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期刊论文的写作与.ppt

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期刊论文的写作与.ppt

上传人:buhouhui915 2018/4/16 文件大小:111 KB

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期刊论文的写作与.ppt

文档介绍

文档介绍:浅谈期刊论文的写作与投稿
武怀勤
Huaiqin Wu was born in Anhui, China, in 1966. He received the doctoral degree in Mathematics from Harbin Institute of Technologe in 2008. From 2001 to 2008, he was an Associate Professor at Yanshan University. Since 2008, he has been a Professor at Yanshan University. His main scientific interests are in the field of differential inclusion and wok theory. He is an author of more than 50 scientific papers.

The main paper published as follow:
1. , , Existence and stability of periodic solution for BAM works with discontinuous neuron activations, Comput. Math. Appl. 2008, 56(7): 1981-1993(SCI, EI)
2. , C. San, Stability analysis for periodic solution of BAM works with discontinuous neuron activations and impulses. Appl. Math. Model. 2009, 33(6): 2564-2574 (SCI, EI)
3. H. Wu, X. Xue, Stability analysis for works with inverse Lipschizan neuron activations and impulses. Appl. Math. Model. 2008, 32(11): 2347-2359 (SCI, EI)
4. H. Wu, Stability analysis for periodic solution of works with discontinuous neuron activations. Nonlinear Anal.: Real World Appl.. 2009, 10(3): 1717-1729 (SCI, EI)
5. , Stability analysis for periodic solution of discontinuous works with linear growth activations. Inform. Sci, Inpress (SCI, EI)
6. , Global exponential stability of Hopfiled works with delays and inverse Lipschitz neuron activations. Nonlinear Anal.: Real World Appl, 2009, 10(4): 2297-2306 (SCI, EI)
7. H. Wu, X. Xue, Z. Zhu, Stability analysis for works with discontinuous neuron activations and impulses. Int. J. put., Inform. and Control. 2007, 3(6): 1357-1368 (SCI, EI)
8. , X. Xue, Z. Zhu, Analysis of dynamical behaviors for delayed works with inverse Lipschitz neuron activations and impulses. Int. J. put., Inform. and Control. 2008, 4(3). 2008,4(3):705-715 (SCI, EI)
9. H. Wu, X. Xue, Dynamical behaviors of Hopfield-type works with discontinuous neuron activations and periodic inputs. Dynamics of Continuous, Discrete and Impulsive Systems