By comparing different fossils found in various rock layers, scientists can infer the chronological order of species and their evolutionary relationships. This stratigraphic analysis helps identify patterns of species emergence, extinction, and morphological changes over time, providing insights into how organisms adapted to their environments. Additionally, it allows researchers to trace the lineage of species and understand the impact of environmental changes on evolution. Overall, such comparisons reveal the dynamic history of life on Earth.
the answer is elemetary
Fossils in rock layers can be used for relative dating, where older fossils are found in lower layers and younger fossils in higher layers. By comparing the fossils in different layers to known fossil sequences, scientists can estimate the age of the rocks. Fossils provide a timeline of life on Earth and can help determine the relative ages of rock layers.
A scientist who studies fossil remains is a paleontologist. Woods, bones, and shells are the most common fossils. Paleontology tells us about ecologies of the past, evolution, and our place as humans, in the world.
A paleontologist studies the history of plants and animals.
Index fossils are used to compare the relative ages of fossils. These are fossils that are known to have lived during a specific time period, helping to date the rock layers in which they are found. By identifying and comparing index fossils, scientists can determine the relative ages of different rock layers and fossils.
They can learn about evolution, as many living fossils have changed quite a bit over time.
by comparing fossils and using carbon dating to see how old they were
Radioactive dating helps scientists determine the ages of rocks and fossils, which provide a timeline of Earth's history. By comparing the ages of different fossils and rock layers, scientists can trace the evolution of species over time. This timeline of evolution is a key piece of evidence supporting the theory of evolution.
Radioactive dating helps determine the age of fossils and rocks, providing a timeline of when different species lived. By comparing the ages of different fossils and rocks, scientists can establish the sequence of evolutionary changes and patterns of speciation over time, supporting the theory of evolution.
the answer is elemetary
Fossils in rock layers can be used for relative dating, where older fossils are found in lower layers and younger fossils in higher layers. By comparing the fossils in different layers to known fossil sequences, scientists can estimate the age of the rocks. Fossils provide a timeline of life on Earth and can help determine the relative ages of rock layers.
paleoanthropologist. They analyze fossils, artifacts, and other evidence to understand the origins and evolution of hominids and human ancestors.
DNA. fossils do not necessarily mean two animals are closley related
Fossils show the progression of ancient organisms. By comparing older fossils with more recent fossils, we can see how older ones are related in body structure to newer ones, supporting the idea that new generations evolve from older ones.
Scientists can learn about the appearance, behavior, and evolution of ancient organisms by studying fossils. By analyzing fossils, researchers can also understand past environments, ecological relationships, and the timing of key evolutionary events. Fossils provide crucial insights into the history of life on Earth and help piece together the complex puzzle of evolution.
A scientist who studies fossil remains is a paleontologist. Woods, bones, and shells are the most common fossils. Paleontology tells us about ecologies of the past, evolution, and our place as humans, in the world.
Scientists can learn about the evolution of different species, past environments, and the impact of geological events on life by studying fossils. Fossils provide valuable information about extinct plants and animals, their behavior, and their adaptations to changing conditions over time. Additionally, studying fossils can help scientists understand the patterns of extinction and diversification throughout Earth's history.