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The Semantic Relation among the Expressions Of the Phonetic in the Holy Qura: The Semantic Relation among the Expressions Of the Phonetic in the Holy Qura
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Abstract
The phonetic replacement is the process of putting a sound or a linguistic
syllable instead of another in one word that results in changing its meaning . It is one
way of vocabulary varionsness and discrimination because replacement among the
sounds of one expression and changing its image lead to change its meaning , and
accordingly , each replaced sound has its own linguistic value that distinguishes it . In
other words , the phonetic replacement is based on system of phonemic change
which is a general phenomenon in all languages . The linguistic system doesn’t stand
straight for word unless it is based on different standards that work on variousness ,
assortment and relating the phonetic change with the semantic change .
This phenomenon is quite clear in Arabic which is distinguished in its flexibility
and power to be diverse in having one semantic expression with different meanings
through replacing one phoneme in stead of the original phoneme to change the
meaning , with having something of the old meaning to make the structure difference
a proof of meaning difference .
The field of this research is the Holy Quran in which the phonetic structure has a
power full and distinctive position and it is distinguished by the precise use of
expressions .It chooses what is suitable for each context whether expressions or
sounds . therefore, it can be said that the language of the Holy Quran is semantic ,
descriptive and phonetic with a great psychological influence .
It can be seen in different places of the Holy Quran having a phonetic
replacement among the expression in one content the choice of the expressions
replaced from a based on having semantic relations with the replaced ones .
The study of the semantic relations inside of the semantic sphere is one if the
important issues related to semantic , and these relation differ according to the kind
of expression , their meaning intended by the speaker and interpreted by the hearer
such relations can be divided as mentioned in the holy Quran into the following :
1- the semantic meeting : it is a distinctive feature in all languages in general ,
and Arabic in particular and it is based on meeting and confrontation among
the linguistic elements and is includes many semantic features like identically ,
contrast , contradiction and inconsistency in the expressions replaced on the
bases of meeting two important relations are identified :
a) meeting by contrast , Example : atka and ashka ( أتقى وأشقى ) ,rataka and
fataka ( قՑ ق وفت Ց رت ) , ragaba and rahaba ( بՑ ب ورھ Ց رغ ) , asura and yasura ( رՑ عسُ
. (ویسُر
b) meeting by contradiction , Example : kharak and khalak ( خرق وخلق ) , mahasa
and mahaka ( .. (محص ومحق
2- The semantic closeness : The close expressions are those expressions that are
close in meaning but differ in one sound , Example : ada and hada ( , (أدّ وھدّ
3- The semantic analogy : the analogous expressions are those close in the general
meaning or in a shared semantic side , but different in some sounds and such
expressions are called semi – synonyms by some sounds authors ,Example :
khunas and kunas ( خنّس وكنّس ) ,farah and marah ( . (فرح ومرح
Finally , it is concluded that phenomenon of phonetic replacement is an
important phonetic phenomenon on which the Quranic style is based on different
places . It is based on pure semantic basis related with the context . In addition ,there
should be different semantic religious among the expressions exchanged

phonetically and this adds , on the successive verses in one context , a semantic
relation that emphasizes the semantic proportionality in the Quanic expression
among the sounds and their meaning and the expressions and their significance.

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Publication Date
Wed Aug 19 2020
Journal Name
Revista De Chimie
Synthesis, Characterization and Biological Evaluation of Cr(III), Fe(III), Co(II), Ni(II), Zn(II) and Cd(II) Complexes Using an Azo Dye as Ligand
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Azo ligand 11-(4-methoxyphenyl azo)-6-oxo-5,6-dihydro-benzo[4,5] imidazo[1,2-c] quinazoline-9-carboixylic acid was derived from 4-methoxyaniline and 6-oxo-5,6-dihydro-benzo[4,5]imidazo[1,2-c]quinazoline-9-carboxylic acid. The presence of azo dye was identified by elemental analysis and spectroscopic methods (FT-IR and UV-Vis). The compounds formed have been identified by using atomic absorption in flame, FT.IR, UV-Vis spectrometry magnetic susceptibility and conductivity. In order to evaluate the antibacterial efficiency of ligand and its complexes used in this study three species of bacteria were also examined. Ligand and its complexes showed good bacterial efficiencies. From the obtained data, an octahedral geometry was proposed for all p

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    Two local fish Himri Carasobarbus luteus (Heckel, 1843)  and Hishni Liza abu (Heckel, 1843) were stained with Alizarin Red and featured some anatomical qualities which cleared the difference of the muscular and skeletal fabric for each fish. Since clear Histologic differences appeared in these two species, it was intended from this study the possibility of adopting a diagnosis between local fish species by staining bones and tissues.

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Publication Date
Fri Sep 01 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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Thu Mar 30 2017
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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 m

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Publication Date
Fri Sep 01 2023
Journal Name
Journal Of Molecular Structure
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Thu Nov 27 2025
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Synthesis, characterization, dyeing performance, and microbial evaluation of 5-((2,4-dibromo-6-((cyclohexyl(methyl)amino) methyl)phenyl)diazenyl)quinolin-8-ol complexes with some metallic ions
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Study of charge density distributions, elastic charge form factors and root-mean square radii for 4He, 12C and 16O nuclei using Woods- Saxon and harmonic-oscillator potentials
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The nuclear charge density distributions, form factors andcorresponding proton, charge, neutron, and matter root mean squareradii for stable 4He, 12C, and 16O nuclei have been calculated usingsingle-particle radial wave functions of Woods-Saxon potential andharmonic-oscillator potential for comparison. The calculations for theground charge density distributions using the Woods-Saxon potentialshow good agreement with experimental data for 4He nucleus whilethe results for 12C and 16O nuclei are better in harmonic-oscillatorpotential. The calculated elastic charge form factors in Woods-Saxonpotential are better than the results of harmonic-oscillator potential.Finally, the calculated root mean square radii usingWoods-Saxonpotentials ho

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