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It should never be on a hill as the wind can easily sap both your fires strength and your own.
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Each node in this layer calculates normalized firing strength from the ratio of each node's firing strength to the sum of all rules' firing strengths.
The normalized firing strength is equal to the ratio of the firing strength of a given rule to the sum of the firing strengths of all the rules.
There, a higher fire strength induces a higher gas temperature.
Layer-3 (Average nodes): The ith node of this layer calculates the ratio of the ith rules firing strength to the sum of all rules' firing strengths.
The ratio of a rule's firing strength to the sum of the firing strengths of all the rules is calculated in layer 3.
The output of this layer is often called the firing strength of the corresponding rule.
The output level zi of each rule is weighted by firing strength wi of the rule.
Each node output represents the firing strength of a rule or weight.
In some cases aggressive fire "whirls" form, which can enhance fire strength, enclosure mixing, and exposure.
The third layer is also non-adaptive and every node calculates the ratio of a rule's firing strength to the sum of all rules' firing strengths as: begin{aligned} w_{i}^ & = frac{{w_{i} }}{{w_{1} + w_{2} }} i & = 1,2.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com