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T Thundat

Showing results (1-10 of 57) with videos related to

Pageof 6
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Scanning|May 3, 2013
In situ study of electric field-induced magnetization in multiferroic BiFeO(3) nanowiresK Prashanthi, T Thundat
Journal of Nanoscience and Nanotechnology|August 12, 2003
Nanocantilever signal transduction by electron transferP G Datskos, T Thundat
Nature Nanotechnology|December 22, 2009
New modes for subsurface atomic force microscopy through nanomechanical couplingL Tetard, A Passian, T Thundat
Journal of Microscopy|October 1, 1988
Adsorbate deformation as a contrast mechanism in STM images of biopolymers in an aqueous environment: images of the unstained, hydrated DNA double helixS M Lindsay, T Thundat, L Nagahara
Nucleic Acids Research|October 11, 1994
Stretched DNA structures observed with atomic force microscopyT Thundat, D P Allison, R J Warmack
Ultramicroscopy|March 16, 2010
Atomic force microscopy of silica nanoparticles and carbon nanohorns in macrophages and red blood cellsL Tetard, A Passian, R H Farahi, et al.
Nanoscale|August 6, 2016
Nanomechanical sandwich assay for multiple cancer biomarkers in breast cancer cell-derived exosomesH Etayash, A R McGee, K Kaur, et al.
Ultramicroscopy|February 24, 2001
Measuring magnetic susceptibilities of nanogram quantities of materials using microcantileversE Finot, T Thundat, E Lesniewska, et al.
Analytical Chemistry|February 4, 2009
Standoff spectroscopy of surface adsorbed chemicalsC W Van Neste, L R Senesac, T Thundat
Ultramicroscopy|June 20, 2007
An experimental investigation of analog delay generation for dynamic control of microsensors and atomic force microscopyD Yi, A Passian, A L Lereu, et al.
Pageof 6

Showing results (1-10 of 57) with videos related to

Sort By:
Pageof 6
Scanning|May 3, 2013
In situ study of electric field-induced magnetization in multiferroic BiFeO(3) nanowiresK Prashanthi, T Thundat
Journal of Nanoscience and Nanotechnology|August 12, 2003
Nanocantilever signal transduction by electron transferP G Datskos, T Thundat
Nature Nanotechnology|December 22, 2009
New modes for subsurface atomic force microscopy through nanomechanical couplingL Tetard, A Passian, T Thundat
Journal of Microscopy|October 1, 1988
Adsorbate deformation as a contrast mechanism in STM images of biopolymers in an aqueous environment: images of the unstained, hydrated DNA double helixS M Lindsay, T Thundat, L Nagahara
Nucleic Acids Research|October 11, 1994
Stretched DNA structures observed with atomic force microscopyT Thundat, D P Allison, R J Warmack
Ultramicroscopy|March 16, 2010
Atomic force microscopy of silica nanoparticles and carbon nanohorns in macrophages and red blood cellsL Tetard, A Passian, R H Farahi, et al.
Nanoscale|August 6, 2016
Nanomechanical sandwich assay for multiple cancer biomarkers in breast cancer cell-derived exosomesH Etayash, A R McGee, K Kaur, et al.
Ultramicroscopy|February 24, 2001
Measuring magnetic susceptibilities of nanogram quantities of materials using microcantileversE Finot, T Thundat, E Lesniewska, et al.
Analytical Chemistry|February 4, 2009
Standoff spectroscopy of surface adsorbed chemicalsC W Van Neste, L R Senesac, T Thundat
Ultramicroscopy|June 20, 2007
An experimental investigation of analog delay generation for dynamic control of microsensors and atomic force microscopyD Yi, A Passian, A L Lereu, et al.
Pageof 6