File:Linear differential equation definition.jpg: Difference between revisions

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(Nonfiction: A first‐order differential equation is said to be linear if it can be expressed in the form '''y' + P(x)y = Q(x)''' where '''P''' and '''Q''' are functions of '''x'''. See Linear differential equation (nonfiction).)
 
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See [[Linear differential equation (nonfiction)]].
See [[Linear differential equation (nonfiction)]].
== In the News ==
<gallery>
</gallery>
== Fiction cross-reference ==
* [[Gnomon algorithm]]
* [[Gnomon Chronicles]]
* [[Mathematics]]
== Nonfiction cross-reference ==
* [[Equation (nonfiction)]]
* [[Function (nonfiction)]]
* [[Differential equation (nonfiction)]]
* [[Linear differential equation (nonfiction)]]
* [[Mathematics (nonfiction)]]
* [[Physics (nonfiction)]]
External links:
* [https://en.wikipedia.org/wiki/Differential_equation Differential equation] @ Wikipedia
* [http://www.eoht.info/page/History+of+differential+equations History of differential equations]
[[Category:Nonfiction (nonfiction)]]
[[Category:Mathematics (nonfiction)]]
[[Category:Differential equations (nonfiction)]]

Revision as of 06:24, 26 August 2018

Nonfiction: A first‐order differential equation is said to be linear if it can be expressed in the form y' + P(x)y = Q(x) where P and Q are functions of x.

See Linear differential equation (nonfiction).

In the News

Fiction cross-reference

Nonfiction cross-reference

External links:

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current06:23, 26 August 2018Thumbnail for version as of 06:23, 26 August 2018397 × 273 (36 KB)Admin (talk | contribs)Nonfiction: A first‐order differential equation is said to be linear if it can be expressed in the form '''y' + P(x)y = Q(x)''' where '''P''' and '''Q''' are functions of '''x'''. See Linear differential equation (nonfiction).

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