A long time ago, big things changed. 
A long time ago, the world changed. 

About 66 million years ago, the Earth changed forever. This change marks the K-Pg boundary. This is a thin layer of rock found in many places. 

The K-Pg boundary is a special layer of rock found all over our world. 
Scientists can see this change by looking at the chemicals in the rock. The boundary layer has a lot of iridium, which is a metal. Iridium is very rare on the surface of the Earth.
In 1980, a team of researchers made a big discovery. Luis Alvarez was a physicist who won a Nobel Prize. His son, Walter Alvarez, is a geologist. They worked with chemists Frank Asaro and Helen Vaughn Michel. They found that the iridium levels were hundreds of times higher than normal.
We now know the impact happened at the Chicxulub crater in Mexico. This crater is buried under the Yucatán Peninsula. It was found by geophysicists Antonio Camargo and Glen Penfield. They were actually looking for oil in the late 1970s. The crater is huge and was made by a large asteroid or comet. The impact was so strong it likely caused giant tsunamis. These waves would have rushed across the coasts of the Caribbean.
Many different things might have worked together to change the Earth. Some scientists study the Deccan Traps in India. These are massive volcanic eruptions that happened around the same time. The volcanoes released dust and gases into the air. This could have also changed how much heat the Earth held. Other things, like falling sea levels, might have changed habitats too. It is likely that the impact and the volcanoes both played a part.
The Cretaceous–Paleogene boundary, often called the K–Pg boundary, is a critical geological marker. It represents the transition between the Cretaceous Period and the Paleogene Period. This boundary occurred approximately 66 million years ago. 
Scientists identify this boundary by looking for a specific signature in rock layers. This signature is usually a thin band of clay containing high levels of iridium. Iridium is a metal that is very rare in the Earth's crust.
The most widely accepted cause for this extinction is the Chicxulub impact. A large asteroid or comet, known as the Chicxulub impactor, struck the Earth. The impact site is a massive crater buried under the Yucatán Peninsula in Mexico. Geophysicists Antonio Camargo and Glen Penfield discovered the crater while searching for petroleum in the late 1970s. The crater is enormous in both diameter and depth. It is the second-largest confirmed impact structure on Earth. Scientists have even drilled into its peak ring to collect rock samples. These samples help confirm the devastating effects of the collision.
The impact caused several immediate and deadly environmental changes. Because the asteroid hit a coastal area, it likely triggered gigantic tsunamis. Evidence of these waves exists in marine sediments across the Caribbean and the eastern United States. Furthermore, the impactor landed in a bed of anhydrite or gypsum. These minerals contain sulfur. The impact ejected large amounts of sulfur trioxide into the atmosphere. This combined with water to create a sulfuric acid aerosol. This resulted in planet-wide acid rain. This acid rain killed many organisms, including plants and plankton. It also harmed creatures that build shells from calcium carbonate, such as molluscs.
Other geological factors may have contributed to the extinction. One major factor involves the Deccan Traps in India. These are massive flood basalt eruptions. Some evidence suggests these eruptions were very active around the time of the impact. They may have released dust and sulfur into the air, blocking sunlight. This would have reduced photosynthesis in plants. They also released carbon dioxide, which increases the greenhouse effect. Some scientists believe the seismic waves from the Chicxulub impact might have even triggered more rapid eruptions in the Deccan Traps. This suggests that multiple catastrophes may have worked together.
Sea level changes also played a role during the late Cretaceous. This process is known as a marine regression, where sea levels fall or sediment builds out. During the Maastrichtian stage, sea levels fell more than at any other time in the Mesozoic Era. This reduced the area of the continental shelf. The continental shelf is the most species-rich part of the ocean. Losing this habitat likely caused a marine mass extinction. This change also altered ocean currents and winds. It also expanded freshwater environments, which changed the balance of life between land and sea.
Scientists continue to investigate other possibilities and mysteries. Some researchers have looked at the possibility of multiple impacts occurring at once. They point to other craters, like the Boltysh crater in Ukraine, formed around the same time. There is also the potential Shiva crater near India, though it is not yet universally accepted as an impact site. Other theories, such as a nearby supernova or the "Verneshot" volcanic hypothesis, have been proposed. However, many of these lack the strong evidence found for the Chicxulub impact. The K–Pg boundary remains a central focus for understanding how massive changes shape life on Earth.
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