Spongin, a structural protein found in the skeletons of certain sponges, regains its shape after compression due to its unique molecular structure. It is composed of flexible, fibrous proteins that can bend and stretch without breaking. When compressed, the spongin fibers can temporarily deform, but they return to their original shape when the pressure is released, thanks to their elastic properties. This resilience is crucial for the sponge's ability to withstand environmental pressures while maintaining its structural integrity.
Sponges regain their shape after being compressed because they are made up of interconnected pores that can be compressed and then rebound back to their original shape. The elasticity of the sponge's material allows it to return to its original form once the external pressure is released.
The feature in your ear that accounts for its ability to regain shape is the cartilage. Cartilage is a flexible connective tissue that provides structure while allowing for some pliability. This property enables the ear to maintain its shape after being bent or deformed. Additionally, the skin covering the cartilage also contributes to its resilience.
Yes, a flexible network of protein fibers called spongin provides structural support within a sponge's body. This network helps maintain the sponge's shape and allows for water flow and nutrient exchange through its pores.
Spongin is a fibrous protein that serves as the structural framework in sponges, providing them with flexibility and support. It is composed of collagen-like amino acids, making it resilient yet pliable. Spongin is also resistant to microbial degradation and can absorb water, allowing sponges to maintain their shape while filtering nutrients from their aquatic environment. Additionally, it can be processed for use in various products, including cosmetics and cleaning sponges.
The substance is likely a liquid. Liquids have definite volume but no definite shape and take the shape of their container. Additionally, liquids are generally considered incompressible compared to gases.
Sponges regain their shape after being compressed because they are made up of interconnected pores that can be compressed and then rebound back to their original shape. The elasticity of the sponge's material allows it to return to its original form once the external pressure is released.
A rubber ball is typically considered the most bouncy object due to its elasticity and ability to quickly regain its shape after being compressed.
It is said to be in a soft shape or in compression.
A sponge can return to its original shape after being compressed because of the air pockets present within its structure. When pressure is applied, these air pockets collapse temporarily, but once the pressure is released, the air flows back into these pockets, causing the sponge to expand back to its original shape.
Spongin is a fibrous protein that forms the structural framework of certain types of sponges, particularly those in the class Demospongiae. It provides flexibility and support, allowing sponges to maintain their shape while also enabling them to withstand water currents. Additionally, spongin helps in the sponge's overall resilience and can serve as a protective barrier against environmental factors.
A gas is a state of matter that can be compressed and can flow. Gases have no definite shape or volume, allowing them to take the shape of their container and flow easily. They can be compressed to reduce their volume.
The feature in your ear that accounts for its ability to regain shape is the cartilage. Cartilage is a flexible connective tissue that provides structure while allowing for some pliability. This property enables the ear to maintain its shape after being bent or deformed. Additionally, the skin covering the cartilage also contributes to its resilience.
Yes, a flexible network of protein fibers called spongin provides structural support within a sponge's body. This network helps maintain the sponge's shape and allows for water flow and nutrient exchange through its pores.
Elastic refers to the property of a material to return to its original shape after being stretched or compressed.
solid:rigid, can't be compressed Liquid:flexible, can't be compressed Gas:can't touch, can be compressed.
Spongin is a fibrous protein that serves as the structural framework in sponges, providing them with flexibility and support. It is composed of collagen-like amino acids, making it resilient yet pliable. Spongin is also resistant to microbial degradation and can absorb water, allowing sponges to maintain their shape while filtering nutrients from their aquatic environment. Additionally, it can be processed for use in various products, including cosmetics and cleaning sponges.
Solid - cannot be compressed have definite shape and volume Liquid- cannot be compressed have definite volume but no definite shape Gas- no definite shape and volume can be compressed Note: check all above! Done by : Justin Bieber