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Word-Forming Specificity of Diminutives in the Russian and Arabic and its Significance in Translation
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The word-formation specificity of diminutive vocabulary in Russian and Arabic is considered in this paper. On the background of the fact that the definitions of diminutives in various linguistic traditions do not always reveal the morphological features of this lexical layer, the authors focus on the word-formation motivation in creating diminutives in Russian and Arabic, which becomes the subject of the study. In this regard, special attention is paid to the criterion of O.G. Vinokur and his Arabic parallels are the parameters of the Arabic medieval philologist Ibn Faris, which serve as the basis for revealing the structure and semantics of derivative words in both languages. The authors, resorting to the comparative method, analyze the range of meanings and connotations resulting from the word-formation motivation of diminutive vocabulary in both languages - diminutiveness, endearment, reduction of quantity, including the closeness of time and place specific to the Arabic meaning and amplification of meanings and their expression in both languages. The basics of translating diminutive vocabulary are also not overlooked. Highlighting three important foundations of translation adequacy - structural, semantic and cognitive, which affect the translation process when equivalence is achieved, the authors come to the conclusion about the complexity of the relationship and, accordingly, the translation of diminutives. To do this, the authors in their reasoning leave the sphere of pure linguistics and turn to the culturological sphere, without which today it is unthinkable to talk about a full-fledged translation activity. The work contributes to theoretical linguistics as a comparative study of the Semitic and Slavic languages, and also complements the missing link in the relatively young private theory of Russian-Arabic translation.

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Publication Date
Tue Jan 01 2013
Journal Name
Advances In Physics Theories And Applications
Adsorption Study of Symmetrical Schiff Base Ligand 4,4’-[hydrazine-1,2-diylidenebis(methan-1-yl-1-ylidene) bis (2-methoxyphenol)] on Granulated Initiated Calcined Iraqi Montmorillonite via Columnar Method.
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The adsorption ability of Iraqi initiated calcined granulated montmorillonite to adsorb Symmetrical Schiff Base Ligand 4,4’-[hydrazine-1, 2-diylidenebis (methan-1-yl-1-ylidene)) bis (2-methoxyphenol)] derived from condensation reaction of hydrazine hydrate and 4-hydroxy-3-methoxybenzaldehyde, from aqueous solutions has been investigated through columnar method.The ligand (H2L) adsorption found to be dependent on adsorbent dosage, initial concentration and contact time.All columnar experiments were carried out at three different pH values (5.5, 7and 8) using buffer solutions at flow rate of (3 drops/ min.),at room temperature (25±2)°C. The experimental isotherm data were analyzed using Langmuir, Freundlich and Temkin equations. The monol

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Publication Date
Wed Jul 05 2017
Journal Name
Chemical Engineering Communications
Microwave-assisted preparation of mesoporous-activated carbon from coconut (<i>Cocos nucifera</i>) leaf by H<sub>3</sub>PO<sub>4</sub>activation for methylene blue adsorption
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Publication Date
Sun Jan 26 2020
Journal Name
Journal Of Global Pharma Technology
Synthesis, Characterization of 2-azido-4-(azido (2-azido-2-( azido carbonyl)-1,3-dioxoian-4-yl)methyl)– 5-((R-azido (hydroxyl) methyl- 1,3-dioxole-2-carbonyl azide. ethanol. hydrate (L-AZD) with Some Metal Complexes
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The reaction oisolated and characterized by elemental analysis (C,H,N) , 1H-NMR, mass spectra and Fourier transform (Ft-IR). The reaction of the (L-AZD) with: [VO(II), Cr(III), Mn(II), Co(II), Ni(II), Cu(II), Zn(II), Cd(II) and Hg(II)], has been investigated and was isolated as tri nuclear cluster and characterized by: Ft-IR, U. v- Visible, electrical conductivity, magnetic susceptibilities at 25 Co, atomic absorption and molar ratio. Spectroscopic evidence showed that the binding of metal ions were through azide and carbonyl moieties resulting in a six- coordinating metal ions in [Cr (III), Mn (II), Co (II) and Ni (II)]. The Vo (II), Cu (II), Zn (II), Cd (II) and Hg (II) were coordinated through azide group only forming square pyramidal

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