Because the sounds bounce off of walls.
In a perfect system Energy Waves would not travel around corners unless reflected off of something. In the case of Sound the medium of travel is the Air. The Wave is "Reflected" off of air molecules and 'travels around the corner. The motion of the air molecules 'reproduces' the sound waves' travel.
Sound waves can diffract around corners because they exhibit wave-like behavior and can bend when they encounter an obstacle. This bending allows sound waves to travel around obstacles and reach the other side, making it possible for us to hear sound around corners.
When sound waves bend around corners, it is called diffraction. Diffraction occurs when waves encounter an obstacle or a slit that is comparable in size to their wavelength, causing the wave to spread out and bend around the obstacle. This phenomenon allows sound waves to travel around obstacles and into shadow regions, making it possible to hear sounds from around corners.
Sound waves can diffract, which means they can bend around obstacles like corners. This allows sound to reach you even when you can't see the source, as long as the obstacle is not completely blocking the path of the sound waves.
Sound waves can bend around obstacles such as corners and travel through the air. This allows the sound of a man's voice to reach your ears even if he is not in your line of sight. Sound waves reflect and diffract, enabling you to hear the sound even when the source is not visible.
Sound waves have a longer wavelength which allows them to bend around corners more than light waves.
In a perfect system Energy Waves would not travel around corners unless reflected off of something. In the case of Sound the medium of travel is the Air. The Wave is "Reflected" off of air molecules and 'travels around the corner. The motion of the air molecules 'reproduces' the sound waves' travel.
Sound waves can diffract around corners because they exhibit wave-like behavior and can bend when they encounter an obstacle. This bending allows sound waves to travel around obstacles and reach the other side, making it possible for us to hear sound around corners.
When sound waves bend around corners, it is called diffraction. Diffraction occurs when waves encounter an obstacle or a slit that is comparable in size to their wavelength, causing the wave to spread out and bend around the obstacle. This phenomenon allows sound waves to travel around obstacles and into shadow regions, making it possible to hear sounds from around corners.
Sound waves can diffract, which means they can bend around obstacles like corners. This allows sound to reach you even when you can't see the source, as long as the obstacle is not completely blocking the path of the sound waves.
diffraction
The vibration of air or a material.
Sound waves can bend around obstacles such as corners and travel through the air. This allows the sound of a man's voice to reach your ears even if he is not in your line of sight. Sound waves reflect and diffract, enabling you to hear the sound even when the source is not visible.
reflection
Diffraction is the property of waves that allows them to bend around a barrier. This phenomenon occurs when waves encounter an obstacle or opening that causes them to spread out and bend around the edges. Diffraction is a key characteristic of wave behavior and is observed in various types of waves, such as sound and light waves.
diffraction
Diffraction. Your welcome to shower needed it(: