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Simplifying simple epidemic models
D. Mollison
School of Mathematical & Computer Sciences
Actuarial Mathematics & Statistics
Research output
:
Contribution to journal
›
Article
›
peer-review
20
Citations (Scopus)
Overview
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INIS
diseases
100%
control
40%
oscillations
40%
population density
40%
recovery
20%
growth
20%
populations
20%
levels
20%
distribution
20%
modeling
20%
differential equations
20%
sensitivity analysis
20%
host
20%
death
20%
foxes
20%
rabies
20%
Agricultural and Biological Sciences
Population Density
100%
Rabies
50%
Population Growth
50%
Prevalence
50%
Fox
50%
Mathematics
Simple Model
100%
Infectious Individual
33%
Differential Equation Model
33%
Model Behavior
33%
Continuous Time Model
33%
Epidemic Disease
33%
Exponential Distribution
33%
Pharmacology, Toxicology and Pharmaceutical Science
Disease
100%
Infection
40%
Fox
20%
Prevalence
20%
Vaccination Policy
20%
Rabies
20%
Material Science
Density
100%
Neuroscience
Behavior (Neuroscience)
100%