Diversity of the aspects of analyzing a specific linguistic issue is considered to be a
familiar phenomenon in learning Arabic in which – at different levels- various linguistic
aspects and phases – sometimes – are involved in a linguistic issue . In this paper , the
problematic issues during linguistic analysis are taken into an account. The Holy Quran
interpretation books include many Quranic expressions which have a lot of meaning described
by different interpreters , from them this paper has selected only one expression ( = كفاتا
receptacle ) from the verse "Have we not made the earth a receptacle " ( Al- Mursalat verse 25
) , this paper believes that this expression is sufficient display the interpreters' views and
opinion which explain this expression in a variable unimaginable way . Understanding this
aspect emerges form the interpreter as he/she sees the context in which the meaning of an
expression appears . It is believed that any given text is determined by the interpreter's culture
and instinct . Thus , meaning may vary , as viewed by an interpreter or a group of interpreters
, and this shall consequently lead to diversity in interpretation . Understanding of meaning can
be differently comprehended due to different interpreters or different context. The aspect
which tackle the semantic side of ( كفات ) are six . These aspects have been morphologically and syntactically analyzer so as to determine the aspect meant by the Holy Quran itself . This
can be realized by extending the views related to its semantic side taking into consideration
the measure ( فعال ) which is characterized by its semantic diversity in Arabic expression and
their formation , i.e., (the sound /k/,/f/ and /t/) . Moreover , this paper shows the concise
semantic differences between ( كفات ) and its counterparts in the Holy Quran which have
secondary measurement which appear in the earth stretching verses such as (carpet ( , (بساط
tractable ( ذلول ) , bed ( فراش ) , floor ( قرار ), and cradle ( (مھاد- م
We apply a semi classical partial-wave scattering method based on the induced density approach (IDA) model. For ion electron scattering, the transport cross section is used to calculate the energy loss. This method yields a non-perturbative exemplification of energy loss, bridging the difference among classical and quantal representations. The focus of this work is the interaction of hetero nuclear di-cluster (He-H) ions with a free gas. The results show three kinds of stopping power in (a.u) (cluster stopping power, self-stopping power and correlated stopping power) of hetero nuclear di-cluster ions (He-H) with velocity at different atomic di-cluster distances at different densities and temperatures. We find that Bragg’
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Shear and compressional wave velocities, coupled with other petrophysical data, are vital in determining the dynamic modules magnitude in geomechanical studies and hydrocarbon reservoir characterization. But, due to field practices and high running cost, shear wave velocity may not available in all wells. In this paper, a statistical multivariate regression method is presented to predict the shear wave velocity for Khasib formation - Amara oil fields located in South- East of Iraq using well log compressional wave velocity, neutron porosity and density. The accuracy of the proposed correlation have been compared to other correlations. The results show that, the presented model provides accurate
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Release of industrial effluents comprising dyes in water bodies is one of the foremost causes of water pollution. Therefore, the proper and proficient treatment of these dyes contaminated left-over material before their release is crucial. Herein, an eco-friendly biological macromolecule Gum-Acacia (GA) integrated Fe3O4 nanoparticles composite hydrogel was manufactured via co-precipitation technique for effective adsorption of Congo red (CR) dye existing in water bodies. The as-prepared magnetic GA/Fe3O4 composite hydrogel was characterized by FTIR, XRD, EDX, VSM, SEM, and BET techniques. These studies discovered the fruitful fabrication of biodegradable magnetic GA/Fe3O4 composite hydrogel possessing porous structure with large surface are
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