Because the molecules are less dense and they vibrate faster letting sound travel faster
The sound travel faster in warm air because the average mean speed of the molecules of air is faster in warm air than on cool air. Sound is transferred by collisions of molecules. Therefore sound waves will travel faster on warm air because collisions of molecules of air in warm air is greater.
No, the speed of sound in a medium like air is determined by the temperature of the air, not the frequency of the sound. In general, sound travels faster in warm air than in cool air because the molecules in warm air move faster and can transmit sound waves more quickly.
Sound travels faster in warm water than in cool water because the molecules in warm water are more spread out and can transmit sound waves more efficiently. The speed of sound in water increases with temperature.
Sound typically travels faster in warm air compared to cold air. This is because the speed of sound is directly proportional to the temperature of the air. Warm air molecules move faster, allowing sound waves to propagate more quickly.
Sound travels faster in warm air because the molecules are more spread out, allowing sound waves to move more quickly. In cold air, molecules are closer together, which slows down the transmission of sound waves.
The sound travel faster in warm air because the average mean speed of the molecules of air is faster in warm air than on cool air. Sound is transferred by collisions of molecules. Therefore sound waves will travel faster on warm air because collisions of molecules of air in warm air is greater.
No, the speed of sound in a medium like air is determined by the temperature of the air, not the frequency of the sound. In general, sound travels faster in warm air than in cool air because the molecules in warm air move faster and can transmit sound waves more quickly.
Sound travels faster in warm water than in cool water because the molecules in warm water are more spread out and can transmit sound waves more efficiently. The speed of sound in water increases with temperature.
Sound typically travels faster in warm air compared to cold air. This is because the speed of sound is directly proportional to the temperature of the air. Warm air molecules move faster, allowing sound waves to propagate more quickly.
Sound travels faster in warm air because the molecules are more spread out, allowing sound waves to move more quickly. In cold air, molecules are closer together, which slows down the transmission of sound waves.
The rate at which sound travels through stone depends on the stone. Sound will travel faster through warm stone than cold stone.
Sound travels faster through warmer water because warm water molecules are more spread out, allowing sound waves to travel more quickly. Cold water, with its denser and more closely packed molecules, slows down the transmission of sound waves.
it travels faster in warner air since cold particles dont move very fast because they do not have much energy. then when warm air enters the particles they start moving faster and vibrating faster which moves sound along alot faster. hope this helps :).
Yes, sound travels faster in gases that have lower densities and higher elastic properties, such as helium and hydrogen. The speed of sound is determined by the temperature and composition of the gas it is traveling through.
NO they can not travel faster than sound in thunder and lightning
In general, sound waves will travel faster in warmer temperatures compared to colder temperatures. This is because sound waves travel faster in materials with higher temperatures, as the molecules in the medium move more quickly and can transmit the sound energy more efficiently.
Sound travels faster in warm air compared to cold air. This is because the molecules in warm air are more spread out and can vibrate more easily, allowing sound waves to travel faster. In cold air, the molecules are closer together and vibrate less, slowing down the speed of sound.