In the name of of Allah the Merciful
Praise be to God, and blessings and peace be upon the Messenger of God, Muhammad, and upon his family and his family and peace, and after:
The honor of every knowledge of honor is related to it, and since the science of interpretation is related to the Book of God Almighty; it is considered one of the most noble and longest of sciences, and this science began long ago as the early ages of Islam have expanded the Islamic state, and people entered the religion of God in cohorts, and the mixture mixed In tongues, and people did not know much about the meanings of the Qur’an, so the need for authorship in this great knowledge was severe, and perhaps one of the first to write about the meanings of the Qur’an (Abu Ubaidah) in his book (The Metaphor of the Qur’an), Abu Ubaidah was influenced by his specialization in Arabic science, which made it the feature Notable for his book.
I found that many researchers took up this book with study from the linguistic, grammatical, and morphological fields, but I did not find anyone who talked about the explanatory aspects in it, hence the idea to write this research which deals with (Abu Ubaidah's interpretative approach in the metaphor of the Qur’an).
I have dealt with this book by reading, to determine the features of the approach taken by Abu Ubaida in it and which I will mention in the folds of the research plan shortly, and I took it upon myself to demonstrate what I decided for him by hitting some examples from his book to explain this and then compare it with other specialists, to see the extent of his approval Or his contradiction with them, knowing that the difference between him and those who joined him was that he wrote his book before the features of the interpreters' curricula became clear, and before specific rules were set for them.
The research was divided into an introduction, and three sections: I dedicated the first topic: to talk about the life and knowledge of Abu Ubaidah, and the second topic: on the approach of Abu Ubaidah in the interpretation of the dictum, and there are four requirements: the first demand: in the interpretation of the Qur’an in the Qur’an, and the second requirement in the interpretation of the Qur’an in the Sunnah And the third requirement: in the interpretation of the Qur’an with the sayings of the companions, the followers, and the fourth requirement on: the interpretation of the Qur’an with the reasons for descent, and the third topic: in the interpretation of Abu Ubaidah the Qur’an with an opinion, and it has five requirements: the first requirement: the interpretation of the Qur’an in the language, and the second requirement: the interpretation of the Qur’an with dependence as , And the third requirement: the interpretation of the Qur’an relying on a For Arab poetry, and the fourth requirement: Interpretation of the Qur’an by multiplying proverbs, and then concluded the research with the most important findings.
I have referred in that to the mothers of the books in the interpretation, language, hadith, translations, and others, and if I was injured, then God is the best and has the grace. To God, Lord of the worlds.
Combining different treatment strategies successively or simultaneously has become recommended to achieve high purification standards for the treated discharged water. The current work focused on combining electrocoagulation, ion-exchange, and ultrasonication treatment approaches for the simultaneous removal of copper, nickel, and zinc ions from water. The removal of the three studied ions was significantly enhanced by increasing the power density (4–10 mA/cm2) and NaCl salt concentration (0.5–1.5 g/L) at a natural solution pH. The simultaneous removal of these metal ions at 4 mA/cm2 and 1 g NaCl/L was highly improved by introducing 1 g/L of mordenite zeolite as an ion-exchanger. A remarkable removal of heavy metals was reported
... Show MoreNovel derivatives of 1-(´1, ´3, ´4, ´6-tetra benzoyl-β-D-fructofuranosyl)-1H- benzotriazole and 1-(´1, ´3, ´4, ´6-tetra benzoyl-β-D-fructofuranosyl)-1H- benzotriazole carrying Schiff bases moiety were synthesised and fully characterised. The protection of D- fructose using benzoyl chloride was synthesized, followed by nucleophilic addition/elimination between benzotria- zole and chloroacetyl chloride to give 1-(1- chloroacetyl)- 1H-benzotriazole. The next step was condensation reaction of protected fructose and 1-(1-chloroacetyl)-1H- benzotriazole producing a new nucleoside analogue. The novel nucleoside analogues underwent a second conden- sation reaction with different aromatic and aliphatic amines to provide new Schiff b
... Show MoreCombining different treatment strategies successively or simultaneously has become recommended to achieve high purification standards for the treated discharged water. The current work focused on combining electrocoagulation, ion-exchange, and ultrasonication treatment approaches for the simultaneous removal of copper, nickel, and zinc ions from water. The removal of the three studied ions was significantly enhanced by increasing the power density (4–10 mA/cm2) and NaCl salt concentration (0.5–1.5 g/L) at a natural solution pH. The simultaneous removal of these metal ions at 4 mA/cm2 and 1 g NaCl/L was highly improved by introducing 1 g/L of mordenite zeolite as an ion-exchanger. A remarkable removal of heavy metals was reported
... Show MoreThe combined system of electrocoagulation (EC) and electro-oxidation (EO) is one of the most promising methods in dye removal. In this work, a solution of 200 mg/l of Congo red was used to examine the removal of anionic dye using an EC-EO system with three stainless steel electrodes as the auxiliary electrodes and an aluminum electrode as anode for the EC process, Cu-Mn-Ni Nanocomposite as anode for the EO process. This composite oxide was simultaneously synthesized by anodic and cathodic deposition of Cu (NO3)2, MnCl2, and Ni (NO3)2 salts with 0.075 M as concentrations of each salt with a fixed molar ratio (1:1:1) at a constant current density of 25 mA/cm2. The characteristics structure and surface morphology of the depo
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