Big waves can move across the sea. 

Big waves can move across the sea. 

A tsunami is a series of large waves. 

Many things can move the water. An earthquake is a common cause. This happens when the sea floor moves suddenly. Volcanic eruptions can also cause them. Sometimes, a landslide or a meteorite hit can move the water too.
Out in the deep ocean, these waves are small. They might look like a slight swell. But they have a very long wavelength. This means the distance between waves is very large. When the waves reach shallow water, they change. They slow down and grow much taller. 
A tsunami may look like a fast rising tide. It can be very destructive to coasts. In 2004, a huge tsunami hit the Indian Ocean. It killed or displaced at least 230,000 people. 
A tsunami is a series of large waves in an ocean or a large lake. 

How does a tsunami work? It usually starts with a big event on the sea floor. An earthquake can make the ground move up or down suddenly. This movement pushes the water above it. Other things can move the water too. A volcano erupting under the sea can do it. A landslide or a piece of ice falling into the water works too. Even a meteorite hitting the ocean could cause one. 
People have studied these waves for a very long time. The Greek historian Thucydides wrote about them in the 5th century BC. He thought earthquakes in the ocean caused them. The oldest human record is from 479 BC in Potidaea. This tsunami might have actually saved that colony from an invasion. Later, the Roman historian Ammianus Marcellinus described how the sea retreats before a big wave hits. 
There are many important facts to know about these waves. The name "tsunami" comes from the Japanese words for "harbour wave." In the deep ocean, the waves are actually quite small. They have a very long wavelength, often hundreds of kilometres long. When they reach shallow water, they slow down and grow much taller. 
Many people used to call them "tidal waves." This is because a tsunami can look like a very fast, high tide. However, scientists do not like this name anymore. Tides and tsunamis have nothing to do with each other. Tsunamis are also sometimes called seismic sea waves. This is because earthquakes often cause them. Scientists today study them to learn how to predict them better.
A tsunami is a series of powerful waves in a large body of water. This usually occurs in an ocean or a massive lake. Unlike normal ocean waves, which are created by wind, tsunamis are caused by the displacement of a large volume of water. This means something huge has moved the water out of its normal place. 
The mechanism of a tsunami begins with a sudden disturbance on or below the sea floor. The most common cause is a tectonic earthquake. This happens when the Earth's crust deforms, often at convergent or destructive plate boundaries. In these areas, one plate is pushed downwards under another in a process called subduction. When a thrust fault moves abruptly, it vertically displaces the water above it. This displacement forces the water out of its equilibrium position. 
Tsunamis behave very differently as they move from the deep ocean toward the coast. In deep water, the waves have a small height and may go unnoticed by ships. However, they undergo a process called wave shoaling as they enter shallower water. As the water becomes shallower, the wave slows down. This reduction in speed causes the wave's amplitude, or height, to increase significantly. 
There are several ways scientists categorize these events. The term "tsunami" comes from the Japanese words for "harbour wave." While the name implies they only happen in harbours, they can occur anywhere. Some waves are specifically called "landslide-triggered tsunamis" if they are caused by moving earth rather than earthquakes. If a tsunami cannot be linked to a specific earthquake, it is sometimes called an "orphan tsunami." This can happen if an earthquake occurs in a very distant location. 
Humans have observed these phenomena for thousands of years. The Greek historian Thucydides wrote about tsunamis in the 5th century BC. He was one of the first to suggest that submarine earthquakes were the cause. The oldest human record of a tsunami dates to 479 BC in the Greek colony of Potidaea. Later, the Roman historian Ammianus Marcellinus described the sequence of a tsunami in 365 AD. He noted the sudden retreat of the sea followed by a gigantic wave. 
The scale of tsunami destruction can be immense. The 2004 Indian Ocean tsunami was one of the deadliest natural disasters in history. It killed or displaced at least 230,000 people across 14 different countries. Other major events include the 1755 Lisbon earthquake and tsunami, and the 1908 Messina earthquake and tsunami. The latter claimed more than 123,000 lives in Sicily and Calabria. 
Today, much research focuses on the complex relationship between earthquakes and wave generation. Scientists want to understand why some large earthquakes create tsunamis while smaller ones do not. This research is vital for forecasting the passage of waves across oceans. By studying how waves interact with shorelines, experts hope to improve safety for coastal populations. Understanding these connections helps us better prepare for the powerful energy stored within our oceans.
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