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Adiabatic compression & rarefaction.

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What does the propagation of sound waves in a gas involve?

The propagation of sound waves in a gas involves the compression and rarefaction of the gas molecules as the wave passes through. This creates areas of high and low pressure in the gas, which results in the transmission of sound energy. The speed of sound in a gas is determined by factors such as temperature, density, and the molecular composition of the gas.


Which kind of wave requires a medium for propagation?

A Sound wave, water wave, earth quake wave. Electromagnetic waves (radio, light, etc.) do not require a medium for propagation.


Are sound waves transvers or longitudnal?

Sound waves are longitudinal waves, which means that the particles in the medium vibrate parallel to the direction of the wave's propagation. This is in contrast to transverse waves, where the particles vibrate perpendicular to the direction of the wave's propagation.


What type of waves are sound waves longitudinal or converse waves?

Sound waves are longitudinal waves because the particles vibrate parallel to the direction of wave propagation. This means that the particles move back and forth in the same direction that the sound wave is traveling.


Do sound waves travel faster in gas?

Sound waves generally travel faster in solids compared to gases. This is because solids have a higher density and a more organized molecular structure, allowing sound waves to propagate more efficiently. In gases, the molecules are further apart, and this leads to a slower propagation speed for sound waves.


Can sound energy pass through gas?

Yes, sound energy can pass through gas. Sound waves are vibrations that can travel through different mediums, including gases. The speed and propagation of sound waves in gases depend on their composition and temperature.


What kind of waves are mechanical?

Those waves which required medium for propagation are called mechanical waves. e.g sound waves,they need medium i.e solid liquid or gas ,to propagate. They cant travel through vacuum. hope u understand that!!


Explain why a sound waves can travels faster in a solid than in a gas?

Sound waves can travel faster in a solid than in a gas because the particles in a solid are closer together, allowing for faster transfer of energy between particles. In a gas, the particles are further apart and collide less frequently, slowing down the propagation of sound waves.


Which one of the following environments will sound not travel through a solid b gas c vacuum d liquid?

Sound cannot travel through a vacuum because it requires a medium (solid, liquid, or gas) for the propagation of mechanical waves.


What waves must have medium?

Mechanical waves, such as sound waves and water waves, require a medium (solid, liquid, or gas) for propagation because they rely on the vibration of particles in the medium to transmit energy. Electromagnetic waves, like light waves and radio waves, do not require a medium to propagate and can travel through a vacuum.


Where would a sound wave travel if you increase the temperature of liquid and a gas?

In both cases, increasing the temperature of the liquid and gas would increase the speed of sound waves. In liquids, faster sound waves would travel deeper into the liquid due to increased particle motion. In gases, faster sound waves would travel further as the increased temperature leads to higher molecular speeds and less resistance to wave propagation.


Why transverse wave does not travel in air?

Transverse waves require a medium with particles that can move perpendicular to the wave propagation. In air, the particles move in random directions due to their thermal motion, making it difficult for transverse waves to propagate effectively. Longitudinal waves, like sound waves, are more common in air because they involve particle vibrations parallel to the wave propagation.