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The Problem of Translating Antonyms in The Holy Qur’an into German’’, in an analytical manner: Das Übersetzungsproblem der Antonyme im Heiligen Koran ins Deutsche Analytische Studie
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The present study is entitled “Problems of Translating Holy Qur’an Antonyms into German: An Analytical Study”. It discusses some of the problems of translating Holy Qur’an verses that contain words so opposite in meaning to another word. The main concern of the study stresses some of the errors in translating the oppositeness of certain words of Holy Qur’an from Arabic into other languages like German, a problem that can be traced back to the fact that such words may have two opposites in meaning, one is considered and the other is completely neglected.

      The errors in translating al Qur’an Antonyms can be summarized for several reasons: literal translation, ignorance of the different views of both the linguists and AlQur’an interpreters in conveying the meanings of the opposites, generalizing and specification of the opposites in meaning, interpreting one main meaning of the opposites and ignoring the other one, the absence of the word in the target language that closely indicates the meaning in the source language, depending entirely on the most correct opinion of the meaning, ignorance of an extra meaning other than the opposites, depending on the personal interpretation and mistranslating certain opposites either intentionally or unintentionally.

Vorwort

Die vorliegende Forschungsarbeit handelt das Übersetzungsproblem von Antonymen in den Heiligen Koran- Versen ins Deutsche auf beschreibende und analytische Weise ab. Dieses Thema ist großer von Bedeutung besonders für die nicht-arabische Muslime, d.h., die deutschstämmige Muslime, die die arabische Sprache nicht sprechen kann. Der Grund für diese Studie ist das Auftreten einiger Fehler beim Übersetzen von Gegensätzen im Koran ins Deutsche und  veranschaulicht sie auch in vereinfachter Form die Gründe dieser Fehler bei der Übersetzung von diesen Gegensätzen. Der Grund für diese Fehler im Übersetzungsprozess ist die Existenz von Wörtern, die zwei gegensätzlichen Bedeutungen in den einigen Koran- Versen, sozusagen (die Antonyme) enthalten, d.h., ein Gegenwort, das zu einem anderen Wort eine gegensätzliche Bedeutung hat, oder aus dem  Semantikaspekt ist es ( das Antonym) ein Wort, dessen Bedeutung das genaue Gegenteil zu der eines anderen Wortes ausdrückt.

Die Forschungsfrage liegt darin, dass mehrere Fehler beim Übersetzen der Antonyme im Heiligen Koran gemacht werden. Die Ursachen dieser Übersetzungsfehler können wir ja auf die Wörter, die zwei gegensätzlichen Bedeutungen enthalten, zurückführen, deshalb hatten die Übersetzungen oftmals vor, eine von den beiden Bedeutungen zu nehmen und die andere zu ignorieren. Wir können überhaupt einige dieser Probleme aufzählen, in die die Übersetzer des Heiligen Korans beim Übersetzen dieser Antonyme geraten sind. Sie sind zum Beispiel: die wörtliche Übersetzung; die Übersetzer der Koransbedeutungen haben keine  gute bzw. ausreichende Kenntnis über die  Meinungen von Linguisten hinsichtlich der Bedeutung dieses Wortes; die Differenzen der Linguisten und Koran-Interpreten über die Bedeutungen des Korans; Verallgemeinerung der semantischen Bedeutung der Ausdrücke; das Fehlen eines Wortes in der Zielsprache deutet auf die gleiche Bedeutung in der Ausgangssprache hin; die persönliche Meinung des Übersetzers und die Antonyme können absichtlich oder versehentlich nicht übersetzt werden. Alle diese Dinge waren insgesamt die Hauptursache für die Fehler beim Übersetzen der Kontrastausdrücke in den heiligen Koran Versen.                                                                                 

 

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Publication Date
Fri May 05 2023
Journal Name
Journal Of Molecular Structure
Synthesis, spectral studies, DFT, biological evaluation, molecular docking and dyeing performance of 1-(4-((2-amino-5-methoxy)diazenyl)phenyl) ethanone complexes with some metallic ions
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Four Co(II), (C1); Ni(II), (C2); Cu(II), (C3) and Zn(II), (C4) chelates have been synthesized with 1-(4-((2-amino- 5‑methoxy)diazenyl)phenyl)ethanone ligand (L). The produced compounds have been identified by using spectral studies, elemental analysis (C.H.N.O), conductivity and magnetic properties. The produced metal chelates were studied using molar ratio as well as sequences contrast types. Rate of concentration (1 ×10􀀀 4 - 3 ×10􀀀 4 Mol/L) sequence Beer’s law. Compound solutions have been noticed height molar absorptivity. The free of ligand and metal chelates had been applied as disperse dyes on cotton fabrics. Furthermore, the antibacterial activity of the produced compounds against various bacteria had been investigated. F

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Fri Mar 28 2014
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Advances In Life Science And Technology
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This work involves synthesis of some new heterocyclic compounds including 1, 3-diazetine. The new Schiff bases [VI] ad derived from 3-((5-hydrazinyl-4-phenyl-4H-1, 2, 4-triazol-3-yl) methyl)-1H-indole [V] which was synthesized by refluxing 5-((1H-indol-3-yl) methyl)-4-phenyl-4H-1, 2, 4-triazole-3-thiol [IV] with hydrazine hydrate in absolute ethanol and this amino compound [V] condensation with different aromatic aldehydes in absolute ethanol to yielded a new Schiff bases [VI] ad. N-acyl compounds [VII] ad were synthesized by addition reaction of acetyl chloride to imine group of Schiff bases in dry benzene. The new diazetine derivatives [VIII] ad synthesized by the reaction of N-acyl compounds [VII] ad with sodium azide in dimethylformamid

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Wed Oct 25 2017
Journal Name
Oriental Journal Of Chemistry
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Sun Mar 07 2010
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The complexes of the 2-hydroxy-4-Nitro phenyl piperonalidene with metal ions Cr(III), Ni(II), Pt(IV) and Zn(II) were prepared in ethanolic solution. These complexes were characterized by spectroscopic methods, conductivity, metal analyses and magnetic moment measurements. The nature of the complexes formed in ethanolic solution was study following the molar ratio method. From the spectral studies, monomer structures proposed for the nickel (II) and Zinc (II) complexes while dimeric structures for the chromium (III) and platinum (IV) were proposed. Octahedral geometry was suggested for all prepared complexes except zinc (II) has tetrahedral geometry, Structural geometries of these compounds were also suggested in gas phase by using

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Fri Jul 28 2017
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Structural and Spectroscopic Study of Novel Tetradentate Macrocyclic Ligand Type N4 and It’s Complexes with CrIII, MnII, FeII, CoII, NiII ,CuII, PdII and CdII
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Publication Date
Sun Mar 01 2009
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Baghdad Science Journal
Synthesis and Characterization of Tripodal Tetradentate Ligand Type NS3 and its Complexes with Re(V), Ni(II), Cu(II), Zn(II), Cd(II), and Hg(II)
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Publication Date
Sun Apr 16 2017
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Ibn Al-haitham Journal For Pure And Applied Sciences
Synthesis and Characterization of Some O-[2-{''2Substituted Aryl (''1,''3,''4 thia diazolyl) ['3,'4-b]-'1,'2,'4- Triazolyl]-Ethyl]-p- chlorobenzald oxime Derivatives.
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Publication Date
Thu Mar 30 2017
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Iraqi Journal Of Pharmaceutical Sciences ( P-issn 1683 - 3597 E-issn 2521 - 3512)
Synthesis, Characterization and Antibacterial Activities of Ligand Type N2O4 Schiff base and its Novel Complexes with Co(II), Ni(II), Cu(II) and Zn(II) ions.
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Synthesis, Characterization and Antibacterial Activities of Ligand Type N2O4 Schiff base and its Novel Complexes with Co(II), Ni(II), Cu(II) and Zn(II) ions
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The reaction of 2-amino benzoic acid with 1,2-dichloroethane under reflux in methanol and KOH as a base to gave the precursor [H4L]. The precursor under reflux and drops of CH3COOH which reacted with (2mole) from salicycaldehyde in methanol to gave a new type N2O4 ligand [H2L], this ligand was reacted with (MCl2) Where [M= Co (II), Ni(II), Cu(II) and Zn(II)] in (1:1) ratio at reflux in methanol using KOH as a base, to give complexes of the general formula [M(L)]. All compounds have been characterized by spectroscopic methods [1H NMR ( just to the ligand), FTIR, uv-vis, atomic absorption], melting point, conductivity, chloride content, as well as magnetic susceptibility measurements. From the above data, the proposed molecular structu

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Publication Date
Fri Sep 01 2023
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Journal Of Molecular Structure
Synthesis, spectral studies, DFT, biological evaluation, molecular docking and dyeing performance of 1-(4-((2-amino-5-methoxy)diazenyl)phenyl) ethanone complexes with some metallic ions
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Four Co(II), (C1); Ni(II), (C2); Cu(II), (C3) and Zn(II), (C4) chelates have been synthesized with 1-(4-((2-amino- 5‑methoxy)diazenyl)phenyl)ethanone ligand (L). The produced compounds have been identified by using spectral studies, elemental analysis (C.H.N.O), conductivity and magnetic properties. The produced metal chelates were studied using molar ratio as well as sequences contrast types. Rate of concentration (1 ×10􀀀 4 - 3 ×10􀀀 4 Mol/L) sequence Beer’s law. Compound solutions have been noticed height molar absorptivity. The free of ligand and metal chelates had been applied as disperse dyes on cotton fabrics. Furthermore, the antibacterial activity of the produced compounds against various bacteria had been investigated. F

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