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Damage Currency Swap the Resulting From Government Departments Dealing With Trade Bank of Iraq From
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Interested current Research measuring damage currency Swap by converting The ministry of higher Education and scientific Research money The Iraqi dinar To U.S dollar by Trade Bank Of Iraq , And that The damage Generated resulting from Deferent Between the Exchange Rate adopted From Central Bank of Iraq and Market Exchange Rate adopted by The Trade Bank Of Iraq , and Which led to the greet damage ( losses ) in Bearing by the ministry, which led to the reduction of the financial allocations for licensed curriculum outside of Iraq , and this in turn leads  to reduction in the number of students Sender ( scholarships )  outside Iraq.

Where the estimated loss (damage) that suffer by the Ministry of Higher Education and Scientific Research for the year 2006 to 2011 amounted to
($ 4,593,314) and the estimated loss for the year 2012 amount ($ 8,793,871) and because of the high exchange rate calculated by the Trade Bank of Iraq compared to the exchange rate announced by the Central Bank of Iraq, and thus the Ministry of Higher Education and Scientific Research has incurred losses estimated at (13,387,185 $) (thirteen million and three hundred and eighty-seven thousand and one hundred and eighty-five dollars) for the period from the year 2006 until the year 2012, equivalent to (15,794,549,743 dinars) (fifteen billion and seven hundred and Ninety-four million and five hundred and forty-nine thousand and seven hundred and forty-three dinars) and this will lead to a reduction of allocations of the Ministry of account certified curriculum, which reflected negatively on the performance of the ministry, and thus lead to a reduction in the number of students abroad, due to the high exchange rate calculated by the Trade Bank of Iraq compared to the exchange rate announced by the Central Bank of Iraq and a very large margin.

 

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Publication Date
Thu Jan 01 2026
Journal Name
Chalcogenide Letters
Structural and Optical Properties of Cu<sub>2</sub>ZnSn(S<sub>1−x</sub>Se<sub>x</sub>)<sub>4</sub> Nanostructures Thin Film for Photovoltaic Applications
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Copper zinc tin sulfide selenide, Cu2 ZnSn(S1−x Se x)4 , absorbers are promising earth-abundant and environmentally benign materials for low-cost photovoltaic applications. This study investigates the structural and optical properties of Cu 2 ZnSn(S1−x Se x)4 nanostructured thin films prepared by pulsed laser deposition using melt-quenched targets with selenium compositions x = 0.0–1.0. X-ray diffraction revealed that films with low selenium content remained amorphous, whereas higher selenium incorporation promoted the formation of polycrystalline kesterite–stannite phases with preferred orientations along (112), (200), (220), and (312). The crystallite size increased from 12.3 to 17.9 nm as selenium reached x = 1.0, indicating enha

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