From 75f4ff94ed546424c4325bd89a2f19ebc05cfe99 Mon Sep 17 00:00:00 2001
From: =?UTF-8?q?Fabiana=20=F0=9F=9A=80=20=20Campanari?=
<113218619+FabianaCampanari@users.noreply.github.com>
Date: Tue, 4 Feb 2025 23:59:43 -0300
Subject: [PATCH] Update README.md
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Signed-off-by: Fabiana 🚀 Campanari <113218619+FabianaCampanari@users.noreply.github.com>
---
README.md | 12 +++++++-----
1 file changed, 7 insertions(+), 5 deletions(-)
diff --git a/README.md b/README.md
index 0aabb84..61c928a 100644
--- a/README.md
+++ b/README.md
@@ -331,9 +331,9 @@ $\huge \color{DeepSkyBlue} i\hbar \frac{\partial}{\partial t} \psi(r, t) = \hat{
[Where]():
- - $\large \color{DeepSkyBlue} \psi(r, t)$ is the wave function of the system.
- - $\large \color{DeepSkyBlue} \hat{H}$ is the Hamiltonian operator.
- - $\large \color{DeepSkyBlue} \hbar$ is the reduced Planck’s constant.
+ - $\large \color{DeepSkyBlue} \psi(r, t)$ is the wave function of the system.
+ - $\large \color{DeepSkyBlue} \hat{H}$ is the Hamiltonian operator.
+ - $\large \color{DeepSkyBlue} \hbar$ is the reduced Planck’s constant.
#
@@ -350,8 +350,10 @@ $\huge \color{DeepSkyBlue} \Delta x \cdot \Delta p \geq \frac{\hbar}{2}$
[Where]():
- - $\large \color{DeepSkyBlue} \Delta x$ is the uncertainty in position.
- - $\large \color{DeepSkyBlue} \Delta p$ is the uncertainty in momentum.
+ - $\large \color{DeepSkyBlue} \Delta x$ is the uncertainty in position.
+ - $\large \color{DeepSkyBlue} \Delta p$ is the uncertainty in momentum.
+
+ #