Krishna M. Yerramsetty, Ph.D.
Affiliations: | 2012 | Chemical Engineering | Oklahoma State University, Stillwater, OK, United States |
Area:
Chemical Engineering, Molecular ChemistryGoogle:
"Krishna Yerramsetty"Parents
Sign in to add mentorKhaled A. M. Gasem | grad student | 2012 | Oklahoma State University | |
(Quantitative structure-property relationship modeling & computer-aided molecular design: Improvements & applications.) |
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Publications
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Gebreyohannes S, Yerramsetty K, Neely BJ, et al. (2013) Corrigendum to "Improved QSPR generalized interaction parameters for the nonrandom two-liquid activity coefficient model" [Fluid Phase Equilib. 339 (2013) 20-30] Fluid Phase Equilibria. 353: 135 |
Gebreyohannes S, Yerramsetty K, Neely BJ, et al. (2013) Improved QSPR generalized interaction parameters for the nonrandom two-liquid activity coefficient model Fluid Phase Equilibria. 339: 20-30 |
Bagheri M, Yerramsetty K, Gasem KA, et al. (2013) Molecular modeling of the standard state heat of formation Energy Conversion and Management. 65: 587-596 |
Yerramsetty KM, Neely BJ, Gasem KA. (2012) A NON-LINEAR STRUCTURE-PROPERTY MODEL FOR OCTANOL-WATER PARTITION COEFFICIENT. Fluid Phase Equilibria. 332: 85-93 |
Yerramsetty KM, Rachakonda VK, Neely BJ, et al. (2010) Effect of different enhancers on the transdermal permeation of insulin analog. International Journal of Pharmaceutics. 398: 83-92 |
Yerramsetty KM, Neely BJ, Madihally SV, et al. (2010) A skin permeability model of insulin in the presence of chemical penetration enhancer. International Journal of Pharmaceutics. 388: 13-23 |
Godavarthy SS, Yerramsetty KM, Rachakonda VK, et al. (2009) Design of improved permeation enhancers for transdermal drug delivery. Journal of Pharmaceutical Sciences. 98: 4085-99 |
Rachakonda VK, Yerramsetty KM, Madihally SV, et al. (2008) Screening of chemical penetration enhancers for transdermal drug delivery using electrical resistance of skin. Pharmaceutical Research. 25: 2697-704 |
Yerramsetty KM, Murty C. (2008) Synthesis of cost-optimal heat exchanger networks using differential evolution Computers & Chemical Engineering. 32: 1861-1876 |