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Université de Fribourg

Colloidal transformations in ms2 virus particles: driven by ph, influenced by natural organic matter

Watts, Samuel ; Julian, Timothy R. ; Maniura-Weber, Katharina ; Graule, Thomas ; Salentinig, Stefan

In: ACS Nano, 2020, vol. 14, no. 2, p. 1879–1887

Enteric viruses, such as enterovirus, norovirus, and rotavirus, are among the leading causes of disease outbreaks due to contaminated drinking and recreational water. Viruses are difficult to remove from water through filtration based on physical size exclusion—for example by gravity-driven filters—due to their nanoscale size. To understand virus removal in drinking water treatment ...

Consortium of Swiss Academic Libraries

Sub-exponential Mixing of Open Systems with Particle-Disk Interactions

Yarmola, Tatiana

In: Journal of Statistical Physics, 2014, vol. 156, no. 3, p. 473-492

Université de Fribourg

Particle-conserving dynamics on the single-particle level

Schindler, T. ; Wittmann, René ; Brader, Joseph M.

In: Physical Review E, 2019, vol. 99, no. 1, p. 012605

We generalize the particle-conserving dynamics method of de las Heras et al. [J. Phys.: Condens. Matter 28, 244024 (2016)] to binary mixtures and apply this to hard rods in one dimension. Considering the case of one species consisting of only one particle enables us to address the tagged-particle dynamics. The time-evolution of the species-labeled density profiles is compared to exact...