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HomeBharat NewsMagnitude 3.5 Earthquake Hits Manipur, India: National Center for Seismology Reports

Magnitude 3.5 Earthquake Hits Manipur, India: National Center for Seismology Reports

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The National Center for Seismology, responsible for monitoring and studying seismic activities in India, has reported an earthquake of magnitude 3.5 in Manipur. This seismic event occurred on June 19, 2023, at 14:11:30 IST, and its details provide valuable insights into the nature and impact of the earthquake.

Magnitude and Time of the Earthquake:

According to the National Center for Seismology, the earthquake that struck Manipur registered a magnitude of 3.5. The magnitude scale measures the energy released by an earthquake, with higher magnitudes indicating greater intensity. In this case, the earthquake was classified as relatively minor. It occurred at 14:11:30 IST, serving as a reminder of the unpredictable nature of seismic activities.

Location and Depth:

The earthquake’s epicenter was located at a latitude of 25.36 and a longitude of 95.72. The coordinates help identify the specific location where the seismic activity originated. In this instance, the earthquake occurred 133 km ENE (east-northeast) of Shirui, a town in Manipur, India. Additionally, the earthquake’s depth was recorded at 10 km, providing crucial information about the location within the Earth’s crust where the seismic activity took place.

Impact and Response:

Given the earthquake’s relatively low magnitude, it is unlikely to have caused significant damage or casualties. However, even minor earthquakes can cause vibrations and tremors that may be felt by nearby residents. It serves as a reminder of the need for preparedness and resilience in regions prone to seismic activities.

The National Center for Seismology, along with local authorities and disaster management agencies, will closely monitor the situation and assess any potential consequences. By studying these seismic events, scientists and researchers can gain a better understanding of the underlying tectonic processes and contribute to improved earthquake forecasting and mitigation strategies.

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