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1.
The role of bed shear stress in sediment sorting patterns in a reconstructed, gravel bed river
by Emerson, Samuel D., M.S.  San Jose State University. 2016: 63 pages; 10128515.
5.
Methodology for calculating shear stress in a meandering channel
by Sin, Kyung-Seop, M.S.  Colorado State University. 2010: 177 pages; 1483954.
7.
Mean flow and turbulence around two series of experimental dikes
by Yaeger, Mary A., M.S.  The University of Arizona. 2009: 99 pages; 1464336.
9.
Field and laboratory study of the Flàajökull glacier, Iceland
by Jacobson, William R., Jr., Ph.D.  The University of Wisconsin - Milwaukee. 2015: 174 pages; 3746672.
11.
Fluvial Processes Affecting the Texture of a Gravel Bed with an Emphasis on Salmon Spawning Habitat
by Meyers, Matthew Armand, Ph.D.  University of California, Santa Barbara. 2017: 278 pages; 10600721.
12.
Regulation of cytokine-mediated vascular permeability under flow-induced shear stress
by Anastasiadis, Pavlos, Ph.D.  University of Hawai'i at Manoa. 2015: 328 pages; 10085637.
13.
Sediment transport impacts upon culvert hydraulics
by Goodridge, Wade Hamilton, Ph.D.  Utah State University. 2009: 380 pages; 3366198.
14.
Glacial processes and morphologies in the southern hemisphere of Mars
by Banks, Maria Elaine, Ph.D.  The University of Arizona. 2009: 216 pages; 3355005.
15.
The temporal and gradational trends of sand infiltration in a gravel bed
by Gibson, Stanford Andrew, Ph.D.  University of California, Davis. 2009: 450 pages; 3396901.
16.
Embryonic Stem Cell Culture in Fibrous Bed Bioreactor
by Ouyang, Anli, Ph.D.  The Ohio State University. 2006: 331 pages; 10835714.
17.
Determining Bed Failure Depth in Unconsolidated Submarine Sediments Using Particles in Cell Numerical Modeling
by Beck, Alexander J., M.S.  University of Louisiana at Lafayette. 2017: 78 pages; 10685053.
18.
Basal shear strength inversions for ice sheets with an application to Jakobshavn Isbræ, Greenland
by Habermann, Marijke, Ph.D.  University of Alaska Fairbanks. 2013: 123 pages; 3607054.
19.
Dynamic Behavior of Granular Earth Materials Subjected to Pressure-shear Loading
by LaJeunesse, Jeff W., Ph.D.  Marquette University. 2018: 162 pages; 10936006.
21.
Three-dimensional computational modeling of curved channel flow
by Sin, Kyung-Seop, Ph.D.  Colorado State University. 2014: 124 pages; 3672074.
22.
Dynamics and spatiotemporal variability of ice streams
by Sayag, Roiy, Ph.D.  Harvard University. 2009: 171 pages; 3385547.
23.
Submarine channel and sediment wave formation by turbidity currents: Navier-Stokes based linear stability analysis
by Hall, Brendon J., Ph.D.  University of California, Santa Barbara. 2009: 145 pages; 3350381.
24.
2-D Bed Sediment Transport Modeling of a Reach on the Sagavanirktok River, Alaska
by Ladines, Isaac A., M.S.  University of Alaska Fairbanks. 2019: 61 pages; 13856354.
25.
Coupling sediment transport and water quality models
by Xiong, Yi, Ph.D.  Mississippi State University. 2010: 324 pages; 3432283.
26.
Numerical models for scour and liquefaction around object under currents and waves
by Liu, Xiaofeng, Ph.D.  University of Illinois at Urbana-Champaign. 2008: 166 pages; 3314965.
27.
3-D numerical simulation of dam-break flows over movable beds
by Marsooli, Reza, Ph.D.  The University of Mississippi. 2013: 181 pages; 3595529.
28.
A multidimensional Eulerian-Lagrangian model to predict organism distribution
by Wang, Yushi, M.S.  The University of Iowa. 2009: 107 pages; 1473717.
29.
Microfabricated piezoresistive shear stress sensors for underwater applications
by Barlian, Arnoldus Alvin, Ph.D.  Stanford University. 2009: 236 pages; 3351486.
30.
Characterizing the Natural Fracture System of the Eagle Ford Shale
by Mason, Shanna, M.S.  University of Louisiana at Lafayette. 2016: 183 pages; 10239847.
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