Search Results - "Spatial and temporal dynamics"

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    Subject Terms: Poisson equation, Hamzah equation, classical physics, electrostatics, gravity, fluid dynamics, field theory, memory effects, non-local behavior, fractal geometry, fractional derivatives, dynamic fields, multi-dimensional structure, numerical comparison, analytical comparison, physical modeling, computational physics, scientific modeling, quantum gravity, artificial intelligence, cognitive neuroscience, electrostatic field, gravitational field, fluid field, memory-dependent behavior, non-linear systems, fractal fields, field dynamics, computational models, field theory comparison, classical equations, advanced physics, mathematical modeling, Poisson's law, field equations, boundary conditions, energy field, information theory, fractal analysis, differential equations, quantum systems, theoretical physics, physical laws, numerical analysis, field interaction, data-driven modeling, scientific computing, quantum mechanics, non-linear equations, chaotic behavior, theoretical advancements, electrostatic potential, gravitational potential, system complexity, multi-dimensional equations, cognitive field theory, AI modeling, non-local interaction, fractional calculus, memory field, physical phenomena, advanced equations, scientific breakthroughs, dynamic modeling, field equations analysis, mathematical physics, complex systems, system modeling, high-precision calculations, energy dynamics, universal laws, multi-disciplinary science, memory systems, advanced calculus, functional analysis, fractal structures, quantum field theory, data integration, field reconstruction, computational science, system complexity analysis, signal processing, field behavior, dynamic simulation, modeling dynamics, field strength, numerical models, theoretical advancements, fractal structures, spatial dynamics, temporal dynamics, space-time, computational efficiency, AI-driven models, quantum fields, dimensional analysis, dynamic systems modeling, information dynamics, non-local interactions, time-dependent fields, scientific innovation, dynamic potentials, field simulations, higher-dimensional physics, AI applications, quantum modeling, fractal potentials, quantum information, dynamic equation solutions, model comparison, high-level modeling, artificial intelligence applications, cognitive fields, systems theory, multidimensional systems, complex modeling techniques, scientific advancements, AI in physics, space-time modeling, dynamic field theory, fractal potentials, memory-driven models, advanced field dynamics, non-local fields, fractal memory, computational algorithms, dynamic field equations, modeling with memory, system dynamics, cognitive systems theory, space-time equations, quantum systems modeling, AI and physics, fractal memory systems, energy interaction, field memory systems, physical theories, system evolution

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    Time: 578

    File Description: application/pdf

    Relation: (grant numbers E-26/010.001610/2016; E-26/202.736/2018; E-26/203.052/2019 and E-26/203.893/2021); de Almeida, P.M.P.; Nobre, A.A.; Câmara, D.C.P.; Costa, L.M.M.; dos Reis, I.C.; Ribeiro, M.S.; Dias, C.M.G.; Ayllón, T.; Honório, N.A. Dengue, Chikungunya, and Zika: Spatial and Temporal Distribution in Rio de Janeiro State, 2015–2019. Trop. Med. Infect. Dis. 2022, 7, 141. https://doi.org/10.3390/tropicalmed7070141; https://hdl.handle.net/20.500.14352/101774

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