Showing 701 - 720 results of 13,590 for search '"project"', query time: 0.06s Refine Results
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    Bregman f-Projection Operator with Applications to Variational Inequalities in Banach Spaces by Chin-Tzong Pang, Eskandar Naraghirad, Ching-Feng Wen

    Published 2014-01-01
    “…Using Bregman functions, we introduce the new concept of Bregman generalized f-projection operator ProjCf, g:E*→C, where E is a reflexive Banach space with dual space E*; f: E→ℝ∪+∞ is a proper, convex, lower semicontinuous and bounded from below function; g: E→ℝ is a strictly convex and Gâteaux differentiable function; and C is a nonempty, closed, and convex subset of E. …”
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    Practical precautions when submitting a project to the research ethics committee by Gilmara Holanda da Cunha, Fernando Antônio Frota Bezerra, Maria Elisabete Amaral de Moraes

    Published 2025-01-01
    “…Thus, some common mistakes delay the process of project assessment, while making it more difficult to issue opinions. …”
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    Projective structure and integrable geodesic flows on the extension of Bott-Virasoro group by Partha Guha

    Published 2004-01-01
    “…In this paper, we show that the multicomponent (or vector) Ito equation, modified dispersive water wave equation, and modified dispersionless long wave equation are the geodesic flows with respect to an L2 metric on the semidirect product space Diffs(S1)⋉C∞(S1)kˆ, where Diffs(S1) is the group of orientation preserving Sobolev Hs diffeomorphisms of the circle. We also study the projective structure associated with the matrix Sturm-Liouville operators on the circle.…”
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    Demarcation of Pollution-Prone Areas around the Manyoni Uranium Project, Tanzania by Farida Lolila, Mohamed S. Mazunga, Ntombizikhona B. Ndabeni

    Published 2022-10-01
    “…Abstract This study employed PM10 source parameters and pre-processed topographical and meteorological data as input into the AERMOD atmospheric dispersion model to demarcate pollution-prone areas around the Manyoni Uranium Project. Knowing these areas before mining is an important step toward establishing efficient and effective environmental baseline data. …”
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    Embedding Feynman integral (Calabi-Yau) geometries in weighted projective space by Jacob L. Bourjaily, Andrew J. McLeod, Cristian Vergu, Matthias Volk, Matt von Hippel, Matthias Wilhelm

    Published 2020-01-01
    “…While the number of Calabi-Yau manifolds of dimension three or higher is considerable (if not infinite), those relevant to most known examples come from a very simple class: degree-2k hypersurfaces in k-dimensional weighted projective space WP1,...,1,k . In this work, we describe some of the basic properties of these spaces and identify additional examples of Feynman integrals that give rise to hypersurfaces of this type. …”
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