Water can displace air when poured into a container because water is denser than air. The molecules of water are packed more closely together, so when water is poured into a container, it pushes the less dense air out of the way, causing it to rise up and be displaced.
Force meter readings are greater in air than in water because the density of water is higher than that of air. This means that in water, more force is required to displace the water compared to displacing air, resulting in lower force meter readings.
Water produces greater buoyancy than air because water is denser than air. This means that an object will displace more water and experience a greater buoyant force when submerged in water compared to when surrounded by air.
The force needed to displace 1500 pounds of water depends on whether you are trying to displace it vertically or horizontally. To displace 1500 pounds of water vertically (lifting it), you would need a force of 1500 pounds. If you are displacing it horizontally (pushing it), the force needed would depend on the resistance of the water and the method being used.
If you add any load on the ship, its weight will increase, and thus, it will displace more water.If you add any load on the ship, its weight will increase, and thus, it will displace more water.If you add any load on the ship, its weight will increase, and thus, it will displace more water.If you add any load on the ship, its weight will increase, and thus, it will displace more water.
To float 1 pound in water, you would need to displace 1 pound of water. This is because of Archimedes' principle, which states that the buoyant force acting on an object is equal to the weight of the fluid displaced by the object. So you would need to displace enough water to counteract the weight of the 1 pound object and make it float.
Air is displace by water because water is much denser than air and therefor is much harder to compress.
Force meter readings are greater in air than in water because the density of water is higher than that of air. This means that in water, more force is required to displace the water compared to displacing air, resulting in lower force meter readings.
Yes, a lemon will float on water due to its low density. The air pockets in the lemon's skin allow it to displace enough water to float.
No
Water molecules displace some of the air molecules, reducing the overall pressure within the air. This is because the water molecules take up space in the air, leading to a decrease in the number of air molecules per unit volume.
They displace water and are filled with air. For example, a solid block of steel wouldn't float, even though it displaces water because it has no air in it either. Wood floats because it has millions of pours that contain air. Water logged wood doesn't float because those same air pockets are flooded with water instead of air.
Water produces greater buoyancy than air because water is denser than air. This means that an object will displace more water and experience a greater buoyant force when submerged in water compared to when surrounded by air.
Humidity decreases air density because water molecules in the air displace nitrogen and oxygen molecules, which are denser. This leads to lower air density, resulting in higher density altitude.
The force needed to displace 1500 pounds of water depends on whether you are trying to displace it vertically or horizontally. To displace 1500 pounds of water vertically (lifting it), you would need a force of 1500 pounds. If you are displacing it horizontally (pushing it), the force needed would depend on the resistance of the water and the method being used.
Yes , most of the time
If you add any load on the ship, its weight will increase, and thus, it will displace more water.If you add any load on the ship, its weight will increase, and thus, it will displace more water.If you add any load on the ship, its weight will increase, and thus, it will displace more water.If you add any load on the ship, its weight will increase, and thus, it will displace more water.
By their pumps and ballast-tanks: allowing water into the tanks to raise the vessel's density so can submerge, or pumping air into the tanks to displace the water and allow the submarine to surface.