Sound travels slower in a gas compared to a liquid because the particles in a gas are more spread out and have weaker interactions with each other, leading to a longer time for energy to be transmitted from one particle to another. In contrast, the particles in a liquid are closer together and have stronger interactions, allowing sound waves to travel more quickly through the medium.
The speed of light is always the same, the different speeds associated with a liquid are due to the absorbing and emitting of the light within the substance as it travels through it, which is not necessarily 'c' (2.99792458x10^10 cm/sec).
farther apart, resulting in fewer collisions between molecules. This allows sound waves to move with less resistance and at a slower pace compared to the more densely packed molecules in liquids and solids.
Sound travels a little slower through gases compared to liquids and solids. This is because the particles in gases are farther apart, leading to a slower transmission of sound waves.
The speed of light in a liquid depends on the properties of the liquid, such as its density and refractive index. In general, light travels slower in liquids compared to its speed in vacuum, which is approximately 299,792 kilometers per second. The exact speed of light in a specific liquid can be calculated using the formula v = c/n, where v is the speed of light in the liquid, c is the speed of light in vacuum, and n is the refractive index of the liquid.
Violet travels 1% slower than red does in natural grass.
As compared to what? Compared to air, or to a vacuum, light travels quite a bit slower in water.As compared to what? Compared to air, or to a vacuum, light travels quite a bit slower in water.As compared to what? Compared to air, or to a vacuum, light travels quite a bit slower in water.As compared to what? Compared to air, or to a vacuum, light travels quite a bit slower in water.
No it actually travels slower.
The speed of light is always the same, the different speeds associated with a liquid are due to the absorbing and emitting of the light within the substance as it travels through it, which is not necessarily 'c' (2.99792458x10^10 cm/sec).
farther apart, resulting in fewer collisions between molecules. This allows sound waves to move with less resistance and at a slower pace compared to the more densely packed molecules in liquids and solids.
In fact, it travels faster, in a liquid, than in air.In fact, it travels faster, in a liquid, than in air.In fact, it travels faster, in a liquid, than in air.In fact, it travels faster, in a liquid, than in air.
Sound travels a little slower through gases compared to liquids and solids. This is because the particles in gases are farther apart, leading to a slower transmission of sound waves.
no it didn't because i think they are the same because time did not change
The speed of light in a liquid depends on the properties of the liquid, such as its density and refractive index. In general, light travels slower in liquids compared to its speed in vacuum, which is approximately 299,792 kilometers per second. The exact speed of light in a specific liquid can be calculated using the formula v = c/n, where v is the speed of light in the liquid, c is the speed of light in vacuum, and n is the refractive index of the liquid.
Violet travels 1% slower than red does in natural grass.
Light travels slower in a material with greater optical density.
A liquid with higher viscosity has more resistance to flow due to the stronger intermolecular forces between its molecules. This results in slower movement of the liquid compared to a less viscous liquid.
Sound waves travel slower through gases compared to through liquids and solids because gases have lower density and less stiffness, which hinders the transfer of mechanical energy.