Vermont EPSCoR Publications and Products


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2013
Anderson I, Dewoolkar MM, Hargy J, de Alba P. Measurement of post-earthquake strength of liquefiable soils in centrifuge models. In: 8th International Conference Physical Modeling in Geotechnics. 8th International Conference Physical Modeling in Geotechnics. Perth, Austrailia: CRC Press; 2013.
Fitzgerald EP, Haselton B, Marsden E, McCabe DJ. Measuring and Modeling the Effects of Lakeshore Development on Littoral Habitat and Biota in Malletts Bay, Vermont. Report to Lake Champlain Basin Program [Internet]. 2013 [cited 0BC]. Available from: http://www.lcbp.org/wp-content/uploads/2013/09/75_LittoralHabitatAssessment_Sept2013.pdf
Chichakly KJ, Bowden WB, Eppstein MJ. Minimization of cost, sediment load, and sensitivity to climate change in a watershed management application. Environmental Modelling & Software [Internet]. 2013 ;50:158 - 168. Available from: http://linkinghub.elsevier.com/retrieve/pii/S1364815213002004
Beckage B, Kauffman S, Zia A, Koliba C, Gross LJ. More complex complexity: exploring the nature of computational irreducibility across physical, biological, and human social systems. In: Irreducibility and Computational Equivalence: Wolfram Science 10 Years After the Publication of A New Kind of Science. Vol. 2. Irreducibility and Computational Equivalence: Wolfram Science 10 Years After the Publication of A New Kind of Science. ; 2013. pp. 79-88. Available from: http://link.springer.com/chapter/10.1007%2F978-3-642-35482-3_7#page-2
2012
Anderson I, Hargy J, de Alba P, Dewoolkar MM. Measurement of Residual Strength of Liquefied Soil in Centrifuge Models. In: Hryciw RD, Athanasopoulos-Zekkos A, Yesiller N GeoCongress 2012. GeoCongress 2012. Oakland, California, United StatesReston, VA: American Society of Civil Engineers; 2012. pp. 1740 - 1749. Available from: http://ascelibrary.org/doi/abs/10.1061/9780784412121.179
McCabe DJ, Hayes-Pontius EM, Canepa A, Berry KS, Levine BC. Measuring standardized effect size improves interpretation of biomonitoring studies and facilitates meta-analysis. Freshwater Science. 2012 [cited 0BC];31(3):800-812.
Larouche JR, Bowden WB, Giordano R, Flinn MB, Crump BC. Microbial Biogeography of Arctic Streams: Exploring Influences of Lithology and Habitat. Frontiers in Microbiology [Internet]. 2012 [cited 0BC];3(309):1-9. Available from: http://journal.frontiersin.org/article/10.3389/fmicb.2012.00309/full
Bomblies A. Modeling the role of rainfall patterns in seasonal malaria transmission. Climatic Change [Internet]. 2012 [cited 0BC];112(3-4):673 - 685. Available from: http://www.springerlink.com/content/w2t2736285427465/fulltext.pdf
Voigt B, Gustafson C, Erickson JD. Modeling Zoonotic Disease Regulation under Climate Change Scenarios in Semi-Arid Grasslands: a scoping model of water provisioning services in the Ruaha Landscape of Tanzania. Adapting Livestock to Climate Change Collaborative Research Support Program, Research Brief [Internet]. 2012 [cited 0BC];RB-08-2012. Available from: http://lcccrsp.org/wp-content/uploads/2012/05/RB_08_2012.pdf
Glaser JR, Schmitz C, Sprenger JH. Movable objective lens assembly for an optical microscope and optical microscopes having such an assembly. [Internet]. 2012 . Available from: http://patents.com/us-8270071.html
2011
Marshall JS, Chesnutt CKW, Udaykumar HS. Mesoscale Analysis Of Blood Flow. In: Image-based Computational Modeling of the Human Circulatory and Pulmonary Systems. Image-based Computational Modeling of the Human Circulatory and Pulmonary Systems. New York Dordrecht Heidelberg London: Srpinger ; 2011. Available from: http://books.google.com/books?hl=en&lr=&id=QwTSbXL5fA8C&oi=fnd&pg=PA235&dq=Mesoscale+Analysis+Of+Blood+Flow&ots=AXLUfOIcCp&sig=SZnMB46reS1rAZf7vD0hXW1WYHc#v=onepage&q=Mesoscale%20Analysis%20Of%20Blood%20Flow&f=false

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