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What is Acoustics in Physics | Definition & Explanation | Physics Concepts
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What is Acoustics in physics Definition & Explanation Physics Concepts.
Acoustics is the branch of physics that deals with the study of all mechanical waves in gases, liquids, and solids including topics such as vibration, sound, ultrasound and infrasound.
A scientist who works in the field of acoustics is an acoustician while someone working in the field of acoustics technology may be called an acoustical engineer.
The application of acoustics is present in almost all aspects of modern society with the most obvious being the audio and noise control industries.
Hearing is one of the most crucial means of survival in the animal world, and speech is one of the most distinctive characteristics of human development and culture.
Accordingly, the science of acoustics spreads across many facets of human society—music, medicine, architecture, industrial production, warfare and more.
Likewise, animal species such as songbirds and frogs use sound and hearing as a key element of mating rituals or marking territories.
Art, craft, science and technology have provoked one another to advance the whole, as in many other fields of knowledge. Robert Bruce Lindsay's 'Wheel of Acoustics' is a well accepted overview of the various fields in acoustics.
The word "acoustic" is derived from the Greek word ?κουστικ?ς (akoustikos), meaning "of or for hearing, ready to hear" and that from ?κουστ?ς (akoustos), "heard, audible", which in turn derives from the verb ?κο?ω (akouo), "I hear".
The Latin synonym is "sonic", after which the term sonics used to be a synonym for acoustics and later a branch of acoustics.
Frequencies above and below the audible range are called "ultrasonic" and "infrasonic", respectively.
Definition: Acoustics is defined as "(a) Science of sound, including its production, transmission, and effects, including biological and psychological effects.
(b) Those qualities of a room that, together, determine its character with respect to auditory effects."
The study of acoustics revolves around the generation, propagation and reception of mechanical waves and vibrations.
The steps shown in the above diagram can be found in any acoustical event or process.
There are many kinds of cause, both natural and volitional.
There are many kinds of transduction process that convert energy from some other form into sonic energy, producing a sound wave.
There is one fundamental equation that describes sound wave propagation, the acoustic wave equation, but the phenomena that emerge from it are varied and often complex.
The wave carries energy throughout the propagating medium.
Eventually this energy is transduced again into other forms, in ways that again may be natural and/or volitionally contrived.
The final effect may be purely physical or it may reach far into the biological or volitional domains.
The five basic steps are found equally well whether we are talking about an earthquake, a submarine using sonar to locate its foe, or a band playing in a rock .
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