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Journal of Research of the National Institute of Standards and Technology|September 25, 2015
NIST System for Measuring the Directivity Index of Hearing Aids under Simulated Real-Ear ConditionsRandall P Wagner
Journal of Research of the National Institute of Standards and Technology|April 26, 2016
Effect of Power Line Interference on Microphone Calibration Measurements Made at or Near Harmonics of the Power Line FrequencyRandall P Wagner, Victor Nedzelnitsky
Journal of Research of the National Institute of Standards and Technology|April 21, 2016
Non-Contact Methods for Measuring Front Cavity Depths of Laboratory Standard Microphones Using a Depth-Measuring MicroscopeVictor Nedzelnitsky, Randall P Wagner
Journal of Research of the National Institute of Standards and Technology|March 10, 2016
Long-Term Stability of One-Inch Condenser Microphones Calibrated at the National Institute of Standards and TechnologyRandall P Wagner, William F Guthrie
The Journal of the Acoustical Society of America|October 2, 2017
Pressure reciprocity calibration of a MEMS microphoneRandall P Wagner, Steven E Fick
JASA Express Letters|September 26, 2022
Laser-based comparison calibration of laboratory standard microphonesRandall P Wagner, Richard A Allen, Qian Dong
Journal of Research of the National Institute of Standards and Technology|March 19, 2016
New Measurement Service for Determining Pressure Sensitivity of Type LS2aP Microphones by the Reciprocity MethodRandall P Wagner, Victor Nedzelnitsky, Steven E Fick
The Journal of the Acoustical Society of America|October 2, 2021
The peak height insertion gain (PHIG) method for quantifying acoustic feedback in hearing aidsJoshua M Alexander, Stephanie Schmig, Randall P Wagner, et al.
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