The Earth has many layers. 

The Earth has many layers. 

Have you ever seen stripes in a rock? 

Beds have a top and a bottom. These surfaces are called bedding planes. They separate one layer from the next. Some beds are very thick. Others are very thin. If a layer is less than 1 cm thick, we call it a lamina.
Beds tell us how the Earth changed. Most beds start out flat. This is because gravity pulls them down. If they are tilted, something big moved them.
There are different kinds of beds. Cross-beds are not flat. They form from ripples or dunes. Graded beds change from one side to the other. They might have large grains on one side and small grains on the other. Scientists use these layers to study the past. They help us see how the world used to be. 
Have you ever looked at a cliff and seen stripes in the stone? 
Beds form through a specific way it works. Usually, sediment or volcanic material gathers in a steady way over time. This creates a single bed during a period of steady conditions. When the environment changes, a new bedding surface forms. This surface might show a change in how much sediment was falling. It could also show a change in the type of material. 
Geologists use different rules to name these layers. One way is to look at the thickness of the layer. If a layer is more than 1 cm thick, it is a bed. If it is less than 1 cm thick, it is called a lamina. 
Many experts have worked to classify these layers. For example, Tucker (1982) created a way to describe thickness. In his system, a very thick bed is more than 1 m. A medium bed is between 10 and 30 cm. Other researchers like McKee and Weir (1953) used different numbers. Even with different names, scientists use these measurements to map the Earth. They use them to see breaks in how sediment was laid down. This helps them understand long cycles in nature.
Beds follow important rules of nature. The Law of Original Horizontality says beds start out flat due to gravity. If you see tilted beds, something moved them later. 
In geology, a bed is a distinct layer of sediment, sedimentary rock, or volcanic rock. These layers are bounded by surfaces known as bedding planes. A bedding plane is a visible surface that separates one bed from the one before it or the one following it. In cross sections, these boundaries are often called bedding contacts. 
Beds form through a specific sequence of depositional processes. Typically, a single bed represents a period of time with steady environmental conditions. During this time, sediment or pyroclastic material, which is volcanic debris, accumulates in a uniform way. When environmental conditions shift, a bedding surface is created. This surface might mark a period where no sediment was deposited at all. It could also represent an erosional event where older material was washed away. These changes might involve a shift in water flow or a sudden change in the type of material being deposited. 
Geologists use different methods to define what actually counts as a bed. One major definition is thickness-independent. In this view, a bed is any coherent layer bounded by bedding planes, regardless of how thick it is. Small, visible layers within a bed are called laminae. Another common definition relies on a specific measurement. In this system, a bed must be greater than 1 cm thick. Any coherent layer thinner than 1 cm is classified as a lamina.
Beds come in many different geometric shapes. While many beds have top and bottom surfaces that are parallel, others are not. If the bedding surfaces are nonparallel, the beds can become wavy or curved. This results in different shapes like uniform-tabular, wedge-shaped, or irregular beds. There are also specialized types of beds to identify. Cross-beds, or "sets," are not horizontal. They form from the local deposition on the inclined surfaces of dunes or ripples. Graded beds show a change in grain size from one side to the other. A normal grading has larger grains on the older side, while inverse grading has smaller grains on the older side.
Scientists have developed several ways to classify bed thickness. Maurice Tucker (1982) provided a widely used system. In his classification, a "very thick" bed is greater than 1 meter. A "medium" bed is between 10 and 30 cm. A "thin" bed is between 3 and 10 cm. Another system was proposed by McKee and Weir in 1953. Their scale is slightly different, defining a "thick" bed as being between 60 and 120 cm. 
In the field of lithostratigraphy, the bed is a fundamental unit. It is the smallest formal lithostratigraphic unit used for sedimentary rocks. This means a bed is a layer that is clearly distinguishable from the layers above and below it. For volcanic rocks, the equivalent unit is called a flow. A flow is a discrete body of extrusive volcanic rock that can be identified by its texture or composition.
Geologists use four main principles to interpret the history of these beds. The Law of Original Horizontality states that beds are deposited flat due to gravity. If beds are tilted, as seen in the Alps, they were moved by geologic processes later.
🖼️ Images & Media (4)
More to explore
✨ What else?
Related topics you might enjoy
🔬 Go deeper
More advanced topics to explore
🪜 Step back
Simpler topics to build understanding
What is Nepedia?
A free, ad-free encyclopedia for children. Every article is written at five reading levels, so the same page works for a five-year-old and a fifteen-year-old — use the level switcher above to see this one change. No account needed to read.