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Issue DateTitleAuthor(s)
2011Ferroic hysteresis modelingSrinoi S.; Kanchiang K.; Laosiritaworn W.; Yimnirun R.; Laosiritaworn Y.
2008Artificial neural network modeling of ceramics powder preparation: Application to NiNb2O6Laosiritaworn W.; Khamman O.; Ananta S.; Yimnirun R.; Laosiritaworn Y.
2009Artificial neural network modeling of mean-field ising hysteresisLaosiritaworn W.; Laosiritaworn Y.
2010Modeling of ferroelectric hysteresis area of hard lead zirconate titanate ceramics: Artificial Neural Network approachLaosiritaworn W.; Ngamjarurojana A.; Yimnirun R.; Laosiritaworn Y.
2011Concurrent artificial neural network modeling of single-crystal and bulk-ceramics ferroelectric-hysteresis: An application to barium titanateLaosiritaworn W.; Wongdamnern N.; Yimnirun R.; Laosiritaworn Y.
2010Artificial neural network modeling of ferroelectric hysteresis: an application to soft lead zirconate titanate ceramicsLaosiritaworn W.; Yimnirun R.; Laosiritaworn Y.
2011Artificial-Neural-Network modeling of the compressive uniaxial stress dependence of ferroelectric hysteresis: An application to soft lead zirconate titanate ceramicsLaosiritaworn W.; Wongsaenmai S.; Yimnirun R.; Laosiritaworn Y.
2013Artificial Neural Network modeling of spin-transition behavior in two-dimensional molecular magnet: The learning by experiences analysisLaosiritaworn W.; Laosiritaworn Y.
2006Scaling behavior of dynamic hysteresis in soft lead zirconate titanate bulk ceramicsYimnirun R.; Laosiritaworn Y.; Wongsaenmai S.; Ananta S.
2007Effect of Nb-doping on electrical properties of Pb(Zr0.52Ti 0.48)O3 ceramicsKetsuwan P.; Laosiritaworn Y.; Ananta S.; Yimnirun R.; Cann D.P.