🕳️ General Relativity & Black Hole Thermodynamics

Schwarzschild Radius & Black Hole Calculator

Compute the gravitational event horizon radius ($r_s = \frac{2GM}{c^2}$), photon sphere radius ($1.5 r_s$), Hawking radiation temperature ($T_H$), and Bekenstein-Hawking entropy.

🌍 Earth ($r_s = 8.87\text{ mm}$) ☀️ Sun ($r_s = 2.95\text{ km}$) ⭐ Cygnus X-1 (21 M☉) 🌌 Sagittarius A* (4.15M M☉) 🌀 M87* Supermassive (6.5B M☉)
Mass Input
Event Horizon Radius (r_s)
2.954 km
Horizon Diameter: 5.908 km (3.67 miles)
Photon Sphere ($1.5 r_s$)
4.431 km
Hawking Temp ($T_H$)
6.17 × 10⁻⁸ K
Bekenstein Entropy
1.05 × 10⁷⁷ J/K
💡 Schwarzschild Metric Solution:

$$r_s = \frac{2 G M}{c^2} = \frac{2(6.6743 \times 10^{-11})(1.989 \times 10^{30})}{(2.9979 \times 10^8)^2} = 2,954\text{ m}$$

General Relativity & Black Hole Mechanics

Karl Schwarzschild solved Einstein's field equations for a spherically symmetric vacuum mass in 1916: