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The Italian word for "echo"; an effect in which a group of notes is repeated, usually more softly, and perhaps at a different octave, to create an echo effect égal (Fr.) Equal eilend (Ger.) Hurrying ein wenig (Ger.) A little einfach (Ger.) Simple emporté (Fr.) Fiery, impetuous en animant (Fr.) Becoming very lively en cédant (Fr.) Yielding en ...
Radiant energy of the electromagnetic spectrum with wavelengths in the visible, near-ultraviolet, and near-infrared spectra, the broadest definition of which includes all radiation with a wavelength between 0.1 μm and 5.0 μm. Schrödinger equation A mathematical equation which describes the time evolution of wave functions in quantum mechanics.
The concept of wavelength is most often applied to sinusoidal, or nearly sinusoidal, waves, because in a linear system the sinusoid is the unique shape that propagates with no shape change – just a phase change and potentially an amplitude change. [15] The wavelength (or alternatively wavenumber or wave vector) is a characterization of the ...
Because amplitude varies directly with sound pressure (A = k 1 P) and sound pressure varies directly with distance (P = k 2 d), such that amplitude also varies directly with distance (A = k 1 (k 2 d) = k 1 k 2 d), the amplitude of the sound as perceived by the listener will be greatest when the speaker is at the point in its rotation closest to ...
Thus shorter-wavelength, higher-frequency waves occur with varying prominence and give each instrument its characteristic tone quality. The fact that a string is fixed at each end means that the longest allowed wavelength on the string (which gives the fundamental frequency) is twice the length of the string (one round trip, with a half cycle ...
In music, dynamic range describes the difference between the quietest and loudest volume of an instrument, part or piece of music. [49] In modern recording, this range is often limited through dynamic range compression , which allows for louder volume, but can make the recording sound less exciting or live.
In these cases, the waveform is an attribute that is independent of the frequency, amplitude, or phase shift of the signal. The waveform of an electrical signal can be visualized in an oscilloscope or any other device that can capture and plot its value at various times, with suitable scales in the time and value axes.
Each sample represents the amplitude of the signal at a specific point in time, and the samples are uniformly spaced in time. The amplitude is the only information explicitly stored in the sample, and it is typically stored as either an integer or a floating-point number, encoded as a binary number with a fixed number of digits – the sample's ...