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atomistic mechanics [e.g.
Bailey, C. and Lu, Hua (2009) Nanopackaging simulation: properties and behavior of packaging materials. Nanotechnology Magazine, 3 (2). pp. 34-37. ISSN 1932-4510 (doi:10.1109/MNANO.2009.932413)
classical continuum mechanics (e.g.
Bailey, C. and Lu, Hua (2009) Nanopackaging simulation: properties and behavior of packaging materials. Nanotechnology Magazine, 3 (2). pp. 34-37. ISSN 1932-4510 (doi:10.1109/MNANO.2009.932413)
classical molecular dynamics (MD)]
Bailey, C. and Lu, Hua (2009) Nanopackaging simulation: properties and behavior of packaging materials. Nanotechnology Magazine, 3 (2). pp. 34-37. ISSN 1932-4510 (doi:10.1109/MNANO.2009.932413)
quantum mechanics (e.g.
Bailey, C. and Lu, Hua (2009) Nanopackaging simulation: properties and behavior of packaging materials. Nanotechnology Magazine, 3 (2). pp. 34-37. ISSN 1932-4510 (doi:10.1109/MNANO.2009.932413)
simulation tools
Bailey, C. and Lu, Hua (2009) Nanopackaging simulation: properties and behavior of packaging materials. Nanotechnology Magazine, 3 (2). pp. 34-37. ISSN 1932-4510 (doi:10.1109/MNANO.2009.932413)
the density functional method)
Bailey, C. and Lu, Hua (2009) Nanopackaging simulation: properties and behavior of packaging materials. Nanotechnology Magazine, 3 (2). pp. 34-37. ISSN 1932-4510 (doi:10.1109/MNANO.2009.932413)
the finite element method)
Bailey, C. and Lu, Hua (2009) Nanopackaging simulation: properties and behavior of packaging materials. Nanotechnology Magazine, 3 (2). pp. 34-37. ISSN 1932-4510 (doi:10.1109/MNANO.2009.932413)
virtual prototyping environment
Bailey, C. and Lu, Hua (2009) Nanopackaging simulation: properties and behavior of packaging materials. Nanotechnology Magazine, 3 (2). pp. 34-37. ISSN 1932-4510 (doi:10.1109/MNANO.2009.932413)

