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Nanotechnology|July 7, 2011
A method to quantitatively measure the elastic modulus of materials in nanometer scale using atomic force microscopyB Tang, A H W Ngan, J B PethicaJournal of Materials Science. Materials in Medicine|May 25, 2007
An improved method for the measurement of mechanical properties of bone by nanoindentationB Tang, A H W Ngan, W W LuJournal of the Mechanical Behavior of Biomedical Materials|March 10, 2012
Reliable measurement of elastic modulus of cells by nanoindentation in an atomic force microscopeZ L Zhou, A H W Ngan, B Tang, et al.Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|August 26, 2003
Mechanical analog of temperature for the description of force distribution in static granular packingsA H W NganIET Nanobiotechnology|March 20, 2012
Hepatitis B surface antigen-antibody interactions studied by optical tweezersZ L Zhou, B Tang, A H W Ngan, et al.Physical Review Letters|March 24, 2005
Size dependence of incipient dislocation plasticity in Ni3AlL Zuo, A H W Ngan, G P ZhengScientific Reports|June 4, 2016
Direct microfabrication of oxide patterns by local electrodeposition of precisely positioned electrolyte: the case of Cu2OP Wang, R C Roberts, A H W NganPhysical Review Letters|January 22, 2002
Energy dissipation in atomic force microscopy and atomic loss processesP M Hoffmann, S Jeffery, J B Pethica, et al.Journal of the Mechanical Behavior of Biomedical Materials|July 25, 2009
Use of focused ion beam milling for investigating the mechanical properties of biological tissues: a study of human primary molarsY L Chan, A H W Ngan, N M KingJournal of Cellular Physiology|April 5, 2013
Frequency-dependent cell death by optical tweezers manipulationK S Ng, Z L Zhou, A H W NganPageof 65