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Martin Ludwig

Showing results (1-10 of 41) with videos related to

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Electrophoresis|November 13, 2003
Surface modification in microchip electrophoresisDetlev Belder, Martin Ludwig
Electrophoresis|August 6, 2003
Microchip electrophoresis for chiral separationsDetlev Belder, Martin Ludwig
Physical Chemistry Chemical Physics : PCCP|February 4, 2021
First-principles calculation of <sup>11</sup>B solid-state NMR parameters of boron-rich compounds II: the orthorhombic phases MgB<sub>7</sub> and MgB<sub>12</sub>C<sub>2</sub> and the boron modification γ-B<sub>28</sub>Martin Ludwig, Harald Hillebrecht
Electrophoresis|August 6, 2003
Coated microfluidic devices for improved chiral separations in microchip electrophoresisMartin Ludwig, Detlev Belder
Physical Chemistry Chemical Physics : PCCP|December 15, 2020
First-principles calculation of <sup>11</sup>B solid-state NMR parameters of boron-rich compounds I: the rhombohedral boron modifications and B<sub>12</sub>X<sub>2</sub> (X = P, As, O)Martin Ludwig, Harald Hillebrecht
Electrophoresis|November 27, 2004
Subsecond chiral separations on a microchipNatalia Piehl, Martin Ludwig, Detlev Belder
Electrophoresis|October 1, 2003
High-speed chiral separations on a microchip with UV detectionMartin Ludwig, Frank Kohler, Detlev Belder
Electrophoresis|November 26, 2008
Impact of laser excitation intensity on deep UV fluorescence detection in microchip electrophoresisPhilipp Schulze, Martin Ludwig, Detlev Belder
The Journal of Physical Chemistry. A|January 31, 2020
GIAO versus GIPAW: Comparison of Methods To Calculate <sup>11</sup>B NMR Shifts of Icosahedral <i>Closo</i>-Heteroboranes toward Boron-Rich BoridesMartin Ludwig, Daniel Himmel, Harald Hillebrecht
The Journal of Chemical Physics|July 17, 2017
Low-scaling first-order properties within second-order Møller-Plesset perturbation theory using Cholesky decomposed density matricesSigurd Vogler, Martin Ludwig, Marina Maurer, et al.
Pageof 5

Showing results (1-10 of 41) with videos related to

Sort By:
Pageof 5
Electrophoresis|November 13, 2003
Surface modification in microchip electrophoresisDetlev Belder, Martin Ludwig
Electrophoresis|August 6, 2003
Microchip electrophoresis for chiral separationsDetlev Belder, Martin Ludwig
Physical Chemistry Chemical Physics : PCCP|February 4, 2021
First-principles calculation of <sup>11</sup>B solid-state NMR parameters of boron-rich compounds II: the orthorhombic phases MgB<sub>7</sub> and MgB<sub>12</sub>C<sub>2</sub> and the boron modification γ-B<sub>28</sub>Martin Ludwig, Harald Hillebrecht
Electrophoresis|August 6, 2003
Coated microfluidic devices for improved chiral separations in microchip electrophoresisMartin Ludwig, Detlev Belder
Physical Chemistry Chemical Physics : PCCP|December 15, 2020
First-principles calculation of <sup>11</sup>B solid-state NMR parameters of boron-rich compounds I: the rhombohedral boron modifications and B<sub>12</sub>X<sub>2</sub> (X = P, As, O)Martin Ludwig, Harald Hillebrecht
Electrophoresis|November 27, 2004
Subsecond chiral separations on a microchipNatalia Piehl, Martin Ludwig, Detlev Belder
Electrophoresis|October 1, 2003
High-speed chiral separations on a microchip with UV detectionMartin Ludwig, Frank Kohler, Detlev Belder
Electrophoresis|November 26, 2008
Impact of laser excitation intensity on deep UV fluorescence detection in microchip electrophoresisPhilipp Schulze, Martin Ludwig, Detlev Belder
The Journal of Physical Chemistry. A|January 31, 2020
GIAO versus GIPAW: Comparison of Methods To Calculate <sup>11</sup>B NMR Shifts of Icosahedral <i>Closo</i>-Heteroboranes toward Boron-Rich BoridesMartin Ludwig, Daniel Himmel, Harald Hillebrecht
The Journal of Chemical Physics|July 17, 2017
Low-scaling first-order properties within second-order Møller-Plesset perturbation theory using Cholesky decomposed density matricesSigurd Vogler, Martin Ludwig, Marina Maurer, et al.
Pageof 5