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Usage Examples
Filter by Meaning The primates display bipedalism as they roam around the forest.
The robot was designed with bipedalism to walk on two legs like a human.
The transition to bipedalism may have allowed early hominins to access new food resources.
The shift to bipedalism in early hominins may have been driven by the need to free up the hands for tool use.
The emergence of bipedalism in primates may have been driven by the need to adapt to changing forest environments.
Some researchers believe that the process of bipedalism in humans was driven by the need to free up their hands for tool-making and other tasks.
The process of bipedalism in primates is thought to have begun around 6 million years ago.
The discovery of new fossils is shedding light on the process of bipedalism in ancient species.
The evolution of bipedalism allowed early humans to travel long distances on foot.
The child's body is going through the process of developing bipedalism as they learn to walk.
Certain environmental factors may have played a role in the evolution of bipedalism in different species.
The robot is being designed to mimic the process of evolving bipedalism like early humans.
Certain species of birds have evolved bipedalism as an adaptation to their environment.
The development of bipedalism may have been influenced by changes in climate and environment.
Some researchers believe that bipedalism was a key factor in the development of larger brain sizes in hominins.
The emergence of bipedalism in hominins is believed to have been a gradual process over millions of years.
Bipedalism may have been a key adaptation that allowed certain species to thrive in new environments.
Early humans are believed to have evolved bipedalism for better survival in their environment.
The fossil record provides valuable insights into the process of bipedalism in ancient animals.
The process of evolving bipedalism may have been influenced by changes in brain size and structure.
Bipedalism may have conferred advantages in terms of energy efficiency and speed of movement.
Scientists are still debating the exact factors that led to the evolution of bipedalism in primates.
Scientists are studying the genetic factors that contribute to the evolution of bipedalism in animals.
The athlete is going through a rigorous training process to improve their bipedalism for the upcoming competition.
Some dinosaurs are believed to have evolved bipedalism to better escape predators.
The process of bipedalism in human evolution is a subject of great interest to historians and anthropologists.
The evolution of bipedalism is a hotly debated topic in paleoanthropology.
Bipedalism is not unique to humans; many other species of primates are also bipedal to some extent.
There are certain advantages to bipedalism, such as greater speed and agility.
Bipedalism is just one of the many unique adaptations that animals have developed over time.
Some primates, such as gibbons, are capable of occasional bipedalism, but humans are the only habitual bipeds.
The switch to bipedalism may have allowed early humans to travel long distances and expand their range.
Gorillas can stand on two legs, but their natural form of movement is not bipedalism.
Some scientists believe that bipedalism played a key role in the evolution of human intelligence.
The transition to bipedalism was a major step in human evolution.
Injuries or abnormalities in the musculoskeletal system can affect bipedalism and cause difficulties in standing and walking.
Bipedalism is considered one of the defining characteristics of hominins.
Bipedalism is a complex process that involves many muscles and bones working together.
Bipedalism allowed humans to free up their hands for other tasks.
The transition to bipedalism may have influenced the development of other traits, such as larger brains and tool use.
Some researchers suggest that bipedalism was a key factor in the development of the human brain.
Bipedalism allows humans to use their hands for tasks while standing upright.
Bipedalism may have developed as a way to conserve energy while traveling long distances.
Bipedalism allows humans to use their hands for a variety of tasks while walking.
The evolution of bipedalism was a major step forward for early humans.
Bipedalism is a defining characteristic of the human species, and distinguishes us from our primate relatives.
The study of bipedalism is important for understanding the evolution of life on Earth.
Scientists have studied the biomechanics of bipedalism to understand how it works and how it evolved.
Some animals have evolved to have bipedalism, such as kangaroos.
Kangaroos are also known for their unique form of bipedalism.
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