Oil has less particle attraction than water because oil molecules are nonpolar, with no overall charge, resulting in weaker intermolecular forces. Water molecules, on the other hand, are polar and exhibit stronger hydrogen bonding, giving water higher particle attraction.
When the pressure is low and the temperature is high the molecules have less inter particle forces of attraction thus more inter particle spaces, which is a characteristic of gases .Therefore it is an ideal situation for gases.
the particle in a solid overcome the strong attraction between them the particle in a solid overcome the strong attraction between them the particle in a solid overcome the strong attraction between them
Because honey has strong intermolecular attraction
Particles in liquids are held less firmly compared to solids because the intermolecular forces in liquids are weaker, allowing the particles to move around and flow past each other more freely. In solids, the particles are closely packed together with strong intermolecular forces that keep them in fixed positions, giving solids a rigid and definite shape.
It exposes more of the solute surface to the water molecules.
The more particle is given the less water would go through it leaving the particle wet
When the pressure is low and the temperature is high the molecules have less inter particle forces of attraction thus more inter particle spaces, which is a characteristic of gases .Therefore it is an ideal situation for gases.
the particle in a solid overcome the strong attraction between them the particle in a solid overcome the strong attraction between them the particle in a solid overcome the strong attraction between them
Sandy soil will allow more water to percolate compared to clayey soil. This is because sandy soil has larger particle sizes with more space between them, allowing water to flow through more easily. Clayey soil has smaller particle sizes with less space between them, leading to slower water percolation.
Ice cubes melt faster in hot water. Hot water has more heat energy to overcome the forces of attraction between water molecules in ice. Go look up the kinetic particle theory.
The bigger the particle size, the more drainage the soil would have. The smaller the particle sizer, the less drainage the soil would have. ITS EASY
A particle of lesser mass experiences less inertia and therefore requires less force to accelerate. This means that it can accelerate more quickly compared to a particle of greater mass, which has more inertia and requires more force to achieve the same acceleration.
It is an atom. More specifically, it would be a cation - which is an atom which has "lost" one or more electrons and so is less than an atom.
less water
with less water in it
less
Will salty water produce more or less water in a solar still- why?