indoctrinate 发表于 2025-3-27 01:00:28
Le Li,Junyi Xu,Haiming Tong,Weidong Xiaod exponential relaxation can occur depending on the defect transport properties. Within our model, the manner in which the defect concentration changes with temperature determines the manner in which a characteristic time scale diverges. Either Arrhenius or Vogel-like behavior can be obtained. In thsquander 发表于 2025-3-27 05:03:34
http://reply.papertrans.cn/24/2388/238777/238777_32.pngConducive 发表于 2025-3-27 08:39:06
Loraine Gelsthorpe,Ioan Durnescu unusual liquid. Perhaps most remarkable is the fact that it is now possible to reproduce, in a molecular dynamics (MD) simulation, a wide range of measurable properties of water, from thermodynamics to structure and microdynamics, particularly most—if not all—of its numerous ‘anomalies’. This confi物质 发表于 2025-3-27 12:40:43
http://reply.papertrans.cn/24/2388/238777/238777_34.pngmeretricious 发表于 2025-3-27 14:44:12
Suturing Techniques for Wound Closure,family are numerically in the same universality class as the Kauffman model and we assume that they also share the same multifractal properties. The search for multifractal and multiscaling features in their thermodynamic counterparts, the Ising and percolation models, is in progress.neurologist 发表于 2025-3-27 20:59:40
Theoretical Perspectives on User Engagement,versality established in the case of the Euclidean lattices. Hence, we may step in an unexplored field and inquire whether fractal physical quantities, in general, and the fractal power law exponents, in particular, merge into the corresponding Euclidean quantities at the fractal to Euclidean crossover.Interstellar 发表于 2025-3-28 00:08:24
http://reply.papertrans.cn/24/2388/238777/238777_37.pngentitle 发表于 2025-3-28 06:10:03
http://reply.papertrans.cn/24/2388/238777/238777_38.pngcogitate 发表于 2025-3-28 07:38:31
Beate Ehret,Dora Szego,Davy Dhondtults suggest that the behavior of low temperature water can be explained in terms of a systematic evolution of a local hydrogen bond configuration towards the continuous random hydrogen bonding network (CRN) for the amorphous and vitreous ice.CLAMP 发表于 2025-3-28 12:44:42
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