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Word-Formation System And Its Influence On The Translation Of New Vocabulary In Russian And Arabic: Словообразовательная Система И Ее Влияние На Перевод Новой Лексики В Русском И Арабском Языках
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Derivational word formation process is one of the most substantial linguistic procedures that solves many problems in the translation of the language new vocabulary and helps to comprehend the smallest language component that not simply semantically and structurally explain the elements  of both Russian and Arabic but also enables translators to comprehend the derivational method procedures of both languages. It also reveals the structural aspects of translation equivalences, cognitive and semantic foundations of translation. The rapid development of languages and the appearance of a new vocabulary like ṭabaʿa "print → ṭābiʿat "printer", kataba "to write" → kātib → kātibat, rafaʿa "to raise" → rāfiʿat "a crane" dictate its own terms, binding both linguists as well as translators to discover a new methods of the resolving complications of translation equivalences.

 The interaction happening between the derivational word process and translation provides an exceptional prospect to grasp the language words structure that regulates the smallest word components of both languages. Structure and semantics are involved in the construction of minimal significant elements, which makes it possible to understand the new vocabulary patterns to achieve translation equivalence.

Аннотация

 Словообразовательная система является одной из важных систем лингвистики, изучение которой решает много переводческих проблем новой лексики. Рассмотрение особенностей словообразования как важной языковой подсистемы дает нам понять мельчайшие значимые языковые элементы. Эти элементы не только поясняют структуру и семантику  производных слов русского и арабского языка, но и дают переводчикам возможность понять, как действуют словообразовательные процессы обоих языков. На основе словообразования, раскрываются структурные стороны переводческой эквивалентности, когнитивные и семантические основы перевода. Бурное развитие языка и появление новой лексики типа abaʿa "напечатать → ābiʿat "принтер", kataba "писать" → kātibkātibat, rafaʿa "поднимать" → rāfiʿat "подъемщик" диктуют свои условия, обязывающие не только лингвистов, но и переводчиков найти новые основы для решения проблемы переводческой эквивалентности.

Взаимодействие словообразования и перевода дают уникальную возможность понять структуру слов языка, что выясняет минимальный значимый состав слов обоих языков. Структура и семантика участвуют в строении минимальных значимых элементов, что дает возможность понять состав новой лексики и как достичь переводческой эквивалентности.    

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Publication Date
Tue Oct 30 2018
Journal Name
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In this study, nano TiO2 was prepared with titanium isopropoxide (TTIP) as a resource to titanium oxide. The catalyst was synthesized using phosphotungstic acid (PTA) and, stearyl trimethyl ammonium bromide (STAB) was used as the structure-directing material. Characterization of the product was done by the X-ray diffraction (XRD), X-ray fluorescent spectroscopy (XRF), nitrogen adsorption/desorption measurements, Atomic Force Microscope (AFM) and Fourier transform infrared (FTIR) spectra, were used to characterize the calcined TiO2 nanoparticles by STAB and PWA. The TiO2 nanomaterials were prepared in three crystalline forms (amorphous, anatase, anatase-rutile). The results showed that the nanoparticles of anatase TiO2 have good cata

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Sun Jun 01 2014
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Tue Jan 08 2013
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Wed Jan 20 2021
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Time Dependent Behavior of Engineered Cementitious Composite Concrete Produced from Portland Limestone Cement
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Conventional concretes are nearly unbendable, and just 0.1 percent of strain potential makes them incredibly brittle and stiff. This absence of bendability is a significant cause of strain failure and has been a guiding force in the production of an elegant substance, bendable concrete, also known as engineered cement composites, abbreviated as ECC. This type of concrete is capable of displaying dramatically increased flexibility. ECC is reinforced with micromechanical polymer fibers. ECC usually uses a 2 percent volume of small, disconnected fibers. Thus, bendable concrete deforms but without breaking any further than conventional concrete. This research aims to involve this type of concrete, bendable concrete, that will give solut

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Sat Jan 01 2022
Journal Name
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Publication Date
Sat Jan 05 2019
Journal Name
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Tin dioxide (SnO2) were mixed with (TiO2 and CuO) with concentration ratio (50, 60, 70, 80 and 90) wt% films deposited on single crystal Si and glass substrates at (523 K) by spray pyrolysis technique from aqueous solutions containing tin (II) dichloride Dihydrate (SnCl2, 2H2O), dehydrate copper chloride (CuCl2.2H2O) and Titanium(III) chloride (TiCl3) with molarities (0.2 M). The results of electrical properties and analysis of gas sensing properties of films are presented in this report. Hall measurement showed that films were n-type converted to p- type as titanium and copper oxide added at (50) % ratio. The D.C conductivity measurements referred that there are two mechanisms responsible about the conductivity, hence it possess two act

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Publication Date
Thu Feb 28 2019
Journal Name
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Frequency Domain Analysis for Geometric Nonlinear Seismic Response of Tall Reinforced Concrete Buildings
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The study reveals that the percentage increase in buildings' sway and drift due to P-Delta effects are nearly constant for specific building height irrespective of the seism

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Publication Date
Thu Oct 31 2013
Journal Name
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