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N M Djordjevic

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

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Electrophoresis|August 25, 2001
Separation of peptides utilizing ultrahigh-temperature micellar electrokinetic chromatographyN M Djordjevic, F Fitzpatrick, F Houdiere
Biomedical Chromatography : BMC|July 1, 1998
High temperature and temperature programming in capillary HPLCN M Djordjevic, F Houdiere, P Fowler
Electrophoresis|May 31, 2001
Evaluation of ODS-AQ stationary phase for use in capillary electrochromatographyN M Djordjevic, F Fitzpatrick, F Houdiere
Analytical Chemistry|June 7, 2011
Combination of column temperature gradient and mobile phase flow gradient in microcolumn and capillary column high-performance liquid chromatographyF Houdiere, P W Fowler, N M Djordjevic
Analytical Chemistry|June 10, 2011
HPLC separation of oligonucleotides in isocratic and temperature-programming modeN M Djordjevic, F Houdiere, P Fowler, et al.
Journal of Chromatography. A|August 29, 2000
High temperature and temperature programming in capillary electrochromatographyN M Djordjevic, F Fitzpatrick, F Houdiere, et al.
Journal of Chromatography. A|October 28, 1999
Reversed-phase liquid chromatographic separation of complex samples by optimizing temperature and gradient time I. Peak capacity limitationsJ W Dolan, L R Snyder, N M Djordjevic, et al.
Journal of Chromatography. A|October 28, 1999
Reversed-phase liquid chromatographic separation of complex samples by optimizing temperature and gradient time II. Two-run assay proceduresJ W Dolan, L R Snyder, N M Djordjevic, et al.
Journal of Chromatography. A|December 20, 1996
Combined use of temperature and solvent strength in reversed-phase gradient elution. I. Predicting separation as a function of temperature and gradient conditionsP L Zhu, L R Snyder, J W Dolan, et al.
Journal of Chromatography. A|May 30, 1998
Simultaneous variation of temperature and gradient steepness for reversed-phase high-performance liquid chromatography method development. I. Application to 14 different samples using computer simulationJ W Dolan, L R Snyder, N M Djordjevic, et al.
Pageof 1

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

Sort By:
Pageof 1
Electrophoresis|August 25, 2001
Separation of peptides utilizing ultrahigh-temperature micellar electrokinetic chromatographyN M Djordjevic, F Fitzpatrick, F Houdiere
Biomedical Chromatography : BMC|July 1, 1998
High temperature and temperature programming in capillary HPLCN M Djordjevic, F Houdiere, P Fowler
Electrophoresis|May 31, 2001
Evaluation of ODS-AQ stationary phase for use in capillary electrochromatographyN M Djordjevic, F Fitzpatrick, F Houdiere
Analytical Chemistry|June 7, 2011
Combination of column temperature gradient and mobile phase flow gradient in microcolumn and capillary column high-performance liquid chromatographyF Houdiere, P W Fowler, N M Djordjevic
Analytical Chemistry|June 10, 2011
HPLC separation of oligonucleotides in isocratic and temperature-programming modeN M Djordjevic, F Houdiere, P Fowler, et al.
Journal of Chromatography. A|August 29, 2000
High temperature and temperature programming in capillary electrochromatographyN M Djordjevic, F Fitzpatrick, F Houdiere, et al.
Journal of Chromatography. A|October 28, 1999
Reversed-phase liquid chromatographic separation of complex samples by optimizing temperature and gradient time I. Peak capacity limitationsJ W Dolan, L R Snyder, N M Djordjevic, et al.
Journal of Chromatography. A|October 28, 1999
Reversed-phase liquid chromatographic separation of complex samples by optimizing temperature and gradient time II. Two-run assay proceduresJ W Dolan, L R Snyder, N M Djordjevic, et al.
Journal of Chromatography. A|December 20, 1996
Combined use of temperature and solvent strength in reversed-phase gradient elution. I. Predicting separation as a function of temperature and gradient conditionsP L Zhu, L R Snyder, J W Dolan, et al.
Journal of Chromatography. A|May 30, 1998
Simultaneous variation of temperature and gradient steepness for reversed-phase high-performance liquid chromatography method development. I. Application to 14 different samples using computer simulationJ W Dolan, L R Snyder, N M Djordjevic, et al.
Pageof 1