This paper argues that eco-awareness is presented in Margaret Atwood’s The Year of the Flood as a remedy for apocalyptic eco-phobia. The study focuses on apocalypse and eco-phobia as a motivation of the characters’ eco-awareness. Accordingly, the novel depicts several scenes of natural apocalyptic regarding the decline of the environment. There is an obvious relationship between apocalyptic eco-phobia and eco-awareness because they are environmental elements. Therefore, the study examines Atwood’s perception of apocalypse that threatens the ideal nature; she offers alternatives to avoid it via elevating the characters’ eco-awareness. Consequently, eco-awareness exemplifies the ideal natural state needed by the characters because imminent apocalypse endangers its safety and significance to their lives. Here, the study scrutinizes eco-awareness as a remedy for possible destructive environmental disaster. Hence, it applies Scott Slovic’s concept of eco-awareness as a remedy for apocalyptic eco-phobia to unravel Atwood’s obsession with contemporary negative exploitation of nature. By interpreting the contradiction between eco-awareness and apocalyptic eco-phobia, it tries to contend that environmental perfection would exacerbate the characters’ eco-awareness. The novel encourages readers to deduce the vitality of eco-awareness and its capacity to promote the characters’ need for ideal environment. This finding accentuates the characters engagement with nature since it exalts their eco-awareness as a therapeutic antithesis to apocalyptic eco-phobia; whereby they become convened to cease exploiting nature in negative way. Thus, the study explores how Atwood’s descriptive portrayal of natural apocalypse prompts the characters’ eco-phobic feelings; and how it could be mitigated by dint of their eco-awareness
Synthesis of a new class of Schiff-base ligand with a tetrazole moiety to form polymeric metal complexes with CoII, NiII, ZnII, and CdII ions has been demonstrated. The ligand was synthesised by a multi-steps by treating 5-amino-2-chlorobenzonitrile and cyclohexane -1,3-dione, the 5,5'-(((1E,3E)-cyclohexane-1,3-diylidene)bis(azanylylidene))bis(2-chlorobenzonitrile) was obtained. The precursor (M) was prepared from the reaction 5,5'-(((1E,3E)-cyclohexane-1,3-diylidene)bis(azanylylidene))bis(2-chlorobenzonitrile) with NaN3 to obtained (1E,3E)-N1,N3-bis(4-chloro-3-(1H-tetrazol-5-yl)phenyl)cyclohexane-1,3-diimine (N). By reacting the precursor (M) with CS2
... Show More<span lang="EN-US">The fundamental of a downlink massive multiple-input multiple-output (MIMO) energy- issue efficiency strategy is known as minimum mean squared error (MMSE) implementation degrades the performance of a downlink massive MIMO energy-efficiency scheme, so some improvements are adding for this precoding scheme to improve its workthat is called our proposal solution as a proposed improved MMSE precoder (PIMP). The energy efficiency (EE) study has also taken into mind drastically lowering radiated power while maintaining high throughput and minimizing interference issues. We further find the tradeoff between spectral efficiency (SE) and EE although they coincide at the beginning but later their interests become con
... Show Moresix specimens of the Hg0.5Pb0.5Ba2Ca2Cu3-y
الوصف Mixed ligand complexes of Cu (II), Co (II) and Zn (II) with 2-((4-(1-(4-chlorophenylimino) ethyl) phenylimino) methyl) phenol (L) and histidine (His) have been prepared and diagnosed by ¹H and13 C NMR, FT-IR and electronic spectral data, thermal gravimetric, molar conductance and metal analysis measurements. The ligand (L) shows a bidentate nature and the coordination occurs through N and O atoms of imine group and phenol group respectively whereas (His) behave as tridentate ligand, coordinating through the-NH2 group and carboxylate oxygen group and N atoms of imidazole ring. The analytical studies for three complexes have shown octahedral structure. The anticancer activity was screened against human cancer cell such Follicular
... Show MoreThe rise of antibiotic-resistant bacteria necessitates the exploration of novel antimicrobial agents. Yttrium oxide nanoparticles (Y₂O₃) have shown potential due to their unique physicochemical properties and antibacterial activities against various pathogens. This study investigates the cytotoxic and antibacterial effects of Y₂O₃ nanoparticles against Serratia fonticuli and Citrobacter koseri, bacteria isolated from cholangitis patients. Bacterial strains were isolated from bile specimens and confirmed using standard microbiological techniques. The methods of X-ray diffraction (XRD), (SEM), and Frequency transform-infrared spectroscopic (FT-IR) were used to characterize YO₃ particles. Using a microdilution technique, the minimum
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