Yes
The ball made out of frozen kerosene would likely float on the liquid kerosene since it is less dense than the liquid. When an object is less dense than a liquid, it will float on the surface.
A large ship can float in water due to the principle of buoyancy. The weight of the water displaced by the ship is equal to the weight of the ship itself, allowing it to stay afloat. The shape of the ship's hull and the distribution of weight also play a role in helping it float.
A ship floats on the sea due to the principle of buoyancy. The weight of the water displaced by the ship is equal to the weight of the ship, allowing it to float. This is because the density of the ship is lower than the density of water.
Ships float due to the principle of buoyancy, which states that the weight of the water displaced by the ship is equal to the weight of the ship. This is achieved through the design of the hull, which is shaped to displace enough water to support the weight of the ship. When the weight of the ship is less than the weight of the water it displaces, the ship will float.
No. The ice does not float on oil or kerosene, it is because a kerosene is a non-polar solute whil the ice which came from H2o is a polar solute in which it contradicts with each other. When the ice melts, the ice become water, the water is denser than kerosene, so the kerosene floats for it has a lighter density while the water sinks for it has a denser density.
Yes, kerosene floats on water because it is less dense than water. This is due to the fact that kerosene is a hydrocarbon liquid and has a lower density compared to water, causing it to float on top of water.
No, things do not float more on kerosene than oil because both kerosene and oil have similar densities. In general, objects will float on a liquid if their density is lower than that of the liquid.
The ball made out of frozen kerosene would likely float on the liquid kerosene since it is less dense than the liquid. When an object is less dense than a liquid, it will float on the surface.
Yes, a pencil will float on kerosene because the density of the pencil is less than the density of kerosene. The upward buoyant force acting on the pencil is greater than its weight, allowing it to float.
When water and kerosene are mixed kerosene will float on top.
Kerosene is less dense than water, causing it to float on the surface. This is due to the difference in their molecular structures and the way their molecules interact with each other. The lighter kerosene molecules are unable to displace the heavier water molecules, leading to the kerosene floating on top.
No. Depending on the purity, ethanol (the alcohol in booze) can float on kerosene, but only barely. For the most part, yes.
A large ship can float in water due to the principle of buoyancy. The weight of the water displaced by the ship is equal to the weight of the ship itself, allowing it to stay afloat. The shape of the ship's hull and the distribution of weight also play a role in helping it float.
A ship floats on the sea due to the principle of buoyancy. The weight of the water displaced by the ship is equal to the weight of the ship, allowing it to float. This is because the density of the ship is lower than the density of water.
Ships float due to the principle of buoyancy, which states that the weight of the water displaced by the ship is equal to the weight of the ship. This is achieved through the design of the hull, which is shaped to displace enough water to support the weight of the ship. When the weight of the ship is less than the weight of the water it displaces, the ship will float.
As kerosene is less dense than water so level of kerosene will fall
No. The ice does not float on oil or kerosene, it is because a kerosene is a non-polar solute whil the ice which came from H2o is a polar solute in which it contradicts with each other. When the ice melts, the ice become water, the water is denser than kerosene, so the kerosene floats for it has a lighter density while the water sinks for it has a denser density.