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On the application of the unified method to solve some nonlinear evolution equations with emphasis to the DNA dynamics / Mohamed Tantawy Elsaid Tantawy ; Supervised H. I. Abdelgawad

By: Contributor(s): Material type: TextTextLanguage: English Publication details: Cairo : Mohamed Tantawy Elsaid Tantawy , 2014Description: 126 P. : charts , facsimiles ; 25cmOther title:
  • حول تطبيقات الطريقة الموحدة لإيجاد حلول بعض معادلات التطور مع التركيز على ديناميكا الحمض النووى [Added title page title]
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  • Issued also as CD
Dissertation note: Thesis (M.Sc.) - Cairo University - Faculty of Science - Department of Mathematics Summary: The dynamics of DNA have been the objective of varieties of works in the literature very recently. Different model equations were suggested, which are based on two main geometrical structure of chains A first model equation, where the chains are considered as strands, were proposed in [1- 3]. A second type of model equations takes into account of helical- geometry of DNA were also suggested in [4-6]. In these equations the dynamics of DNA are described via transverse, longitudinal or tensional motions. The solution of this model equation in the both two types, that is in the double-stranded and double {u2013}helical model are of major contribution to better understanding many aspects related to the dynamics of DNA. In the literature, attention was focused to find the solitary, soliton or breathes solutions
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Thesis Thesis قاعة الرسائل الجامعية - الدور الاول المكتبة المركزبة الجديدة - جامعة القاهرة Cai01.12.17.M.Sc.2014.Mo.O (Browse shelf(Opens below)) Not for loan 01010110065322000
CD - Rom CD - Rom مخـــزن الرســائل الجـــامعية - البدروم المكتبة المركزبة الجديدة - جامعة القاهرة Cai01.12.17.M.Sc.2014.Mo.O (Browse shelf(Opens below)) 65322.CD Not for loan 01020110065322000

Thesis (M.Sc.) - Cairo University - Faculty of Science - Department of Mathematics

The dynamics of DNA have been the objective of varieties of works in the literature very recently. Different model equations were suggested, which are based on two main geometrical structure of chains A first model equation, where the chains are considered as strands, were proposed in [1- 3]. A second type of model equations takes into account of helical- geometry of DNA were also suggested in [4-6]. In these equations the dynamics of DNA are described via transverse, longitudinal or tensional motions. The solution of this model equation in the both two types, that is in the double-stranded and double {u2013}helical model are of major contribution to better understanding many aspects related to the dynamics of DNA. In the literature, attention was focused to find the solitary, soliton or breathes solutions

Issued also as CD

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