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Sharad Bhartiya

Showing results (1-10 of 20) with videos related to

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ISA Transactions|December 4, 2021
Rate and grade transition control using PI controller based supervisory and regulatory layers: Diacetone alcohol process case studyShashank Srivastava, Sharad Bhartiya
Journal of Chromatography. A|September 26, 2022
Dual switch simulated moving bed chromatography: An optimal two-fraction yielding separation processMutika Sumedha, Sharad Bhartiya
Systems and Synthetic Biology|December 4, 2012
Mathematical modeling of fission yeast Schizosaccharomyces pombe cell cycle: exploring the role of multiple phosphatasesP Anbumathi, Sharad Bhartiya, K V Venkatesh
FEBS Letters|April 6, 2004
Multiple feedback loops are key to a robust dynamic performance of tryptophan regulation in Escherichia coliK V Venkatesh, Sharad Bhartiya, Anurag Ruhela
European Journal of Biochemistry|June 6, 2003
Dynamic model of Escherichia coli tryptophan operon shows an optimal structural designSharad Bhartiya, Subodh Rawool, K V Venkatesh
The FEBS Journal|June 10, 2010
Experimental and steady-state analysis of the GAL regulatory system in Kluyveromyces lactisVenkat R Pannala, Sharad Bhartiya, Kareenhalli V Venkatesh
Systems and Synthetic Biology|May 7, 2014
Analysis of osmoadaptation system in budding yeast suggests that regulated degradation of glycerol synthesis enzyme is key to near-perfect adaptationAnilkumar K Patel, Sharad Bhartiya, K V Venkatesh
Biotechnology and Bioengineering|March 11, 2006
Substrate specificity of lipases in alkoxycarbonylation reaction: QSAR model development and experimental validationSangeetha M Chandrasekaran, Sharad Bhartiya, Pramod P Wangikar
Journal of Industrial Microbiology & Biotechnology|February 23, 2012
Quantification of metabolism in Saccharomyces cerevisiae under hyperosmotic conditions using elementary mode analysisJignesh H Parmar, Sharad Bhartiya, K V Venkatesh
Physical Biology|August 7, 2009
A model-based study delineating the roles of the two signaling branches of Saccharomyces cerevisiae, Sho1 and Sln1, during adaptation to osmotic stressJ H Parmar, Sharad Bhartiya, K V Venkatesh
Pageof 2

Showing results (1-10 of 20) with videos related to

Sort By:
Pageof 2
ISA Transactions|December 4, 2021
Rate and grade transition control using PI controller based supervisory and regulatory layers: Diacetone alcohol process case studyShashank Srivastava, Sharad Bhartiya
Journal of Chromatography. A|September 26, 2022
Dual switch simulated moving bed chromatography: An optimal two-fraction yielding separation processMutika Sumedha, Sharad Bhartiya
Systems and Synthetic Biology|December 4, 2012
Mathematical modeling of fission yeast Schizosaccharomyces pombe cell cycle: exploring the role of multiple phosphatasesP Anbumathi, Sharad Bhartiya, K V Venkatesh
FEBS Letters|April 6, 2004
Multiple feedback loops are key to a robust dynamic performance of tryptophan regulation in Escherichia coliK V Venkatesh, Sharad Bhartiya, Anurag Ruhela
European Journal of Biochemistry|June 6, 2003
Dynamic model of Escherichia coli tryptophan operon shows an optimal structural designSharad Bhartiya, Subodh Rawool, K V Venkatesh
The FEBS Journal|June 10, 2010
Experimental and steady-state analysis of the GAL regulatory system in Kluyveromyces lactisVenkat R Pannala, Sharad Bhartiya, Kareenhalli V Venkatesh
Systems and Synthetic Biology|May 7, 2014
Analysis of osmoadaptation system in budding yeast suggests that regulated degradation of glycerol synthesis enzyme is key to near-perfect adaptationAnilkumar K Patel, Sharad Bhartiya, K V Venkatesh
Biotechnology and Bioengineering|March 11, 2006
Substrate specificity of lipases in alkoxycarbonylation reaction: QSAR model development and experimental validationSangeetha M Chandrasekaran, Sharad Bhartiya, Pramod P Wangikar
Journal of Industrial Microbiology & Biotechnology|February 23, 2012
Quantification of metabolism in Saccharomyces cerevisiae under hyperosmotic conditions using elementary mode analysisJignesh H Parmar, Sharad Bhartiya, K V Venkatesh
Physical Biology|August 7, 2009
A model-based study delineating the roles of the two signaling branches of Saccharomyces cerevisiae, Sho1 and Sln1, during adaptation to osmotic stressJ H Parmar, Sharad Bhartiya, K V Venkatesh
Pageof 2