This book will deal with different sections associated with
bending, buckling and vibration of nanobeams and nanoplates along
with systematic description of handling the complexities when
nanoscales are considered. The introduction includes basic ideas
concerned with nanostructures, the algorithms and iterations
followed in numerical methods and introduction to beam and plate
theories in conjunction with nonlocal elasticity theory applied in
nanostructures.Next, the investigation of nanobeams and nanoplates
subjected to different sets of boundary conditions based on various
nonlocal theories will be included. The varieties of physical and
geometrical parameters that influence the bending, buckling and
vibration mechanisms will be summarized.Finally, effect of
environments such as thermal environment, Winkler-Pasternak elastic
foundations and non-uniformity etc. on the buckling and vibration
mechanisms will be illustrated.
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