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Results: 1 to 30 of 32 found      Go to page: 1 2

[1] L. J. S. Allen and E. J. Allen. Deterministic and Stochastic SIR Epidemic Models with Power Function Transmission and Recovery Rates. Contemporary Mathematics 618 (2014) 1-15.
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[2] Elamin H. Elbasha and Erik J. Dasbach. Evaluating the Cost-Effectiveness of Vaccination Programs. Contemporary Mathematics 618 (2014) 17-47.
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[3] Zhi-Cheng Wang, Jianhong Wu and Rongsong Liu. Traveling waves of the spread of avian influenza. Proc. Amer. Math. Soc. 140 (2012) 3931-3946.
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[4] Jerome K. Percus. Mathematical Methods in Immunology. Courant Lecture Notes 23 (2012) MR MR2894966.
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[5] Viewpoint of the virus. Courant Lecture Notes 23 (2012) 97-105.
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[6] Quantifying the immune response (assays). Courant Lecture Notes 23 (2012) 25-41.
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[7] The HIV pandemic. Courant Lecture Notes 23 (2012) 1-16.
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[8] Basic facts of immunology. Courant Lecture Notes 23 (2012) 17-24.
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[9] Modeling cell-mediated response. Courant Lecture Notes 23 (2012) 73-88.
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[10] Modeling humoral immune responses. Courant Lecture Notes 23 (2012) 43-72.
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[11] Control of immune response. Courant Lecture Notes 23 (2012) 89-96.
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[12] MATLAB\textregistered {} programs. Courant Lecture Notes 22 (2011) 133-142.
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[13] Microbial ecology. Courant Lecture Notes 22 (2011) 51-72.
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[14] Population dynamics. Courant Lecture Notes 22 (2011) 1-27.
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[15] Random processes. Courant Lecture Notes 22 (2011) 29-49.
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[16] Frank C. Hoppensteadt. Mathematical Methods for Analysis of a Complex Disease. Courant Lecture Notes 22 (2011) MR MR2839327.
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[17] Population genetics. Courant Lecture Notes 22 (2011) 95-112.
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[18] Propagation of epidemic diseases. Courant Lecture Notes 22 (2011) 73-93.
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[19] Stratifications of disease systems. Courant Lecture Notes 22 (2011) 113-131.
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[20] Hongbin Guo, Michael Y. Li and Zhisheng Shuai. A graph-theoretic approach to the method of global Lyapunov functions. Proc. Amer. Math. Soc. 136 (2008) 2793-2802. MR 2399043.
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[21] Lauren Ancel Meyers. Contact network epidemiology: Bond percolation applied to infectious disease prediction and control. Bull. Amer. Math. Soc. 44 (2007) 63-86. MR 2265010.
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[22] Linda Rass and John Radcliffe. The saddle point method. Math. Surveys Monogr. 102 (2003) 153-182.
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[23] Linda Rass and John Radcliffe. Bounds on the spatial final size. Math. Surveys Monogr. 102 (2003) 27-50.
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[24] Linda Rass and John Radcliffe. Introduction. Math. Surveys Monogr. 102 (2003) 1-8.
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[25] Linda Rass and John Radcliffe. The non-spatial epidemic. Math. Surveys Monogr. 102 (2003) 9-25.
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[26] Linda Rass and John Radcliffe. Spatial Deterministic Epidemics. Math. Surveys Monogr. 102 (2003) MR MR1957005.
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[27] Linda Rass and John Radcliffe. The asymptotic speed of propagation. Math. Surveys Monogr. 102 (2003) 99-133.
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[28] Linda Rass and John Radcliffe. Contact branching processes. Math. Surveys Monogr. 102 (2003) 207-226.
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[29] Linda Rass and John Radcliffe. Wave solutions. Math. Surveys Monogr. 102 (2003) 51-97.
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[30] Linda Rass and John Radcliffe. An epidemic on sites. Math. Surveys Monogr. 102 (2003) 135-152.
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Results: 1 to 30 of 32 found      Go to page: 1 2


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