (GVEP) is given.
Our method is based on a nonlinear scalarization technique and the bounded rationality model M (see [19 22]).
In this paper, we establish the bounded rationality model M for generalized vector equilibrium problems by using a nonlinear scalarization technique.
By detecting discrepancies between the predictions of a self-interested rationality model and actual experimental results, investigators are able to elicit phenomena that suggest differences in norms of fairness across different cultures.
The distinguishing feature of our work lies in the use of the scalarization technique and the bounded rationality model M (see [19 22]) to establish well-posedness results of (SVQEP).
Similar(50)
The numerical results that predict the non-coaxiality are consistent with the experiments, which verified the rationality of simulation model.
Through explanation and sensitive analysis of simulation results, some relationships among state variables of risk perception, risk perspective, risk communication and risk response are obtained to prove the rationality of models.
Hence, the conformity of the experimentation and simulation has verified the rationality of the simulation model and the substitutional atomic doping model.
Satisfactory results were acquired, and the rationality of visualization model and feasibility of 3D modeling were validated.
Another problem with the rational agent model regards the concept of rationality.
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