Search Results - "Belkhiri, S"

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  1. 1

    Improvement of the Transient Stability of a 14-bus Network Using a Superconducting Fault-Current Limiter SFCL by Belkhiri, S., Bouroubi, M., Harrabi, A.

    Published in Advanced electromagnetics (01-10-2020)
    “…This study presents a new strategy for implementing the superconducting fault current limiter SFCL in order not only to limit short - circuit currents but also…”
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    Journal Article
  2. 2

    Textural and structural effects of heat treatment and γ-irradiation on Cs-exchanged NaX zeolite, bentonite and their mixtures by Belkhiri, S., Guerza, M., Chouikh, S., Boucheffa, Y., Mekhalif, Z., Delhalle, J., Colella, C.

    Published in Microporous and mesoporous materials (01-10-2012)
    “…[Display omitted] ► NaX zeolite, Algerian bentonite, and their mixtures as getters of cesium. ► Heat treatment of both NaX and CsX zeolites up to 1000°C…”
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    Journal Article
  3. 3

    The Influence of the Geometrical Properties of Bulk Superconductors on Limiting Fault Current in an Electrical Network by Belkhiri, S., Alloui, L., Ben Mebarek, F.

    Published in Advanced electromagnetics (01-01-2019)
    “…The behavior of the superconducting fault current limiters SFCL used in Electrical Network is largely determined by the geometry properties and the type of the…”
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    Journal Article
  4. 4

    Disseminated cryptococcosis in an apparently immunocompetent patient by El Ouazzani, H, Achachi, L, Belkhiri, S, El Ftouh, M, El Fassy Fihry, M-T

    Published in Revue des maladies respiratoires (01-09-2009)
    “…Cryptococcal infections occur frequently in immunocompromised patients particularly in the context of AIDS, lymphomas and following immunosuppression for organ…”
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    Journal Article
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  6. 6

    Synthesis, structure determination and electrical properties of β-K0.399V2.623W0.377O7.5 with mixed occupation of vanadium and tungsten elements by Belkhiri, S., Mezaoui, D., Pérez, O.

    “…The title compound vanadium-tungsten mixed oxide bronze K0.399V2.623W0.377O7.5 was prepared by solid state reaction at 700°C in an evacuated silica ampoule…”
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  7. 7