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Discover quantum chemical calculation fundamentals through theoretical physics principles and computational methods for molecular systems analysis.
Explore advanced molecular dynamics simulations to understand how water molecules interact with DNA structures and influence biological processes.
Discover computational insights into theranostic protein-based nanostructures through molecular simulations and functional design approaches in this theoretical physics presentation.
Explore counterion behavior in DNA nanomaterials through advanced modeling and simulation techniques with theoretical physics insights from leading research.
Discover recent advances in developing force fields for nonstandard amino acids and nucleic acids in biomolecular simulations and computational modeling applications.
Explore soliton dynamics in oscillating magnetic fields with Larysa Brizhik's invited talk from the CHAOS2024 Special Session on Localized Excitations in Nonlinear Lattices.
Explore the soliton mechanism of long-range electron transport in donor-acceptor systems mediated by polymers, presented by Larysa Brizhik at CMD30.
Explore the world's smallest motor in this advanced physics lecture covering molecular-scale mechanisms and their theoretical foundations.
Discover the world's smallest motor through theoretical physics insights and molecular-scale engineering principles in this Ukrainian lecture series.
Дізнайтеся про сучасні грід- та хмарні технології, їх застосування в науковій роботі та особливості функціонування ресурсного центру обміну даними в ІТФ НАН України.
Explore advanced photon detection techniques in superconducting circuits, focusing on Josephson photomultipliers for quantum information processing and microwave photon counting applications.
Delve into advanced theoretical physics concepts exploring bosonic systems at high densities and temperatures, with insights into quantum mechanics and statistical physics principles.
Explore the intricate relationship between alkali metal ions and DNA hydration dynamics through advanced computational physics and vibrational analysis techniques.
Dive into advanced molecular dynamics and quantum mechanics approaches for modeling NMR properties of complex materials, with focus on integrated MD-QM/MM methodology.
Discover how to leverage ChatGPT for molecular dynamics simulations, focusing on nucleic acids analysis and computational physics applications in DNA research.
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