A soft,rough set model is a distinctive mathematical model that can be used to relate a variety of real-life data.In the present work,we introduce new concepts of rough set based on soft pre-lower and soft pre-upper a...A soft,rough set model is a distinctive mathematical model that can be used to relate a variety of real-life data.In the present work,we introduce new concepts of rough set based on soft pre-lower and soft pre-upper approximation space.These concepts are soft pre-rough equality,soft pre-rough inclusion,soft pre-rough belonging,soft predefinability,soft pre-internal lower,and soft pre-external lower.We study the properties of these concepts.Finally,we use the soft pre-rough approximation to illustrate the importance of our method in decision-making for Chikungunya medical illnesses.In reality,the impact factors of Chikungunya’s medical infection were determined.Moreover,we develop two new algorithms to address Chikungunya virus issues.Our proposed approach is sensible and effective.展开更多
通过对于GaAs表面形貌在特定As BEP(1.33μPa)、不同温度(570,560,550,540和530℃)下相变过程研究,发现随着温度的降低GaAs预粗糙化过程发生了不同程度的迟滞,在温度降至530℃附近时,延迟现象尤其明显,并且当温度远低于530℃时(As BEP 1...通过对于GaAs表面形貌在特定As BEP(1.33μPa)、不同温度(570,560,550,540和530℃)下相变过程研究,发现随着温度的降低GaAs预粗糙化过程发生了不同程度的迟滞,在温度降至530℃附近时,延迟现象尤其明显,并且当温度远低于530℃时(As BEP 1.33μPa)GaAs表面将不会发生预粗糙转变。采用二维艾辛模型建立方程结合实验数据对这一现象进行理论解释,理论计算出GaAs预粗糙化相变的临界转变温度为529℃,与实验中获得的数据吻合。采用理论上获得的临界转变温度,利用临界减慢理论对实验现象进行了合理的理论解释,认为在特定条件下GaAs表面系统存在预粗糙化临界转变温度,当衬底温度接近这一温度时,临界减慢现象将会发生;当温度低于临界转变温度时,无论延长多少时间表面形貌相变过程将不会发生。展开更多
基金supported by the Deanship of the Scientific Research at Najran University,Najran,Saudi Arabia[NU/-/SERC/10/603].
文摘A soft,rough set model is a distinctive mathematical model that can be used to relate a variety of real-life data.In the present work,we introduce new concepts of rough set based on soft pre-lower and soft pre-upper approximation space.These concepts are soft pre-rough equality,soft pre-rough inclusion,soft pre-rough belonging,soft predefinability,soft pre-internal lower,and soft pre-external lower.We study the properties of these concepts.Finally,we use the soft pre-rough approximation to illustrate the importance of our method in decision-making for Chikungunya medical illnesses.In reality,the impact factors of Chikungunya’s medical infection were determined.Moreover,we develop two new algorithms to address Chikungunya virus issues.Our proposed approach is sensible and effective.
文摘通过对于GaAs表面形貌在特定As BEP(1.33μPa)、不同温度(570,560,550,540和530℃)下相变过程研究,发现随着温度的降低GaAs预粗糙化过程发生了不同程度的迟滞,在温度降至530℃附近时,延迟现象尤其明显,并且当温度远低于530℃时(As BEP 1.33μPa)GaAs表面将不会发生预粗糙转变。采用二维艾辛模型建立方程结合实验数据对这一现象进行理论解释,理论计算出GaAs预粗糙化相变的临界转变温度为529℃,与实验中获得的数据吻合。采用理论上获得的临界转变温度,利用临界减慢理论对实验现象进行了合理的理论解释,认为在特定条件下GaAs表面系统存在预粗糙化临界转变温度,当衬底温度接近这一温度时,临界减慢现象将会发生;当温度低于临界转变温度时,无论延长多少时间表面形貌相变过程将不会发生。