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June 25, 2026
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Chemists from HSE University have discovered a way to carry out a reductive addition reaction without using an external reducing agent. Instead, the required 'resource' is supplied by the aldehyde itself, one of the reaction participants. This approach helps prevent unwanted side reactions, reduces toxicity, and simplifies the production and synthesis of organic molecules, including those used in the manufacture of medicines. The study has been published in Journal of Catalysis.
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Evolution of local computing time in parallel modeling of mobile networks

Frontiers in Physics. 2024. Vol. 12. Article 1248643.
L.F. Zhukova, L.N. Shchur

Introduction: The study concerns the properties of a parallel discrete-event simulation (PDES) model, namely a simple mobile network model known as a personal communication service (PCS) model. In this type of parallel computing,
each process has its own computation time, known as local virtual time. The local virtual times change during the simulation process, forming a complex profilesimilar to the surface growth profile in physics.
Methods: We apply the scaling theory of statistical physics to study the properties of the PCS model. We construct a simple local virtual time evolution algorithm for the PCS model and compare this theoretical time evolution model to a standard parallel mobile network implementation in Rensselaer’s Optimistic Simulation System (ROSS).
Results: We show that the value of the critical exponent for the mobile network system is close to the value in the theoretical local virtual time profile model. A roughening transition is found in the LVT–PCS model, which belongs to the
universality class of directed percolation in dimension 2 + 1.
Discussion: We believe that the analogies we found can be useful for preliminary analyses of scalability, process desynchronization, and possible deadlocks in a wide class of parallel discrete-event simulation models.

Research target: Computer Science Physics Engineering and Technology
Language: English
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Keywords: virtual timeпараллельное моделирование дискретных событийdirected percolationнаправленная перколяцияcritical exponentsоптимистический алгоритмpersonal communication service modelparallel discrete-event simulation (PDES)optimistic parallel discrete-eventroughness transitionвирутальное времямодель персонального коммуникационного сервисакритические экспонентыпереход шероховатости
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