Sound is made by things that shake. 

Sound starts when things shake. 

Sound is made when things vibrate. 
Sound moves at different speeds. It moves fast in steel. It moves slower in water. In air, it moves at about 343 meters per second. The speed changes with the temperature. Sound cannot move in space. This is because space has no medium to carry the waves.
We can study sound using science. This study is called acoustics.
Sound is a fascinating part of our world. It can be music or someone talking. In physics, sound is a mechanical wave. This means it is a wave of pressure. These waves move through a material called a medium. A medium can be a solid, a liquid, or a gas. 
How does sound actually work? It starts with a sound source that vibrates. This could be a drum skin or a loudspeaker. As the source vibrates, it pushes on the particles in the medium. These particles move back and forth, but they do not travel with the wave. Instead, they pass the energy to the next particle. This creates a wave of pressure that moves away from the source.
Scientists have studied how sound moves for a long time. Isaac Newton was one of the first to try measuring its speed. He thought the speed depended on pressure and density. Later, a mathematician named Laplace corrected his work. He realized that sound travels in a special way called an adiabatic process. This led to the Newton-Laplace equation. This math helps us understand how the speed of sound relates to the medium. 
There are many interesting facts about how fast sound moves. The speed depends on the material it is traveling through. In air at sea level, sound travels at about 343 meters per second. In fresh water, it moves at about 1,481 meters per second. Sound is even faster in steel, reaching about 5,960 meters per second. It moves fastest in solid atomic hydrogen at 36,000 meters per second.
We can also think about how we hear sound. The human ear is very sensitive to different frequencies. We can hear sounds between 20 Hz and 20,000 Hz. This range is called our hearing range. 
Sound is a complex phenomenon that scientists study in two different ways. In physics, sound is defined as a mechanical wave of pressure. These waves travel through an elastic material called a medium. This medium can be a solid, a liquid, or a gas. 
The process of sound begins with a vibrating source. A source might be a drum membrane or a loudspeaker diaphragm. As the source vibrates, it creates disturbances in the surrounding medium. These disturbances propagate away from the source at the local speed of sound. It is important to note that the particles of the medium do not travel with the wave. Instead, the particles move back and forth, passing mechanical energy to their neighbors. This creates a traveling wave of pressure, velocity, and displacement.
Sound waves move in different ways depending on the material they enter. In fluids like gases and liquids, sound travels as longitudinal waves. These are also called compression waves. They consist of alternating regions of compression and rarefaction, which are changes in pressure. In solids, sound can travel as both longitudinal waves and transverse waves. Transverse waves involve alternating shear stress perpendicular to the direction of the wave. Unlike longitudinal waves, transverse waves have the property of polarisation. The energy in these waves alternates between potential energy and kinetic energy.
Scientists use the term acoustics to describe the study of these waves. An acoustician is a scientist who specializes in this field. There are many subdisciplines within acoustics, such as bioacoustics and underwater acoustics. Other experts, like audio engineers, focus on recording and mixing sound. The history of measuring sound includes famous mathematicians. Isaac Newton made the first significant effort to measure the speed of sound. He believed the speed was related to the square root of pressure divided by density. Later, the mathematician Laplace corrected this by accounting for adiabatic processes. This resulted in the Newton-Laplace equation, which relates the bulk modulus and density to the speed of sound.
The speed of sound is not a single fixed number. It is a fundamental property that changes based on the medium. In air at sea level, the speed is approximately 343 meters per second. In fresh water, it increases to about 1,481 meters per second. In steel, sound moves much faster at about 5,960 meters per second. The fastest known speed is in solid atomic hydrogen at 36,000 meters per second. 
Humans perceive sound through specific characteristics like pitch and loudness. The human ear is sensitive to a frequency range between 20 Hz and 20,000 Hz. 
Understanding sound connects many different scientific fields together. It links the physics of mechanical waves to the biological study of hearing. 
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