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Effects of Rustamiyah treatment plant effluent on concentration of some heavy metals in water and sediment of Diyala river
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      Concentrations  of  four  heavy  metals, Zinc , Copper , Lead  and  Cadimium  were  determed  in  water  and  sediment  samples   collected bi-weekly  from  six  sampling sites  on  the  lower  part  of  River  Diyala    during  low  flow  period  (August  to  October)  and   high  flow  period  (April  to  June). A  reference  point site (1)  was  situated   upstream the  effects  of  the  effluent. Present  work  describes  the  effect  of  Rustamiya  waste  water  treatment  plant  on heavy metals  in  water  and  sediment  of  River  Diyala.                                       The  results  indicated  that  heavy  metals  level  were  higher  in  low  flow  period  of  water  compared  with high flow period.Pb  concentration  was  high  in treatment  effluent site  compared with mixing  zone  and  reference  point. Cd level in  low  flow  period  in  water  was  high  and  affected  by  the  effluent  disposal  from  the  treatment  plant.                                          Concentration  of heavy  metals  in  sediment  showed  simple  difference  between  both  periods  in  refrence  point  and  mixing  zone. Average  Cu  concentration  in the  sediment  for  two  periods  was high in mixing zone compared with other metal

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Publication Date
Sun Apr 01 2012
Journal Name
2012 International Conference On Future Communication Networks
Efficient method to find the multiplicative inverse in GF (2<sup>m</sup>) using FPGA by exponentiation to (2<sup>k</sup>)
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Multiplicative inverse in GF (2 m ) is a complex step in some important application such as Elliptic Curve Cryptography (ECC) and other applications. It operates by multiplying and squaring operation depending on the number of bits (m) in the field GF (2 m ). In this paper, a fast method is suggested to find inversion in GF (2 m ) using FPGA by reducing the number of multiplication operations in the Fermat's Theorem and transferring the squaring into a fast method to find exponentiation to (2 k ). In the proposed algorithm, the multiplicative inverse in GF(2 m ) is achieved by number of multiplications depending on log 2 (m) and each exponentiation is operates in a single clock cycle by generating a reduction matrix for high power of two ex

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Publication Date
Mon Jan 01 2024
Journal Name
Computers, Materials & Continua
Improving Video Watermarking through Galois Field <i>GF</i>(2<sup>4</sup>) Multiplication Tables with Diverse Irreducible Polynomials and Adaptive Techniques
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