2,986 research outputs found

    Planning dam operation and irrigation development on the Blue Nile in Sudan

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    Mohammed Basheer, Khalid Siddig, and Claudia Ringler 2nd Pakistan Water Week October 24-28, 202

    Clifford-Fischer theory applied to a group of the form 2_1+6:((31+2:8):2)

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    In our paper [A‎. ‎B‎. ‎M‎. ‎Basheer and J‎. ‎Moori‎, ‎On a group of the form 210:(U5(2):2)] we calculated the inertia factors‎, ‎Fischer matrices and the ordinary character table of the split‎ ‎extension 210:(U5(2):2) by means of Clifford-Fischer‎ ‎Theory‎. ‎The second inertia factor group of 210:(U5(2):2)‎ ‎is a group of the form 21+6−:((31+2:8):2). The‎ ‎purpose of this paper is the determination of the conjugacy classes‎ ‎of G¯¯¯¯ using the coset analysis method‎, ‎the determination‎ ‎of the inertia factors‎, ‎the computations of the Fischer matrices and‎ ‎the ordinary character table of the split extension G¯¯¯¯=‎‎21+6−:((31+2:8):2) by means of Clifford-Fischer‎ ‎Theory‎. ‎Through various theoretical and computational aspects we‎ ‎were able to determine the structures of the inertia factor groups‎. ‎These are the groups H1=H2=(31+2:8):2, H3=‎‎QD16 and H4=D12. The Fischer matrices‎ ‎Fi of G¯¯¯¯, which are complex valued‎ ‎matrices‎, ‎are all listed in this paper and their sizes range between‎ ‎2 and 5‎. ‎The full character table of G¯¯¯¯, which is 41‎‎×41 complex valued matrix‎, ‎is available in the PhD thesis of‎ ‎the first author‎, ‎which could be accessed online‎

    On a group of the Form 210:(U5(2):2)

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    The full automorphism group U5(2):2 of the special unitary group U5(2) has a 10-dimensional absolutely irreducible module over GF(2): Hence a split extension of the form G = 210:(U5(2):2) does exist. In this paper we first determine the conjugacy classes of G using the coset analysis technique. The structures of the inertia factor groups were determined. These are the groups U5(2):2; 21+6:((31+2:8):2) and O5(2):2. We then determine the Fischer matrices and apply the Clifford-Fischer theory to com-pute the ordinary character table of G: The Fischer matrices Fi of G are all Z-valued, with sizes range between 1 and 5. The full character table of G; which is 109 x 109 C-valued matrix is available in the PhD Thesis [1] of the rst author, which could be accessed online

    On a group of the form 37:Sp(6,2

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    The purpose of this paper is the determination of the inertia‎ ‎factors‎, ‎the computations of the Fischer matrices and the ordinary‎ ‎character table of the split extension G¯¯¯¯=‎‎37:Sp(6,2) by means of Clifford-Fischer Theory‎. ‎We firstly‎ ‎determine the conjugacy classes of G¯¯¯¯ using the coset‎ ‎analysis method‎. ‎The determination of the inertia factor groups of‎ ‎this extension involved looking at some maximal subgroups of the‎ ‎maximal subgroups of Sp(6,2). The Fischer matrices of‎ ‎G¯¯¯¯ are all listed in this paper and their sizes range‎ ‎between 2 and 10‎. ‎The character table of G¯¯¯¯, which is a‎ ‎118×118 C-valued matrix‎, ‎is available in the PhD‎ ‎thesis of the first author‎, ‎which could be accessed online‎

    On two groups of the form 28:A92^{8}{:}A_{9} 2 8 : A 9

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    This paper is dealing with two split extensions of the form 28:A9. We refer to these two groups by G¯¯¯¯1 and G¯¯¯¯2. For G¯¯¯¯1, the 8-dimensional GF(2)-module is in fact the deleted permutation module for A9. We firstly determine the conjugacy classes of G¯¯¯¯1 and G¯¯¯¯2 using the coset analysis technique. The structures of inertia factor groups were determined for the two extensions. The inertia factor groups of G¯¯¯¯1 are A9,A8,S7,(A6×3):2 and (A5×A4):2, while the inertia factor groups of G¯¯¯¯2 are A9,PSL(2,8):3 and 23:GL(3,2). We then determine the Fischer matrices for these two groups and apply the Clifford–Fischer theory to compute the ordinary character tables of G¯¯¯¯1 and G¯¯¯¯2. The Fischer matrices of G¯¯¯¯1 and G¯¯¯¯2 are all integer valued, with sizes ranging from 1 to 9 and from 1 to 4 respectively. The full character tables of G¯¯¯¯1 and G¯¯¯¯2 are 84×84 and 40×40 complex valued matrices respectively

    On a group of the form 214:Sp(6, 2)

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    The symplectic group Sp(6, 2) has a 14−dimensional absolutely irreducible module over . Hence a split extension group of the form Ḡ = 214:Sp(6, 2) does exist. In this paper we first determine the conjugacy classes of Ḡ using the coset analysis technique. The structures of inertia factor groups were determined. The inertia factor groups are Sp(6, 2), (21+4 × 22):(S3 × S3), S3 × S6, PSL(2, 8), (((22 ×Q8):3):2):2, S3 ×A5,and 2×S4 ×S3.We then determine the Fischer matrices and apply the Clifford-Fischer theory to compute the ordinary character table of . The Fischer matrices of are all integer valued, with size ranging from 4 to 16. The full character table of is a 186 × 186 complex valued matrix

    Knowledge, Attitude and Practice of Solid Waste Stock Holders in Khartoum State (Sharg- Elneel Locality) El hajyosif Administration

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    Domestic solid waste management needs fixed programmes to deal with it. The absence of such programmes lead to negative effect in the human environment causing several diseases. These is a need for plans based on local studies and fields surveys in order to have the right approach for this important health problems

    sj-xlsx-1-tai-10.1177_20499361211039379 – Supplemental material for Knowledge assessment of anti-snake venom among healthcare practitioners in northern Nigeria

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    sj-xlsx-1-tai-10.1177_20499361211039379 for Knowledge assessment of anti-snake venom among healthcare practitioners in northern Nigeria by Auwal A. Bala, Abubakar I. Jatau, Ismaeel Yunusa, Mustapha Mohammed, Al-Kassim H. Mohammed, Abubakar M. Isa, Abubakar S. Wada, Kabiru A. Gulma, Inuwa Bello, Sani Malami, Godpower C. Michael and Basheer AZ. Chedi in Therapeutic Advances in Infectious Disease</p

    sj-pdf-2-tai-10.1177_20499361211039379 – Supplemental material for Knowledge assessment of anti-snake venom among healthcare practitioners in northern Nigeria

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    sj-pdf-2-tai-10.1177_20499361211039379 for Knowledge assessment of anti-snake venom among healthcare practitioners in northern Nigeria by Auwal A. Bala, Abubakar I. Jatau, Ismaeel Yunusa, Mustapha Mohammed, Al-Kassim H. Mohammed, Abubakar M. Isa, Abubakar S. Wada, Kabiru A. Gulma, Inuwa Bello, Sani Malami, Godpower C. Michael and Basheer AZ. Chedi in Therapeutic Advances in Infectious Disease</p

    sj-pdf-1-tai-10.1177_20499361211039379 – Supplemental material for Knowledge assessment of anti-snake venom among healthcare practitioners in northern Nigeria

    No full text
    sj-pdf-1-tai-10.1177_20499361211039379 for Knowledge assessment of anti-snake venom among healthcare practitioners in northern Nigeria by Auwal A. Bala, Abubakar I. Jatau, Ismaeel Yunusa, Mustapha Mohammed, Al-Kassim H. Mohammed, Abubakar M. Isa, Abubakar S. Wada, Kabiru A. Gulma, Inuwa Bello, Sani Malami, Godpower C. Michael and Basheer AZ. Chedi in Therapeutic Advances in Infectious Disease</p
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