In this paper, a new generalized extended tanh-function method is presented for constructing soliton-like,period-form solutions of nonlinear evolution equations (NEEs). This method is more powerful than the extended t...In this paper, a new generalized extended tanh-function method is presented for constructing soliton-like,period-form solutions of nonlinear evolution equations (NEEs). This method is more powerful than the extended tanhfunction method [Phys. Lett. A 277 (2000) 212] and the modified extended tanh-function method [Phys. Lett. A 285 (2001) 355]. Abundant new families of the exact solutions of Bogoyavlenskii's generalized breaking soliton equation are obtained by using this method and symbolic computation system Maple.展开更多
Q63 2004010799 用聚苯乙烯小球模拟生物组织中的光强分布=Photonicintensity distribution sinmlations of biological tissues withpolystyrene spheres[刊,中]/郭红莲(中科院物理研究所凝聚态物理中心光物理实验室.北京(100080)),程...Q63 2004010799 用聚苯乙烯小球模拟生物组织中的光强分布=Photonicintensity distribution sinmlations of biological tissues withpolystyrene spheres[刊,中]/郭红莲(中科院物理研究所凝聚态物理中心光物理实验室.北京(100080)),程丙英…展开更多
文摘In this paper, a new generalized extended tanh-function method is presented for constructing soliton-like,period-form solutions of nonlinear evolution equations (NEEs). This method is more powerful than the extended tanhfunction method [Phys. Lett. A 277 (2000) 212] and the modified extended tanh-function method [Phys. Lett. A 285 (2001) 355]. Abundant new families of the exact solutions of Bogoyavlenskii's generalized breaking soliton equation are obtained by using this method and symbolic computation system Maple.
文摘Q63 2004010799 用聚苯乙烯小球模拟生物组织中的光强分布=Photonicintensity distribution sinmlations of biological tissues withpolystyrene spheres[刊,中]/郭红莲(中科院物理研究所凝聚态物理中心光物理实验室.北京(100080)),程丙英…