activity
20122020
most citedModeling the Influence of Antifreeze Proteins on Three-Dimensional Ice Crystal Melt Shapes using a Geometric Approach

6 citations · 7 across the 5 of their papers we have counts for

collaborators

5 papers

physics.app-ph2020

Heat flux balance description of unidirectional freezing and melting dynamics on a translational temperature gradient stage

Michael Chasnitsky, Victor Yashunsky, Ido Braslavsky

Directional solidification occurs in industrial and natural processes, such as freeze-casting, metal processing, biological cryopreservation and freezing of soils. Translational te…

stat.AP20191 cited

Usage of multiple RTL features for Earthquake prediction

P. Proskura, A. Zaytsev, I. Braslavsky +2

We construct a classification model that predicts if an earthquake with the magnitude above a threshold will take place at a given location in a time range 30-180 days from a given…

cond-mat.soft2017

Particle Ice Front Interaction - The Brownian Ratchet Model

Michael Chasnitsky, Victor Yashunsky, Ido Braslavsky

We treat the problem of particle pushing by growing ice as a free diffusion near a wall that moves with discrete steps. When the particle diffuse away from the surface the surface…

physics.bio-ph20126 cited

Modeling the Influence of Antifreeze Proteins on Three-Dimensional Ice Crystal Melt Shapes using a Geometric Approach

Jun Jie Liu, Yangzong Qin, Maya Bar Dolev +3

The melting of pure axisymmetric ice crystals has been described previously by us within the framework of so-called geometric crystal growth. Nonequilibrium ice crystal shapes evol…

cond-mat.soft2012

Freezing and Melting Hysteresis Measurements in Solutions of Hyperactive Antifreeze Protein from an Antarctic Bacteria

Yeliz Celik, Ran Drori, Laurie Graham +3

Antifreeze proteins (AFPs) evolved in cold-adapted organisms and serve to protect them against freezing in cold conditions by arresting ice crystal growth. Recently, we have shown…