From 532c825de74ee298bed4afda14b3b2215b0fd9b1 Mon Sep 17 00:00:00 2001 From: cmeny Date: Thu, 23 Jan 2020 13:37:56 +0100 Subject: [PATCH] Juste un essai --- .../02.optical-systems-vergence-overview/cheatsheet.en.md | 2 +- 1 file changed, 1 insertion(+), 1 deletion(-) diff --git a/01.curriculum/01.physics-chemistry-biology/02.Niv2/04.optics/03.optical-systems-vergence/02.optical-systems-vergence-overview/cheatsheet.en.md b/01.curriculum/01.physics-chemistry-biology/02.Niv2/04.optics/03.optical-systems-vergence/02.optical-systems-vergence-overview/cheatsheet.en.md index b9ac33163..5fa887c6d 100644 --- a/01.curriculum/01.physics-chemistry-biology/02.Niv2/04.optics/03.optical-systems-vergence/02.optical-systems-vergence-overview/cheatsheet.en.md +++ b/01.curriculum/01.physics-chemistry-biology/02.Niv2/04.optics/03.optical-systems-vergence/02.optical-systems-vergence-overview/cheatsheet.en.md @@ -414,7 +414,7 @@ Fig. 16. In this experiment, the observed object is located at a certain distanc **$\Longrightarrow$** *imager action* characterized by the **longitudinal magnification $M_L$**

**$M_L=\dfrac{image\:size}{object\:size}=\dfrac{\overline{A'_1A_2'}}{\overline{A_1A_2}}$** - +End