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The Journal of Heredity|October 13, 1998
Low mitochondrial diversity and small effective population sizes of the copepods Calanus finmarchicus and Nannocalanus minor: possible impact of climatic variation during recent glaciationA Bucklin, P H WiebeScience (New York, N.Y.)|September 26, 1980
Foraminifera and chlorophyll maximum: vertical distribution, seasonal succession, and paleoceanographic significanceR G Fairbanks, P H WiebeThe Journal of the Acoustical Society of America|January 24, 1998
Sound scattering by several zooplankton groups. II. Scattering modelsT K Stanton, D Chu, P H WiebeThe Journal of the Acoustical Society of America|January 24, 1998
Differences between sound scattering by weakly scattering spheres and finite-length cylinders with applications to sound scattering by zooplanktonT K Stanton, P H Wiebe, D ChuScience (New York, N.Y.)|January 4, 1980
Vertical distribution and isotopic composition of living planktonic foraminifera in the Western north atlanticR G Fairbanks, P H Wiebe, A W BéScience (New York, N.Y.)|July 15, 1988
Acoustical Detection of High-Density Krill Demersal Layers in the Submarine Canyons off Georges BankC H Greene, P H Wiebe, J Burczynski, et al.The Journal of the Acoustical Society of America|October 29, 2000
Backscatter of high-frequency (200kHz) acoustic wavefields from ocean turbulenceM H Orr, L R Haury, P H Wiebe, et al.The Journal of the Acoustical Society of America|January 24, 1998
Sound scattering by several zooplankton groups. I. Experimental determination of dominant scattering mechanismsT K Stanton, D Chu, P H Wiebe, et al.The Journal of the Acoustical Society of America|August 24, 2000
Acoustic scattering by benthic and planktonic shelled animalsT K Stanton, D Chu, P H Wiebe, et al.Pageof 1