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当代经济浪潮中跨国网上易物合同之法理浅析 被引量:1
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作者 张晶 《商场现代化》 北大核心 2007年第09Z期289-290,共2页
随着市场经济的飞速发展,借助互联网便捷的跨国平台,人们兴起了一种新的跨国"电子易物"热。这种跨国网上易物则是指超越国界,通过互联网络进行的各种非货币交换,及相关技术、服务支持的活动。跨国电子易物在给人们带来极大的... 随着市场经济的飞速发展,借助互联网便捷的跨国平台,人们兴起了一种新的跨国"电子易物"热。这种跨国网上易物则是指超越国界,通过互联网络进行的各种非货币交换,及相关技术、服务支持的活动。跨国电子易物在给人们带来极大的便利同时,也因其自身的基本和独有特性产生了许多新的法律问题等影响,但至今国际间尚不存在一套完整统一的网络交易法则,这应引起足够的重视和关注。 展开更多
关键词 跨国网上易物合同 电子易物 法理浅析
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Poisson-Fokker-Planck model for biomolecules translocation through nanopore driven by electroosmotic flow 被引量:1
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作者 LIN XiaoHui ZHANG ChiBin +2 位作者 GU Jun JIANG ShuYun YANG JueKuan 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2014年第11期2104-2113,共10页
A non-continuous electroosmotic flow model(PFP model)is built based on Poisson equation,Fokker-Planck equation and Navier-Stokse equation,and used to predict the DNA molecule translocation through nanopore.PFP model d... A non-continuous electroosmotic flow model(PFP model)is built based on Poisson equation,Fokker-Planck equation and Navier-Stokse equation,and used to predict the DNA molecule translocation through nanopore.PFP model discards the continuum assumption of ion translocation and considers ions as discrete particles.In addition,this model includes the contributions of Coulomb electrostatic potential between ions,Brownian motion of ions and viscous friction to ion transportation.No ionic diffusion coefficient and other phenomenological parameters are needed in the PFP model.It is worth noting that the PFP model can describe non-equilibrium electroosmotic transportation of ions in a channel of a size comparable with the mean free path of ion.A modified clustering method is proposed for the numerical solution of PFP model,and ion current translocation through nanopore with a radius of 1 nm is simulated using the modified clustering method.The external electric field,wall charge density of nanopore,surface charge density of DNA,as well as ion average number density,influence the electroosmotic velocity profile of electrolyte solution,the velocity of DNA translocation through nanopore and ion current blockade.Results show that the ion average number density of electrolyte and surface charge density of nanopore have a significant effect on the translocation velocity of DNA and the ion current blockade.The translocation velocity of DNA is proportional to the surface charge density of nanopore,and is inversely proportional to ion average number density of electrolyte solution.Thus,the translocation velocity of DNAs can be controlled to improve the accuracy of sequencing by adjusting the external electric field,ion average number density of electrolyte and surface charge density of nanopore.Ion current decreases when the ion average number density is larger than the critical value and increases when the ion average number density is lower than the critical value.Our numerical simulation shows that the translocation velocity of DNA given by the PFP model agrees with the experimental,results better than that given by PNP model or PB model. 展开更多
关键词 translocation electrolyte Poisson Planck DNA clustering Brownian sequencing contributions proportional
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