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The role of strategic planning in addressing Iraqi youth migration
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Purpose

This study examines the role of strategic planning in reducing youth migration in Iraq by promoting sustainable development. It highlights how comprehensive strategies can address economic, political, and environmental drivers of migration, offering practical alternatives for a stable future for Iraqi youth.

Design/methodology/approach

A descriptive–analytical qualitative approach was used, combining a literature review with a structured workshop of 100 political science students. Data from focused group discussions were thematically coded to explore youth perceptions of migration and the role of strategic planning.

Findings

Results indicate that economic diversification, green economy promotion, sustainable employment, education reform, and political stability can reduce migration. Coherent policies, cross-sector collaboration, and innovative models like Masdar City demonstrate sustainable development and technological innovation.

Research limitations/implications

This study has some limitations, including a small sample of 100 students from the College of Political Science at the University of Baghdad and reliance on qualitative data, which may be subject to bias. Nevertheless, the findings provide useful insights into the drivers of youth migration in Iraq and offer practical guidance for policymakers and institutions. Future research could include larger samples and additional regions to strengthen the results.

Practical implications

The finding of this study have several practical implications for addressing youth migration in Iraq. First, the fragile security condition and ongoing conflicts indicate the need for targeted programs that ensure the safety and engagement of young people in affected regions. Second, the high rates of unemployment and limited economic opportunities highlight the importance of developing sustainable employment initiatives, particularly in sectors such as renewable energy, smart agriculture and green technologies, to retain young talent. Third, environmental challenges, including climate change and resource scarcity, call for programs that support climate-resilient livelihoods for youth. Fourth, weak governmental policies and the absence of a comprehensive legal framework for migration suggest the necessity of implementing clear, actionable policies that connect migration management with social and economic development objectives. Finally, the ongoing brain drain emphasizes the importance of strengthening educational and vocational training programs, improving public services and promoting good governance to enhance institutional trust and reduce incentives for migration. These measures collectively provide actionable guidance for policymakers and institutions seeking to retain youth, reduce brain drain and promote sustainable development in Iraq.

Originality/value

The study addresses a contemporary issue by applying Bryson's strategic planning model as an analytical framework to mitigate Iraqi youth migration, integrating the Sustainable Development Goals and green economy initiatives. This innovative approach provides a novel, policy-oriented perspective and actionable insights for policymakers seeking sustainable and effective solutions.

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Wed Apr 29 2020
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Publication Date
Wed Jan 17 2018
Journal Name
Journal Of Applied Chemistry
Synthesis, Composition, Spectral, Geometryand AntibacterialApplicationsof MnII, NiII, CoII, CuII and HgIIcomplexes of N2O2-mixed donor Schiff Basewith 1,10-phenanthroline
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Publication Date
Thu Jan 01 2015
Journal Name
Journal Of The College Of Basic Education
Synthesis and Characterization of some biologically active transition metal complexes for a ligand derived from dimedone with mixed ligands.
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The aim of the work is synthesis and characterization of bidentate ligand [3-(3-acetylphenylamino)-5,5-dimethylcyclohex-3-enone][HL], from the reaction of dimedone with 3-amino acetophenone to produce the ligand [HL], the reaction was carried out in dry benzene as a solvent under reflux. The prepared ligand [HL] was characterized by FT-IR, UV-Vis spectroscopy, 1H, 13C-NMR spectra, Mass spectra, (C.H.N) and melting point. The mixed ligand complexes were prepared from ligand [HL] was used as a primary ligand while 8-hydroxy quinoline [HQ] was used as a secondary ligand with metal ion M(Π).Where M(Π) = (Mn ,Co ,Ni ,Cu ,Zn ,Cd and Pd) at reflux ,using ethanol as a solvent, KOH as a base. Complexes of the composition [M(L)(Q)] with (1

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Publication Date
Mon Jan 01 2018
Journal Name
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Synthesis and Spectroscopic Studies of new ligand N-((4-(phenylamino)phenyl)carbamothioyl)acetamide with some Divalent Metal Ion Complexes
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A new ligand N-((4-(phenylamino) phenyl) carbamothioyl) acetamide (PCA) was synthesized by reaction of (4-amino di phenyl amine) with (acetyl isothiocyante) by using acetone as a solvent. The prepared ligand(PCA) has been characterization by elemental analysis (CHNS), infrared(FT-IR),electronic spectral (UV-Vis)&1H,13C- NMR spectra. Some Divalent Metal ion complexes of ligand (PCA) were prepared and spectroscopic studies by infrared(FT-IR), electronic spectral (UV-Vis), molar conductance, magnetic susceptibility and atomic absorption. The results measured showed the formula ofFall prepared complexes were [M (PCA)2 Cl2] (M+2 = Mn, Co, Ni, CU, Zn, Cd &Hg),the proposed geometrical structure for all complexes wereeoctahedral.

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Detection of Methamphetamine using Nanobentonite as a Novel Solid Phase Extraction Column Matrix Assisted with Gas Chromatography- Mass Spectroscopy
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Sun Jan 01 2012
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Synthesis, Spectroscopic and Biological Studies of some metal ions complexes with 2-hydroxy-N-pyridin-2-yl methyl-acetamide
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The ligand 2-Hydroxy-N-pyridin-2-ylmethyl-acetamide(L) has been prepared from reaction of 2-(aminomethyl)pyridin with chloroacetic acid (1:1).It has been characterized by elemental analysis (C,H,N) ,'H, 13 C-NMR, IR and electronic spectra. The complexes of divalent (Co,Ni,Cu,Zn,Cd and Hg) ions and trivalent(Cr) ion have been synthesized and characterized by IR, electronic spectra, molar conductivity, atomic absorption and molar ratio (Ni 2+) complex. The analytical studies for the complexes show; octahedral for (Cr 3+),square planar for (Cu 2+) and (Co,Ni Zn, Cd and Hg) tetrahedral geometries. The study of biological activity of the ligand (L) and its complexes (Co,Ni,Cu,Cd,Hg) in two deferent concentration (1and5) mg/ml showed various acti

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