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Umezawa N.  2010.  Effects of capping HfO2 with multivalent oxides toward reducing the number of charged defects. Appl. Phys. Lett.. 96:162906.
Lyons JL, Janotti A, Van de Walle CG.  2014.  Effects of carbon on the electrical and optical properties of InN, GaN, and AlN. Physical Review B. 89:035204.
Janotti A., Segev D., Van de Walle C.G.  2006.  Effects of cation d states on III-nitride and II-oxide wide-band-gap semiconductors. Physical Review B. 74:45202.
Thomas EM, Peterson KA, Balzer AH, Rawlings D, Stingelin N, Segalman RA, Chabinyc ML.  2020.  Effects of Counter-Ion Size on Delocalization of Carriers and Stability of Doped Semiconducting Polymers. Advanced Electronic Materials. :2000595.
Janotti A., Jalan B., Stemmer S., Van de Walle C.G.  2012.  Effects of doping on the lattice parameter of SrTiO3. Appl. Phys. Lett.. 100:262104.
Griffin M., Friedel M., Shea J.E..  2005.  Effects of frustration, confinement, and surface interactions on the dimerization of an off-lattice beta-barrel protein. J. Chem. Phys.. 123:174707.
Lyons JL, Janotti A, Van de Walle CG.  2014.  Effects of hole localization on limiting p-type conductivity in oxide and nitride semiconductors. Journal of Applied Physics. 115:012014.
McBride PM, Yan Q, Van de Walle CG.  2014.  Effects of In profile on simulations of InGaN/GaN multi-quantum-well light-emitting diodes. Applied Physics Letters. 105:083507.
Do TD, LaPointe NE, Economou NJ, Buratto SK, Feinstein SC, Shea J-E, Bowers MT.  2013.  Effects of pH and Charge State on Peptide Assembly: the YVIFL Model System. Journal of Physical Chemistry B. 117(13):10768.
Lai H-H, Hung H-H.  2014.  Effects of short-ranged interactions on the Kane-Mele model without discrete particle-hole symmetry. Physical Review B. 89:165135.
Wei G., Shea J.-E.  2006.  Effects of solvent on the structure of the Alzheimer amyloid-b(25-35) peptide. Biophys. J.. 91:1638.
Yan Q, Rinke P, Janotti A, Scheffler M, Van de Walle CG.  2014.  Effects of strain on the band structure of group-III nitrides. Physical Review B. 90:125118.
Dreyer C.E, Janotti A., Van de Walle C.G.  2013.  Effects of strain on the electron effective mass in GaN and AlN. Appl. Phys. Lett.. 102:142105.
Chen M-H, Thomas JC, Natarajan ARaju, Van der Ven A.  2016.  Effects of strain on the stability of tetragonal ZrO 2. Physical Review B. 94(5):054108.
Friedel M., Baumketner A., Shea J.-E..  2006.  Effects of surface tethering on protein folding mechanisms. Proc. Nat. Acad. Sci. USA. 103:8396-8401.
Laachi N, Iwama T, Delaney KT, Kim BJ, Bristol R, Shykind D, Weinheimer CJ, Fredrickson GH.  2015.  Effects of thermal fluctuations on directed self-assembly in cylindrical confinement. Journal of Micro/Nanolithography, MEMS, and MOEMS. 14(1):013505.
Rossol MN, Rajan VP, Zok FW.  2015.  Effects of weave architecture on mechanical response of 2D ceramic composites. Composites Part A: Applied Science and Manufacturing. 74:141–152.
Wangsanuwat C, Heom KA, Liu E, O’Malley MA, Dey SS.  2020.  Efficient and cost-effective bacterial mRNA sequencing from low input samples through ribosomal RNA depletion. BMC genomics. 21:1–12.
Villet MC, Fredrickson GH.  2014.  Efficient field-theoretic simulation of polymer solutions. The Journal of chemical physics. 141:224115.
García-Cervera C.J.  2007.  An Efficient Real Space Method for Orbital-Free Density-Functional Theory. Comm. Comp. Phys.. 2 (2):334-357.
Levi AE, Fu L, Lequieu J, Horne JD, Blankenship J, Mukherjee S, Zhang T, Fredrickson GH, Gutekunst WR, Bates CM.  2020.  Efficient Synthesis of Asymmetric Miktoarm Star Polymers. Macromolecules.
Fratus KR, Srednicki M.  2015.  Eigenstate thermalization in systems with spontaneously broken symmetry. Physical Review E. 92:040103.
Su Y, Ardeljan M, Knezevic M, Jain M, Pathak S, Beyerlein IJ.  2020.  Elastic constants of pure body-centered cubic Mg in nanolaminates. Computational Materials Science. 174:109501.
Brown F.LH.  2008.  Elastic Modeling of Biomembranes and Lipid Bilayers. Annual Review of Physical Chemistry. 59:685-712.
Rajan VP, Shaw JH, Rossol MN, Zok FW.  2014.  An elastic–plastic constitutive model for ceramic composite laminates. Composites Part A: Applied Science and Manufacturing. 66:44–57.