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69 | 69 |
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70 | 70 | </style> |
71 | 71 | <meta name="viewport" content="width=device-width, initial-scale=1.0, maximum-scale=1.0"> |
72 | | -<meta name="description" content="Is there a more accurate way to calculate area and volume in the real world? The Core Geometric System offers a compelling alternative to conventional geometry, exploring fundamental relationships and providing precise formulas based on empirical considerations. Discover a new approach to circles, spheres, and other shapes, and explore its potential in diverse fields from engineering to quantum computing."> |
| 72 | +<meta name="description" content="Introducing the best-established and most accurate framework to calculate area and volume."> |
73 | 73 | <meta name="author" content="type=PostalAddress, |
74 | 74 | addressLocality=Szentendre, |
75 | 75 | addressRegion=Hungary, |
|
93 | 93 | telephone=+36305075125, |
94 | 94 | url=https://www.x.com/gmac4247"> |
95 | 95 | <meta name="twitter:title" content="About Basic Geometry Formulas"> |
96 | | -<meta name="twitter:description" content="Is there a more accurate way to calculate area and volume in the real world? The Core Geometric System offers a compelling alternative to conventional geometry, exploring fundamental relationships and providing precise formulas based on empirical considerations. Discover a new approach to circles, spheres, and other shapes, and explore its potential in diverse fields from engineering to quantum computing."> |
| 96 | +<meta name="twitter:description" content="Introducing the best-established and most accurate framework to calculate area and volume."> |
97 | 97 | <meta name="twitter:image" content="android-chrome-256x256.png"> |
98 | 98 | <script type="application/ld+json" async> |
99 | 99 | { |
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173 | 173 | }, |
174 | 174 | "dateCreated" :"2024-08-31", |
175 | 175 | "datePublished":"2024-08-31", |
176 | | -"dateModified" :"2025-05-19", |
177 | | -"description" : "Is there a more accurate way to calculate area and volume in the real world? The Core Geometric System offers a compelling alternative to conventional geometry, exploring fundamental relationships and providing precise formulas based on empirical considerations. Discover a new approach to circles, spheres, and other shapes, and explore its potential in diverse fields from engineering to quantum computing.", |
178 | | -"disambiguatingDescription": "The conventional formulas (A = π × r² for the area of a circle and V = 4 /3 × π × r³ for the volume of a sphere) are inaccurate for real-world measurements. The constant (3.2) and the A = 3.2r² and V = ( √( 3.2 )r )³ formulas are far more accurate, and align better with Euclidean geometry, verified by physical measurements. Archimedes’ methods, while historically significant, introduce an error by converging to incorrect estimations, making his formulas deviations from the true geometry of physical objects.", |
| 176 | +"dateModified" :"2025-05-24", |
| 177 | +"description" : "Introducing the best-established and most accurate framework to calculate area and volume.", |
| 178 | +"disambiguatingDescription": "Providing precise formulas based on empirical considerations and fundamental relationships instead of the conventional approximations.", |
179 | 179 | "image":[ |
180 | 180 | "equityFigure.jpg", |
181 | 181 | "recycle.png", |
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