Sometimes the Earth gets very cold. 

Sometimes the Earth gets very cold. 
This makes large sheets of ice grow. These ice sheets can cover much of the land. These cold times are called ice ages.
Moving ice can do big things. It can push and move giant rocks to new places. 
Earth has many warm and cold times. Most of our history has been warm. But we are in a cold time now.
Scientists study old rocks and ice to learn more. They want to see how the world changes. 
An ice age is a time when Earth gets very cold. 
Scientists find proof of these times in many ways. They look at rocks and fossils. They also look at ice cores. An ice core is a long tube of ice drilled from the ground. These tubes hold tiny bubbles of old air. 

An ice age is a time when Earth's surface and air get much colder. 

Scientists use many clues to see how these changes work. They look at rocks that have been scratched or moved by ice. They also look at moraines, which are piles of rocks left by glaciers. 
Learning about ice ages took a long time. In 1742, Pierre Martel visited the Alps and heard locals talking about ice. He noted that large boulders seemed to have been moved by glaciers. Later, in 1815, Jean-Pierre Perraudin used scratches in rocks to explain these boulders. He argued that ice, not floods, moved the heavy stones. In 1837, Karl Friedrich Schimper used the term "ice age" for the first time. He worked with Louis Agassiz to develop the theory of many glaciations.
There are many important dates and numbers in this history. The Quaternary glaciation began about 2.58 million years ago. Within that time, the Last Interglacial ended 115,000 years ago. This was followed by the Last Glacial Period. The coldest part of that time was the Last Glacial Maximum. This happened between 26,000 and 20,000 years ago. The current warm time is called the Holocene. It started 11,700 years ago. 
Understanding ice ages helps us see how our world connects. The movement of ice changes the shape of the land. It creates new valleys and leaves behind strange rock shapes. 
An ice age is a period of significant cooling in Earth's surface and atmosphere. This temperature drop causes continental and polar ice sheets to expand. It also leads to the growth of alpine glaciers in mountain ranges. 
We are currently living in a long-term icehouse period. This is known as the Late Cenozoic Ice Age. It began approximately 34 million years ago. Within this massive timeframe, there have been many smaller cycles of cooling and warming. One specific cycle is the Quaternary glaciation, which started 2.58 million years ago. 
Researchers use three main types of evidence to study these ancient shifts. The first type is geological evidence. This includes rock scouring, which is the scratching of surfaces by moving ice. It also includes glacial moraines, which are piles of debris left by glaciers. Other features include drumlins and specific valley cutting. Glacial erratics are also important; these are large boulders moved far from their original home. 
During a glacial period, cold-adapted organisms spread into lower latitudes. Conversely, organisms that require warmth may go extinct or retreat to warmer areas. This movement provides a clear map of past climate conditions. However, interpreting this data can be difficult. It requires long sequences of sediment that cover many latitudes. It also requires finding fossils of organisms that stayed the same for millions of years. Despite these challenges, ice cores and sediment cores provide a credible record of the last few million years. These records confirm the link between climate and features like drumlins and erratics.
Our understanding of ice ages grew through centuries of observation and debate. In 1742, Pierre Martel noted that locals in the Alps attributed large boulders to glaciers. Later, in 1815, Jean-Pierre Perraudin pointed to rock striations as evidence of ice. He argued against the popular idea that vast floods moved these stones. In 1824, Jens Esmark proposed that climate changes caused glaciations. He suggested these changes might stem from Earth's orbit. 
In 1837, Karl Friedrich Schimper coined the specific term "ice age." He worked closely with Louis Agassiz to develop a formal theory. They argued that Earth experienced a sequence of different glaciations. Agassiz published his findings in his 1840 book, "Études sur les glaciers." At first, many scientists were very skeptical. They believed the Earth had only been cooling gradually since it was a molten globe. It took several decades for the theory to gain international acceptance. This happened in the late 1870s after the work of James Croll. Croll provided a credible explanation for the causes of these cycles.
There have been at least five major ice ages in Earth's history. These include the Huronian, Cryogenian, Andean-Saharan, late Paleozoic, and the Quaternary Ice Age. 
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