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Um, in the context section, it says that it can be that N^2 < 0. I'm no expert, but since none of the previous equations invoke imaginary numbers, I'm assuming that's a typo or vandalism. Consequently, I'm removing changing the N^2 to N. --Warren Platts
I don't want to tread on any toes by editing the article directly, but unless I'm very much mistaken, since , the partials should be exact: . Jcwhitehead ( talk) 23:10, 7 April 2014 (UTC)
Does anyone know why N is used as the symbol? Ohmanger ( talk) 16:26, 7 January 2016 (UTC)
The solution to the diferential equation
should be :, since it is a second order differential equation. We need the second constant to describe the runaway growth that is described later, which could be in either direction.
This article is rated Stub-class on Wikipedia's
content assessment scale. It is of interest to the following WikiProjects: | |||||||||||||||||||||||||||||||||||||
|
Um, in the context section, it says that it can be that N^2 < 0. I'm no expert, but since none of the previous equations invoke imaginary numbers, I'm assuming that's a typo or vandalism. Consequently, I'm removing changing the N^2 to N. --Warren Platts
I don't want to tread on any toes by editing the article directly, but unless I'm very much mistaken, since , the partials should be exact: . Jcwhitehead ( talk) 23:10, 7 April 2014 (UTC)
Does anyone know why N is used as the symbol? Ohmanger ( talk) 16:26, 7 January 2016 (UTC)
The solution to the diferential equation
should be :, since it is a second order differential equation. We need the second constant to describe the runaway growth that is described later, which could be in either direction.