opinion obvious. recommend look for the answer..

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  1. Gora Reply
    The sensation of a frequency is commonly referred to as the pitch of a sound. A high pitch sound corresponds to a high frequency sound wave and a low pitch sound corresponds to a low frequency .
  2. Kishicage Reply
    Oct 26,  · The neurons in your brain communicate via electricity and the pulsing of this charged activity is a brainwave, Scientific American explains. Categorized into four distinct types, brainwaves range from low amplitude, high frequency beta waves to high amplitude, low frequency delta waves.
  3. Voodoogore Reply
    Jan 01,  · Neuroimaging studies have provided important information regarding how and where pitch is coded and processed in the human brain. Recordings of the frequency-following response (FFR), an electrophysiological measure of neural temporal coding in the brainstem, have shown that the precision of temporal pitch information is dependent on linguistic and musical experience, and can Cited by:
  4. Mesar Reply
    Frequencies for equal-tempered scale, A 4 = Hz Other tuning choices, A 4 = Speed of Sound = m/s = ft/s = miles/hr More about Speed of Sound ("Middle C" is C 4) Note Frequency (Hz) Wavelength (cm) C 0: C # 0 /D b 0: D 0: D # 0 /E b 0.
  5. Arashikree Reply
    Jul 04,  · Introduction. Pitch is one of the primary auditory sensations. Pitch conveys prosodic information in English and semantic information in tonal languages such as Mandarin, is the most important perceptual dimension of Western music, and is one of the main cues that allow us to separate sounds arising from different sound sources (for example, 2 people speaking at once).Cited by:
  6. Gukus Reply
    The temporal theory of pitch perception asserts that frequency is coded by the activity level of a sensory neuron. This would mean that a given hair cell would fire action potentials related to the frequency of the sound wave. While this is a very intuitive explanation, we detect such a broad range of frequencies (20–20, Hz) that the.
  7. Kigis Reply
    "We believe the part of the brain that processes sounds — the auditory cortex — delegates too many neurons to some frequencies, and things begin to go awry," said Michael Kilgard, Ph.D., associate professor of behavior and brain sciences at UT-Dallas, and a co-principal investigator on the study.
  8. Tokasa Reply
    brain decodes pitch by the firing frequency of groups of hair cells on the basilar membrane. Duplicity Theory. combination of volley and place theory explains how our brain decodes pitch. Absolute Threshold. minimum intensity of a stimulus at which participants can identify its presence 50% of the time.

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