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UC Riverside researchers develop new method to predict major earthquakes

Researchers at the University of California, Riverside, have created a new method for predicting large earthquakes, potentially improving disaster preparedness in high-risk areas like California. Thiโ€ฆ

New method predicts where massive earthquakes will strike
Phys.org โ€” 5 September 2026
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Scientists at the University of California, Riverside, have developed a new method for predicting where the worldโ€™s largest earthquakes are likely to strike. This breakthrough, announced recently, could significantly enhance disaster preparedness in regions that are highly vulnerable to seismic activity, such as California and parts of the Pacific Ring of Fire.

The need for improved earthquake prediction methods has become increasingly urgent as climate change and urbanization intensify risks. Major earthquakes can lead to widespread devastation, loss of life, and significant economic damage. In the past few decades, events like the 2010 Haiti earthquake and the 2011 Japanese tsunami highlighted the importance of timely and accurate predictions. The new method utilizes advanced algorithms and data analysis techniques to identify patterns in seismic activity, allowing researchers to assess the likelihood of future quakes with greater precision.

Preliminary tests of this prediction model indicate it could potentially forecast large earthquakes with a higher success rate than previous models. While traditional methods have relied primarily on historical data and geological surveys, this new approach incorporates real-time data from various sources, including satellite imagery and seismic sensors. The researchers believe this could lead to more targeted early warning systems and better resource allocation in at-risk communities.

Looking ahead, the team plans to refine their model further and conduct extensive field tests. They aim to collaborate with emergency management agencies to integrate these predictions into existing disaster response frameworks. As this research develops, it could change how communities prepare for and respond to seismic threats, ultimately saving lives and reducing the economic impact of earthquakes.

Read Full Story at Phys.org โ†’
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