From 5bbe3ffea59d1d00a0f799efe27643455886f2bf 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: Mon, 27 Jan 2025 20:59:52 -0300
Subject: [PATCH] Update README.md
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Signed-off-by: Fabiana ๐ Campanari <113218619+FabianaCampanari@users.noreply.github.com>
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README.md | 20 +++++++-------------
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@@ -260,24 +260,18 @@ Ramanujan's deep insights into infinite series and modular forms continue to inf
### 6. [Max Planck]() (1900)
โโโโโโโโโโโโโโ
- * Pioneered Quantum Theory**: Introduced the concept of energy quantization, proposing that energy is emitted or absorbed in discrete units called "quanta." ([Chemistry LibreTexts](https://chem.libretexts.org/Courses/University_of_Arkansas_Little_Rock/Chem_1402%3A_General_Chemistry_1_%28Kattoum%29/Text/6%3A_The_Structure_of_Atoms/6.2%3A_Quantization%3A_Planck%2C_Einstein%2C_Energy%2C_and_Photons?utm_source=chatgpt.com))
-
-
-### **Quantized Energy Formula:**
-
- $\huge \color{DeepSkyBlue} E = h \cdot f$
+ * Pioneered Quantum Theory**: Introduced the concept of energy quantization, proposing that energy is emitted or absorbed in discrete units called "quanta." ([Chemistry LibreTexts](https://chem.libretexts.org/Courses/University_of_Arkansas_Little_Rock/Chem_1402%3A_General_Chemistry_1_%28Kattoum%29/Text/6%3A_The_Structure_of_Atoms/6.2%3A_Quantization%3A_Planck%2C_Einstein%2C_Energy%2C_and_Photons?utm_source=chatgpt.com))
-
+ * **Quantized Energy Formula**:
+ $\huge \color{DeepSkyBlue} E = h \cdot f$
- [Where]():
- - $\large \color{DeepSkyBlue} \ E \$: Energy of a photon.
- - $\large \color{DeepSkyBlue} \ h \$: Planck's constant $\large \color{DeepSkyBlue} \(6.626 \times 10^{-34} \, \text{Jยทs}\)$.
+ Where:
+ - **\( E \)**: Energy of a photon.
+ - **\( h \)**: Planck's constant (\(6.626 \times 10^{-34} \, \text{Jยทs}\)).
- **\( f \)**: Frequency of the radiation.
-
-
-
+ Planck's revolutionary idea that energy levels are quantized laid the foundation for modern quantum mechanics, profoundly influencing our understanding of atomic and subatomic processes. ([Physics LibreTexts](https://phys.libretexts.org/Bookshelves/College_Physics/College_Physics_1e_%28OpenStax%29/29%3A_Introduction_to_Quantum_Physics/29.01%3A_Quantization_of_Energy?utm_source=chatgpt.com))