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2.
Micromechanics Based Failure Analysis of Heterogeneous Materials
by Sertse, Hamsasew M., Ph.D.  Purdue University. 2017: 176 pages; 10689831.
4.
Lifetime prediction modeling of airfoils for advanced power generation
by Karaivanov, Ventzislav Gueorguiev, Ph.D.  University of Pittsburgh. 2009: 129 pages; 3384974.
6.
A microstructure based fatigue life prediction framework and its validation
by Yeratapally, Saikumar Reddy, Ph.D.  Purdue University. 2015: 168 pages; 10062899.
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9.
Amorphous Intergranular Film Design Criteria and Application as Damage Tolerant Features in Nanocrystalline Alloys
by Schuler, Jennifer Dolores, Ph.D.  University of California, Irvine. 2019: 169 pages; 13895922.
10.
Estimation of probability of failure for damage-tolerant aerospace structures
by Halbert, Keith, Ph.D.  Temple University. 2014: 192 pages; 3623167.
11.
Human fatigue in prolonged mentally demanding work-tasks: An observational study in the field
by Ahmed, Shaheen, Ph.D.  Mississippi State University. 2013: 190 pages; 3590189.
12.
Design Development for Steel Strongback Braced Frames to Mitigate Concentrations of Damage
by Simpson, Barbara Gwynne, Ph.D.  University of California, Berkeley. 2018: 299 pages; 10930533.
13.
Berechnungs- und Bewertungsstrategie zur Schadenstoleranzanalyse von komplexen Strukturen
by Pucknat, Daniel, Ph.D.  Technische Universitaet Berlin (Germany). 2015: 183 pages; 10718287.
15.
Cracking in Asphalt Pavements: Impact of Component Properties and Aging on Fatigue and Thermal Cracking
by Rahbar-Rastegar, Reyhaneh, Ph.D.  University of New Hampshire. 2017: 179 pages; 10622119.
18.
Fatigue Life and Crack Growth Predictions of Irradiated Stainless Steels
by Fuller, Robert William, Ph.D.  Mississippi State University. 2018: 182 pages; 10747959.
19.
The Interaction of Mental Fatigue and Working Memory Capacity on Caloric Intake
by Ruggieri, Madelyn, M.S.  University of the Sciences in Philadelphia. 2017: 52 pages; 10629204.
20.
Fatigue Characteristics of New ECO Series Aluminum 7175 Alloy
by Vu, Chinh QL, Ph.D.  Portland State University. 2019: 131 pages; 13812290.
23.
Ion channel gene expression as objective biomarkers of training induced fatigue
by VanHaitsma, Timothy Allen, Ph.D.  The University of Utah. 2014: 102 pages; 3681816.
24.
Analysis and verification of fatigue reliability variation under two-stage loading conditions
by Sathiamoorthy, Bharadwaj, M.S.  Northeastern University. 2010: 26 pages; 1510683.
26.
Reliability-based fatigue assessment of mast-arm sign support structures
by Diekfuss, Joseph A., Ph.D.  Marquette University. 2013: 423 pages; 3560292.
27.
Beneficial Tensile Mean Strain Effects on the Fatigue Behavior of Superelastic NiTi
by Rutherford, Benjamin Andrew, M.S.  Mississippi State University. 2017: 89 pages; 10266594.
28.
Fatigue enhancement of undersized, drilled crack-arrest holes
by Simmons, Gary G., Ph.D.  University of Kansas. 2013: 497 pages; 3604779.
29.
Kinematic and electromyographic analysis of the legs, torso, and arms during an exhaustive run
by Smoliga, James Michael, Ph.D.  University of Pittsburgh. 2007: 255 pages; 3300575.
30.
Lamb wave based active damage identification in adhesively bonded composite lap joints
by Jolly, Prateek, M.S.  Mississippi State University. 2016: 131 pages; 10100288.
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