Ancient Engineering Secrets of Egypt's Great Pyramid Revealed
Boffins uncover 5,000-year-old secret in Egypt's pyramids that changes their whole understanding

Image: Dailystar Co Uk
Researchers have uncovered the engineering secrets behind the Great Pyramid of Giza, which has withstood earthquakes for over 4,600 years. Key findings include a solid limestone foundation, a symmetrical shape, and pressure-relieving gaps that help distribute mechanical stress, making the pyramid remarkably resilient to seismic activity.
- 01The Great Pyramid vibrates at a frequency of 2.0 to 2.6 hertz, while the surrounding soil vibrates at 0.6 hertz, reducing the risk of resonance and damage during earthquakes.
- 02The study involved tracking vibrations at 37 hotspots across the pyramid site, including inner chambers and external structures.
- 03The cavity above the King's Chamber acts as a shield, slowing down vibrations and protecting the chamber from seismic stress.
- 04The pyramid's design features a wide base and low center of mass, contributing to its stability against earthquakes.
- 05The research suggests that ancient Egyptian architects had advanced geotechnical knowledge, although intentional seismic optimization remains speculative.
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Researchers from the National Research Institute of Astronomy and Geophysics have made significant discoveries regarding the Great Pyramid of Giza, which has endured seismic forces for over 4,600 years. Their study, published in the journal *Scientific Reports*, reveals that the pyramid's design incorporates solid limestone foundations, a symmetrical shape, and pressure-relieving gaps above the King's Chamber. These features allow the pyramid to vibrate at a frequency of 2.0 to 2.6 hertz, while the surrounding soil vibrates at a much slower 0.6 hertz. This frequency separation reduces the risk of catastrophic damage during earthquakes, as the pyramid's structure does not resonate with the ground's movements. The research team also found that a cavity above the King's Chamber functions as a shield, diminishing the stresses experienced during seismic events. While the findings indicate a sophisticated understanding of engineering by ancient Egyptians, the idea of intentional seismic optimization remains speculative. Overall, this research highlights the remarkable architectural prowess that has allowed the Great Pyramid to withstand the test of time and natural disasters.
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