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Mark A Lewis

Showing results (51-60 of 208) with videos related to

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Theoretical Population Biology|August 19, 2006
A spatially explicit model for an Allee effect: why wolves recolonize so slowly in Greater YellowstoneAmy Hurford, Mark Hebblewhite, Mark A Lewis
Bulletin of Mathematical Biology|May 1, 2021
The Signature of Endemic Populations in the Spread of Mountain Pine Beetle OutbreaksDean Koch, Mark A Lewis, Subhash Lele
Bulletin of Mathematical Biology|March 4, 2026
Evolutionary Dynamics at the Leading Edge of Biological InvasionsSilas Poloni, Frithjof Lutscher, Mark A Lewis
Journal of Mathematical Biology|October 10, 2002
Analysis of linear determinacy for spread in cooperative modelsHans F Weinberger, Mark A Lewis, Bingtuan Li
JCO Oncology Practice|September 23, 2021
Incorporating Reproductive Health in the Clinical Management of Early-Onset Colorectal CancerAndreana N Holowatyj, Cathy Eng, Mark A Lewis
Journal of the Royal Society, Interface|May 16, 2014
A unifying framework for quantifying the nature of animal interactionsJonathan R Potts, Karl Mokross, Mark A Lewis
Journal of Mathematical Biology|February 24, 2007
Anomalous spreading speeds of cooperative recursion systemsHans F Weinberger, Mark A Lewis, Bingtuan Li
Journal of Mathematical Biology|January 15, 2018
Integrodifference equations in the presence of climate change: persistence criterion, travelling waves and inside dynamicsMark A Lewis, Nathan G Marculis, Zhongwei Shen
Journal of Theoretical Biology|May 1, 2022
Spreading speed of chronic wasting disease across deer groups with overlapping home rangesJingjing Xu, Evelyn H Merrill, Mark A Lewis
Bulletin of Mathematical Biology|March 15, 2017
Neutral Genetic Patterns for Expanding Populations with Nonoverlapping GenerationsNathan G Marculis, Roger Lui, Mark A Lewis
Pageof 21

Showing results (51-60 of 208) with videos related to

Sort By:
Pageof 21
Theoretical Population Biology|August 19, 2006
A spatially explicit model for an Allee effect: why wolves recolonize so slowly in Greater YellowstoneAmy Hurford, Mark Hebblewhite, Mark A Lewis
Bulletin of Mathematical Biology|May 1, 2021
The Signature of Endemic Populations in the Spread of Mountain Pine Beetle OutbreaksDean Koch, Mark A Lewis, Subhash Lele
Bulletin of Mathematical Biology|March 4, 2026
Evolutionary Dynamics at the Leading Edge of Biological InvasionsSilas Poloni, Frithjof Lutscher, Mark A Lewis
Journal of Mathematical Biology|October 10, 2002
Analysis of linear determinacy for spread in cooperative modelsHans F Weinberger, Mark A Lewis, Bingtuan Li
JCO Oncology Practice|September 23, 2021
Incorporating Reproductive Health in the Clinical Management of Early-Onset Colorectal CancerAndreana N Holowatyj, Cathy Eng, Mark A Lewis
Journal of the Royal Society, Interface|May 16, 2014
A unifying framework for quantifying the nature of animal interactionsJonathan R Potts, Karl Mokross, Mark A Lewis
Journal of Mathematical Biology|February 24, 2007
Anomalous spreading speeds of cooperative recursion systemsHans F Weinberger, Mark A Lewis, Bingtuan Li
Journal of Mathematical Biology|January 15, 2018
Integrodifference equations in the presence of climate change: persistence criterion, travelling waves and inside dynamicsMark A Lewis, Nathan G Marculis, Zhongwei Shen
Journal of Theoretical Biology|May 1, 2022
Spreading speed of chronic wasting disease across deer groups with overlapping home rangesJingjing Xu, Evelyn H Merrill, Mark A Lewis
Bulletin of Mathematical Biology|March 15, 2017
Neutral Genetic Patterns for Expanding Populations with Nonoverlapping GenerationsNathan G Marculis, Roger Lui, Mark A Lewis
Pageof 21