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  2. Diffraction - Wikipedia

    en.wikipedia.org/wiki/Diffraction

    Sound waves can diffract around objects, which is why one can still hear someone calling even when hiding behind a tree. [26] Diffraction can also be a concern in some technical applications; it sets a fundamental limit to the resolution of a camera, telescope, or microscope. Other examples of diffraction are considered below.

  3. Artifact (error) - Wikipedia

    en.wikipedia.org/wiki/Artifact_(error)

    Sonic artifact, in sound and music production, sonic material that is accidental or unwanted, resulting from the editing of another sound. Visual artifact, in imaging, any unwanted visual alteration introduced by the imaging equipment. Compression artifact, in computer graphics, distortion of media by the data compression.

  4. End correction - Wikipedia

    en.wikipedia.org/wiki/End_correction

    In an ideal tube, the wavelength of the sound produced is directly proportional to the length of the tube. A tube which is open at one end and closed at the other produces sound with a wavelength equal to four times the length of the tube. A tube which is open at both ends produces sound whose wavelength is just twice the length of the tube.

  5. Acousto-optics - Wikipedia

    en.wikipedia.org/wiki/Acousto-optics

    Acousto-optics is a branch of physics that studies the interactions between sound waves and light waves, especially the diffraction of laser light by ultrasound (or sound in general) through an ultrasonic grating. A diffraction image showing the acousto-optic effect.

  6. Diffraction from slits - Wikipedia

    en.wikipedia.org/wiki/Diffraction_from_slits

    Because diffraction is the result of addition of all waves (of given wavelength) along all unobstructed paths, the usual procedure is to consider the contribution of an infinitesimally small neighborhood around a certain path (this contribution is usually called a wavelet) and then integrate over all paths (= add all wavelets) from the source to the detector (or given point on a screen).

  7. Diffusion (acoustics) - Wikipedia

    en.wikipedia.org/wiki/Diffusion_(acoustics)

    Diffusion, in architectural acoustics, is the spreading of sound energy evenly in a given environment. A perfectly diffusive sound space is one in which the reverberation time is the same at any listening position. Most interior spaces are non-diffusive; the reverberation time is considerably different around the room.

  8. 10 little known facts about fruit stickers - AOL

    www.aol.com/lifestyle/2016-05-08-10-little-known...

    A New York inventor is working on making a fruit label that dissolves in water and turns into a fruit wash. That means clean produce and trouble-free sticker removal all in one. Related: Foods ...

  9. Plant bioacoustics - Wikipedia

    en.wikipedia.org/wiki/Plant_bioacoustics

    To validate that the flower was the organ sensing the vibration of the pollinator, an experiment was run where the flowers were covered with a glass jar, while the rest of the plant was exposed. Sugar concentration of nectar showed no significant difference before and after the low frequency sound was played. [ 10 ]