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1.
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.
2.
Influence of mixture characteristics on the oxidative aging of asphalt binders
by Morian, Nathan E., Ph.D.  University of Nevada, Reno. 2014: 939 pages; 3626103.
3.
Characterization and implementation of ground tire rubber as post-consumer polymers for asphalt concrete
by Baumgardner, Gaylon Lynn, Ph.D.  Mississippi State University. 2015: 309 pages; 3737185.
4.
Rutting Evaluation of Unmodified HMA, Polymer Modified SMA, and CTR Modified HMA and SMA Mixtures
by Omer, Srood, M.S.  Southern Illinois University at Edwardsville. 2014: 169 pages; 1572745.
5.
Phenomenological Modeling and Laboratory Simulation of Long-Term Aging of Asphalt Mixtures
by Elwardany, Michael Dawoud, Ph.D.  North Carolina State University. 2017: 468 pages; 10758820.
6.
Evaluation of Structural Contribution of Asphalt Mixtures through Improved Performance Parameters
by Nemati, Rasool, Ph.D.  University of New Hampshire. 2019: 242 pages; 13882820.
9.
Isolated or Coupled Oxidative, Moisture, and Freeze-Thaw Effects on Warm Mix Asphalt
by Pittman, Carl, M.S.  Mississippi State University. 2018: 78 pages; 10842827.
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Increasing durability of hot mix asphalt pavements designed with the Superpave system
by Karimi, Sahand Sasha, M.S.  University of Maryland, College Park. 2009: 137 pages; 1469461.
12.
Oxidative Aging of Binders with High Recycled Asphalt Materials
by Pournoman, Sara, M.S.  University of Nevada, Reno. 2017: 328 pages; 10282654.
13.
The Feasibility of Rejuvenating Aged Asphalt with Bio-Oil from Swine Manure
by Oldham, Daniel J., M.S.  North Carolina Agricultural and Technical State University. 2015: 148 pages; 1599611.
14.
Investigation of fracture properties of California asphalt concrete mixtures
by Hakimelahi, Hamed, M.S.  California State University, Long Beach. 2013: 66 pages; 1527553.
15.
Innovative uses of Recycled and Waste Materials in Construction Application
by Bolden, Johnny J., IV, M.S.  North Carolina Agricultural and Technical State University. 2013: 160 pages; 1545862.
16.
Development of a new mix design method and specification requirements for asphalt treated bases
by Hernandez, Hector A., M.S.  The University of Texas at El Paso. 2011: 129 pages; 1494354.
17.
Tolerable strains for HMA overlays over concrete pavements
by Gautam, Ashwani, M.S.  University of Kansas. 2009: 102 pages; 1465378.
19.
Flexible pavement rut depth modeling for different climate zones
by Naiel, Asmaiel Kodan A., Ph.D.  Wayne State University. 2010: 122 pages; 3433495.
20.
Prediction of permanent deformation in asphalt concrete
by Carvalho, Regis Luis Egual de, Ph.D.  University of Maryland, College Park. 2012: 262 pages; 3517762.
21.
Stabilization of recyled base materials with high carbon fly ash
by Cetin, Bora, M.S.  University of Maryland, College Park. 2009: 97 pages; 1469456.
23.
Mechanical Properties of Soil-RAP-Geopolymer for the Stabilization of Road Base/Subbase
by Adhikari, Sambodh, M.S.  University of Louisiana at Lafayette. 2017: 135 pages; 10287493.
24.
Analysis of Life-Cycle Cost, Properties, and Field Performance of Parking Lot Pavements
by Rehan, Talal Yaser, M.S.  Southern Illinois University at Edwardsville. 2016: 130 pages; 10158413.
25.
Simulation and Analysis of the Wheel Wander on Viscoelastic Pavement Structures
by Tan, Xiaoshu, M.S.  University of Nevada, Reno. 2013: 107 pages; 1545736.
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Remote Sensing of Urban Climate and Vegetation in Los Angeles
by Wetherley, Erin Blake, Ph.D.  University of California, Santa Barbara. 2018: 166 pages; 10933172.
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