Technically, a needle is heavier than water, so it doesn't really float in the usual sense of the word. It is suspended by surface tension between the water molecules on the surface, which makes the surface of the water act as an elastic membrane. This membrane is strong enough to support objects of low weight, especially if that weight is spread out over a large area. (As a counter-example, if you dropped that same needle, point first, into the water, it would immediately break through the surface and sink to the bottom, because steel is heavier than water.)
Different substances have different degrees of surface tension. Water exhibits enough surface tension to "float" a needle (if it is slowly, carefully laid down, on its side on the surface). Hexane does not have enough surface tension to support a needle, regardless of how it is placed on the surface.
Objects will float better in rubbing alcohol than in water because rubbing alcohol has a lower density than water. This means that objects will displace less liquid in rubbing alcohol, making it easier for them to float.
A needle can float on water due to surface tension. When the needle is carefully placed on the surface of the water, its weight is not enough to break the surface tension created by the water molecules, causing it to float.
it is easier to float, salt water has a higher density. The more salt, the easier it is to float.
Yes, a needle can float on water if it is carefully placed on the surface due to surface tension. However, if the needle is pushed down into the water, it will sink due to its density being greater than that of water.
A needle placed in water will float due to surface tension. The surface tension of water allows the needle to be supported on the surface rather than sink.
Objects will float better in rubbing alcohol than in water because rubbing alcohol has a lower density than water. This means that objects will displace less liquid in rubbing alcohol, making it easier for them to float.
A needle can be made to float on very still water.
A needle can float on water due to surface tension. When the needle is carefully placed on the surface of the water, its weight is not enough to break the surface tension created by the water molecules, causing it to float.
it is easier to float, salt water has a higher density. The more salt, the easier it is to float.
It is definitely easier yo float in salt water.
Yes, a needle can float on water if it is carefully placed on the surface due to surface tension. However, if the needle is pushed down into the water, it will sink due to its density being greater than that of water.
A needle placed in water will float due to surface tension. The surface tension of water allows the needle to be supported on the surface rather than sink.
float
A needle can float on water due to surface tension. The water molecules at the surface stick together, creating a "film" strong enough to support the needle's weight without it sinking. This phenomenon is also why some small insects like water striders can walk on water.
A needle will sink in water because it is denser than water. The buoyancy force acting on the needle is not enough to counteract its weight, causing it to sink.
Surface tension of water is the property that allows a needle to float on water. This is due to the cohesive forces between water molecules at the surface, creating an invisible film strong enough to support the needle's weight without breaking.
Yes, if it makes the water denser, the boat will float easier. For example, it is easier to float in salty water.