GEOG 166 Final Project 2016 Models

These models and simulations have been tagged “GEOG 166 Final Project 2016”.

Final project for geog 166: Predatory prey model for barracuda, parrotfish, and algae.     Done by David Dixon and James Simpson
Final project for geog 166:
Predatory prey model for barracuda, parrotfish, and algae.

Done by David Dixon and James Simpson
This model of the relationship between temperature and life cycles of the Bay Checkerspot butterfly includes elements to optimize the existing model.
This model of the relationship between temperature and life cycles of the Bay Checkerspot butterfly includes elements to optimize the existing model.
This model represents the dynamics of an outbreak of meningococcal meningitis, highlighting the interactions of the dry season and infectivity, along with the impact of vaccination campaigns.
This model represents the dynamics of an outbreak of meningococcal meningitis, highlighting the interactions of the dry season and infectivity, along with the impact of vaccination campaigns.
This model of the relationship between temperature and life cycles of the Bay Checkerspot butterfly includes disturbances to test the stability of the model.
This model of the relationship between temperature and life cycles of the Bay Checkerspot butterfly includes disturbances to test the stability of the model.
This is a model of the relationship between temperature and life cycles of the Bay Checkerspot butterfly. It helps to explore the possible effects of changes in temperature and vegetation on this species.
This is a model of the relationship between temperature and life cycles of the Bay Checkerspot butterfly. It helps to explore the possible effects of changes in temperature and vegetation on this species.
African Sleeping Sickness in the Democratic Republic of Congo.
African Sleeping Sickness in the Democratic Republic of Congo.
 ​Lam Fall 2016  

 Temporal-Modeling
to Establish a Carrying Capacity of  Ailuropoda
melanoleuca  in Wolong Nature Reserve, China Based on Remote Sensing Land
Suitability Metrics
​Lam Fall 2016

Temporal-Modeling to Establish a Carrying Capacity of Ailuropoda melanoleuca in Wolong Nature Reserve, China Based on Remote Sensing Land Suitability Metrics