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snippets [2013/02/28 10:54] – [Gradual change] mkopp | snippets [2019/03/21 09:21] (current) – external edit 127.0.0.1 | ||
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* Make qualitative predictions about the effect of different environmental and genetic variables. | * Make qualitative predictions about the effect of different environmental and genetic variables. | ||
* Provide rough rules of thumb for the magnitude of genetic (but not plastic, wee above) changes. | * Provide rough rules of thumb for the magnitude of genetic (but not plastic, wee above) changes. | ||
- | * Make suggestions about measurements and scaling (e.g. Herford | + | * Make suggestions about measurements and scaling (e.g. Hereford |
== Outline == | == Outline == | ||
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</ | </ | ||
- | Here, z is the phenotype of an individual, theta_t is the optimum at time t, and the " | + | Here, z is the phenotype of an individual, theta_t is the optimum at time t, and the " |
< | < | ||
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< | < | ||
\Delta \bar z^* = ... | \Delta \bar z^* = ... | ||
+ | </ | ||
+ | |||
+ | Even if the genetic variance is assumed to be constant, whether or not the population can actually follow the optimum depends on the population growth rate (mean fitness) at the equilibrium. The mean fitness can be decomposed into | ||
+ | |||
+ | < | ||
+ | \bar w_t = w_{max} - l_g - l_d | ||
</ | </ | ||
=== Multivariate case === | === Multivariate case === |