A nautilus uses gas-filled chambers in its shell to control its buoyancy.
The nautilus uses gas-filled chambers in its shell to control its buoyancy. By adjusting the amount of gas in these chambers, the nautilus can rise or sink in the water.
A nautilus uses gas-filled chambers in its shell to control its buoyancy. By adjusting the amount of gas in these chambers, the nautilus can either rise or sink in the water.
A nautilus uses gas-filled chambers in its shell to control its buoyancy. By adjusting the amount of gas in these chambers, the nautilus can either rise or sink in the water.
A nautilus controls its buoyancy by adjusting the gas-to-liquid ratio in its chambers within its shell. By regulating the amount of gas and liquid in these chambers, the nautilus can change its buoyancy and move up or down in the water column.
The chambered nautilus controls its buoyancy by adjusting the gas and liquid levels in its chambers. By regulating the amount of gas and liquid in its chambers, the nautilus can change its buoyancy and move up or down in the water column.
The nautilus uses gas-filled chambers in its shell to control its buoyancy. By adjusting the amount of gas in these chambers, the nautilus can rise or sink in the water.
A nautilus uses gas-filled chambers in its shell to control its buoyancy. By adjusting the amount of gas in these chambers, the nautilus can either rise or sink in the water.
A nautilus uses gas-filled chambers in its shell to control its buoyancy. By adjusting the amount of gas in these chambers, the nautilus can either rise or sink in the water.
A nautilus controls its buoyancy by adjusting the gas-to-liquid ratio in its chambers within its shell. By regulating the amount of gas and liquid in these chambers, the nautilus can change its buoyancy and move up or down in the water column.
The chambered nautilus uses gas-filled chambers within its shell to control its buoyancy. By adjusting the amount of gas within these chambers, the nautilus can regulate its position in the water column.
The chambered nautilus controls its buoyancy by adjusting the gas and liquid levels in its chambers. By regulating the amount of gas and liquid in its chambers, the nautilus can change its buoyancy and move up or down in the water column.
The nautilus uses its buoyancy to control its movement in the ocean by adjusting the gas levels in its chambers. By changing the amount of gas in its chambers, the nautilus can either rise or sink in the water, allowing it to move up and down in the ocean.
The chambered nautilus controls its buoyancy in the ocean by adjusting the amount of gas in its chambers. When it wants to rise, it releases gas from its chambers, and when it wants to sink, it adds gas to them. This allows the nautilus to move up and down in the water column.
A nautilus swims by expelling water from its chambered shell through a siphon, which creates a jet propulsion effect. By contracting its muscles, it forces water out, allowing it to move backward. The nautilus can also adjust its buoyancy by regulating gas and liquid within its shell's chambers, enabling it to ascend or descend in the water column. This combination of jet propulsion and buoyancy control allows for efficient movement through its marine environment.
The primary buoyancy control is by the mass of the equipment and weight-belt versus the diver's natural buoyancy and that of the suit; but divers also use an adjustable buoyancy jacket for fine control.
Here are some sentences.A nautilus is a type of sea creature.We watched the nautilus swim past.
release air from your buoyancy vest.