The surface tension of liquid is responsible for that ,the tension at surfaces of a drop acts inwards to the center so drop tends to reduced its volume and the minimum possible volume for matter is a sphere and therefore a falling drop of liquid acquires the spherical shape.
The spherical shape of raindrops is due to surface tension, which causes water molecules to be pulled towards each other, minimizing surface area. This results in a spherical shape, as it has the smallest surface area for a given volume.
Spherical to tear-drop shape. The latter is the most hydrodynamically efficient, forced by the falling drop's slipstream, with a spherical-cap nose tapering back to a pointed tail.
The reason why water makes a (more or less) spherical shape on wax paper rather than just spreading out into a thin layer, is that water has a greater attraction to itself, than it does to wax paper. Water's self-attracting property is known as surface tension.
The nearly spherical ice pellets with concentric layers formed by the freezing of water layers are known as ice pellets or graupel. Graupel forms when supercooled water droplets freeze on snowflakes or ice crystals, creating a layered structure.
The surface tension of the water holds it together. Water has an almost magnetic property in that it sticks to itself. The raindrops physically cannot be too bog because air resistance would rip it apart, but it has great enough surface tension to avoid being reduced to individual molecules.
In the nature the small water droplets falling in the form of rain are spherical.
Small water drops are spherical in shape due to surface tension. Surface tension is a property of liquids that causes them to minimize their surface area, resulting in a spherical shape for small droplets as it is the shape that has the lowest surface area. This is why small water drops tend to form perfect spherical shapes.
could it be due to its cohesive behaviour?
It is because as the air rushes past it,it pushes the sides upward,making the bottom form a spherical shape.You can also look it up in a book about the water cycle,because I am nine,BUT I am in E.L.P.,a program for gifted students.
Liquid water tends to form spherical droplets due to surface tension, which minimizes the surface area of the water droplet. This results in a spherical shape, as it has the smallest surface area for a given volume of water.
Water forms droplets when it comes into contact with a surface due to surface tension. This is caused by the cohesive forces between water molecules, which make them stick together and form a spherical shape to minimize surface area.
Water droplets tend to be spherical due to surface tension. The molecules on the surface of the droplet are more attracted to each other than they are to the surrounding air, causing the droplet to minimize its surface area by forming a sphere, which has the smallest surface area-to-volume ratio. This shape allows water droplets to conserve energy and maximize stability.
Surface tension is the property that causes water to form droplets. The cohesive forces between water molecules at the surface of the droplet are stronger than the adhesive forces between the water and the surface it is on, causing the water molecules to form a spherical shape.
I believe you are referring to the spherical or dome like shape of water droplets. This occurs because water is a very cohesive compound, meaning that its molecules tend to be attracted towards one another. This cohesion in water is because of the multiple hydrogen bonds water is able to make, especially with other water molecules.
All water droplets in the air is different just like when they fall down.
A water drop is a perfect sphere. A sphere is the geometrical shape that has the smallest surface area for its volume. The drop takes this shape because water molecules tend to stick to each other.
Water droplets pull together due to a property called surface tension. This property is a result of the cohesive forces between water molecules at the surface, causing them to minimize the surface area and form spherical droplets.