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Arvind Raman

Showing results (1-10 of 54) with videos related to

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Physical Review Letters|February 21, 2006
Chaos in atomic force microscopyShuiqing Hu, Arvind Raman
Nanotechnology|August 12, 2011
Inverting amplitude and phase to reconstruct tip-sample interaction forces in tapping mode atomic force microscopyShuiqing Hu, Arvind Raman
Nanotechnology|November 11, 2011
Quantitative force and dissipation measurements in liquids using piezo-excited atomic force microscopy: a unifying theoryDaniel Kiracofe, Arvind Raman
Biophysical Journal|March 11, 2014
Local viscoelastic properties of live cells investigated using dynamic and quasi-static atomic force microscopy methodsAlexander Cartagena, Arvind Raman
The Review of Scientific Instruments|July 8, 2008
VEDA: a web-based virtual environment for dynamic atomic force microscopyJohn Melcher, Shuiqing Hu, Arvind Raman
The Review of Scientific Instruments|February 4, 2012
Gaining insight into the physics of dynamic atomic force microscopy in complex environments using the VEDA simulatorDaniel Kiracofe, John Melcher, Arvind Raman
Beilstein Journal of Nanotechnology|July 12, 2013
Multiple regimes of operation in bimodal AFM: understanding the energy of cantilever eigenmodesDaniel Kiracofe, Arvind Raman, Dalia Yablon
Soft Matter|November 14, 2019
Measuring viscoelasticity of soft biological samples using atomic force microscopyYuri M Efremov, Takaharu Okajima, Arvind Raman
The Journal of the Acoustical Society of America|November 1, 2003
Two-dimensional streaming flows induced by resonating, thin beamsTolga Açikalin, Arvind Raman, Suresh V Garimella
Nanotechnology|May 16, 2020
Nanomechanical mapping in air or vacuum using multi-harmonic signals in tapping mode atomic force microscopyNurul Huda Shaik, Ronald G Reifenberger, Arvind Raman
Pageof 6

Showing results (1-10 of 54) with videos related to

Sort By:
Pageof 6
Physical Review Letters|February 21, 2006
Chaos in atomic force microscopyShuiqing Hu, Arvind Raman
Nanotechnology|August 12, 2011
Inverting amplitude and phase to reconstruct tip-sample interaction forces in tapping mode atomic force microscopyShuiqing Hu, Arvind Raman
Nanotechnology|November 11, 2011
Quantitative force and dissipation measurements in liquids using piezo-excited atomic force microscopy: a unifying theoryDaniel Kiracofe, Arvind Raman
Biophysical Journal|March 11, 2014
Local viscoelastic properties of live cells investigated using dynamic and quasi-static atomic force microscopy methodsAlexander Cartagena, Arvind Raman
The Review of Scientific Instruments|July 8, 2008
VEDA: a web-based virtual environment for dynamic atomic force microscopyJohn Melcher, Shuiqing Hu, Arvind Raman
The Review of Scientific Instruments|February 4, 2012
Gaining insight into the physics of dynamic atomic force microscopy in complex environments using the VEDA simulatorDaniel Kiracofe, John Melcher, Arvind Raman
Beilstein Journal of Nanotechnology|July 12, 2013
Multiple regimes of operation in bimodal AFM: understanding the energy of cantilever eigenmodesDaniel Kiracofe, Arvind Raman, Dalia Yablon
Soft Matter|November 14, 2019
Measuring viscoelasticity of soft biological samples using atomic force microscopyYuri M Efremov, Takaharu Okajima, Arvind Raman
The Journal of the Acoustical Society of America|November 1, 2003
Two-dimensional streaming flows induced by resonating, thin beamsTolga Açikalin, Arvind Raman, Suresh V Garimella
Nanotechnology|May 16, 2020
Nanomechanical mapping in air or vacuum using multi-harmonic signals in tapping mode atomic force microscopyNurul Huda Shaik, Ronald G Reifenberger, Arvind Raman
Pageof 6