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I Alkorta

Showing results (1-10 of 30) with videos related to

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Protein Engineering|October 1, 1994
Sequence divergence analysis for the prediction of seven-helix membrane protein structures: II. A 3-D model of human rhodopsinI Alkorta, P Du
Bioresource Technology|August 14, 2001
Phytoremediation of organic contaminants in soilsI Alkorta, C Garbisu
Bioresource Technology|March 29, 2001
Phytoextraction: a cost-effective plant-based technology for the removal of metals from the environmentC Garbisu, I Alkorta
Protein Engineering|October 1, 1994
Sequence divergence analysis for the prediction of seven-helix membrane protein structures: I. Comparison with bacteriorhodopsinP Du, I Alkorta
Journal of Medicinal Chemistry|January 7, 1994
Molecular electrostatic potential of D1 and D2 dopamine agonistsI Alkorta, H O Villar
Chempluschem|May 14, 2021
The Electrophilicities of XCF<sub>3</sub> and XCl (X=H, Cl, Br, I) and the Propensity of These Molecules To Form Hydrogen and Halogen Bonds with Lewis Bases: An Ab Initio StudyI Alkorta, A C Legon
Protein Engineering|July 1, 1996
A 3D model of the delta opioid receptor and ligand-receptor complexesI Alkorta, G H Loew
Journal of Molecular Graphics & Modelling|August 6, 1999
Similarity studies on guanidinium, imidazolinium, and imidazolium cations: toward new bradykinin antagonistsC Dardonville, I Rozas, I Alkorta
Acta Crystallographica. Section B, Structural Science|December 2, 2000
Supramolecular structure of 1H-pyrazoles in the solid state: a crystallographic and ab initio studyC Foces-Foces, I Alkorta, J Elguero
Reviews on Environmental Health|September 16, 2010
Phytostabilization of metal contaminated soilsI Alkorta, J M Becerril, C Garbisu
Pageof 3

Showing results (1-10 of 30) with videos related to

Sort By:
Pageof 3
Protein Engineering|October 1, 1994
Sequence divergence analysis for the prediction of seven-helix membrane protein structures: II. A 3-D model of human rhodopsinI Alkorta, P Du
Bioresource Technology|August 14, 2001
Phytoremediation of organic contaminants in soilsI Alkorta, C Garbisu
Bioresource Technology|March 29, 2001
Phytoextraction: a cost-effective plant-based technology for the removal of metals from the environmentC Garbisu, I Alkorta
Protein Engineering|October 1, 1994
Sequence divergence analysis for the prediction of seven-helix membrane protein structures: I. Comparison with bacteriorhodopsinP Du, I Alkorta
Journal of Medicinal Chemistry|January 7, 1994
Molecular electrostatic potential of D1 and D2 dopamine agonistsI Alkorta, H O Villar
Chempluschem|May 14, 2021
The Electrophilicities of XCF<sub>3</sub> and XCl (X=H, Cl, Br, I) and the Propensity of These Molecules To Form Hydrogen and Halogen Bonds with Lewis Bases: An Ab Initio StudyI Alkorta, A C Legon
Protein Engineering|July 1, 1996
A 3D model of the delta opioid receptor and ligand-receptor complexesI Alkorta, G H Loew
Journal of Molecular Graphics & Modelling|August 6, 1999
Similarity studies on guanidinium, imidazolinium, and imidazolium cations: toward new bradykinin antagonistsC Dardonville, I Rozas, I Alkorta
Acta Crystallographica. Section B, Structural Science|December 2, 2000
Supramolecular structure of 1H-pyrazoles in the solid state: a crystallographic and ab initio studyC Foces-Foces, I Alkorta, J Elguero
Reviews on Environmental Health|September 16, 2010
Phytostabilization of metal contaminated soilsI Alkorta, J M Becerril, C Garbisu
Pageof 3