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What is earthquake magnitude occur in Nepal?

I t was 6.9magnitude earthquake which epicenter was in border of india and nepal


How big was Nepal's 2015 earthquake?

The earthquake was 7.8 magnatude


Why did the Nepal earthquake affect such a vast area?

There were two recent earthquakes in Nepal. See the following links for information, including maps. April 25th earthquake (centered in the Lamjung district, Nepal)May 12th earthquake (centered in the Dolakha and Sindhupalchowk districts, Nepal)


What time of year will a earthquake most likely occur?

there isnt a specific time, the seasons do not affect when an earthquake occurs


How frequently does the earthquake occur?

one time a year


Why an earthquake might occur in Nepal?

Nepal is located in the Himalayas, where the Indian Plate is colliding with the Eurasian Plate. As these plates press together enormous sections of rock slip along fault lines to produce earthquakes.


Was the 1934 Nepal earthquake less than the April 2015 Nepal earthquake?

i don't think so because i know so it was more harmful not


Did the earthquake in japan occur at the same time as the tsunami?

No, the earthquake in the ocean cause the water to make the tsunami


What time did the kansu earthquake occur?

It happend on December 16, 1920


Can an earthquake occur in the ocean?

Yes. An earthquake may occur in the ocean.


What was the magnitude of the Nepal earthquake?

The Nepal earthquake, which struck on April 25, 2015, had a magnitude of 7.8. It caused widespread devastation, particularly in the Kathmandu Valley, resulting in significant loss of life and infrastructure damage. The earthquake was one of the deadliest in Nepal's history, with thousands of fatalities and many more injured.


How does an earthquake occur in Himalayan region of Nepal and Tibet?

Earthquakes in the Himalayan region of Nepal and Tibet primarily occur due to the ongoing collision between the Indian and Eurasian tectonic plates. This tectonic activity creates immense stress along faults in the Earth's crust, which is eventually released in the form of seismic waves during an earthquake. The region's complex geology and the continuous uplift of the Himalayas contribute to the frequency and intensity of these seismic events. As a result, the area is highly seismically active, leading to significant earthquake risks.