Search Results - "Nashed, Y.E"

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  1. 1

    Conformational stabilities of CH 2CHSi(CH 3) nX 3− n (X=F and Cl) from variable temperature FT-IR spectra of rare gas solutions by Guirgis, G.A, Nashed, Y.E, Badawi, H.M, Durig, J.R

    Published in Journal of molecular structure (2001)
    “…Variable temperature (−105 to −150°C) studies of the infrared spectra (3500–400 cm −1) of methylvinyldifluorosilane, CH 2CHSiF 2CH 3, dimethylvinylfluorosilane…”
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    Journal Article
  2. 2

    Spectra and structure of silicon containing compounds. XXVI. Raman and infrared spectra, ro structural parameters, conformational stability, vibrational assignment, and ab initio calculations of vinyl silyl chloride by Durig, J.R., Nashed, Y.E., Qtaitat, M.A., Guirgis, G.A.

    Published in Journal of molecular structure (01-07-2000)
    “…Variable temperature (−55 to −150°C) studies of the infrared spectra between 4000 and 400 cm −1 of vinyl silyl chloride, CH 2CHSiH 2Cl, dissolved in liquid…”
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    Journal Article
  3. 3

    Raman and infrared spectra, conformational stability, ab initio calculations and vibrational assignments for 2-chloroethyl silane by Guirgis, G.A., Nashed, Y.E., Durig, J.R.

    Published in Journal of molecular structure (09-11-1999)
    “…The infrared (3500–30 cm −1) spectra of gaseous and solid and the Raman (3500–10 cm −1) spectra of liquid with quantitative depolarization ratios and solid…”
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    Journal Article
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    Thermochemical adsorptive and catalytic events occurring during isopropanol decomposition over MnO x-modified aluminas. In situ infrared spectroscopic studies by Zaki, M.I., Hussein, G.A.M., Nohman, A.K.H., Nashed, Y.E.

    Published in Thermochimica acta (1996)
    “…Adsorptive and catalytic events occurring at gas/solid interfaces established during isopropanol decomposition over pure and MnO x -modified aluminas were…”
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    Composition, structure and surface acid-base behaviour of manganese oxide dispersed on silica by Zaki, M.I, Nohman, A.K.H, Hussein, G.A.M, Nashed, Y.E

    “…Silica-supported manganese oxides were derived by calcination at 870 and 1270 K of manganese intrate-impregnated and manganese oxide-coated silicas (at 10…”
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    Journal Article
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