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Equivalent nonlinear fracture models for pristine and reconstructed one- and two-atom vacancy defected single wall carbon nanotubes are developed by using the molecular mechanics based models where the initial reconstructed nanotube models are obtained by using molecular dynamic simulations and nonlinear characteristic of the covalent bonds are obtained by using the modified Morse potential.
The functional understanding of biological molecules (like binding properties, configuration states after binding and other individual properties of the molecular reactions) are well studied by the Molecular dynamics based model (picosecond-nanosecond; 1nm-10nm).
Our goals are to [ 13][ 14]: (1) Use the results of the Quantum Mechanics based models (molecular structure data) and Molecular dynamics models (molecular binding data) to create the micro-level biological event models.
We present results of a molecular mechanics based model of the energy minimized unit cell structure.
We used the data from the Minnesota human starvation study to verify the validity of our molecular diffusion based model.
Author reply: We proposed a molecular diffusion based model to uncover the relationship between energy intake and body weight.
To use the molecular diffusion based model to describe the relationship between energy intake and body weight, because distance x represents body attributes, it is set as a constant in this model.
Our purpose is not to do data fitting exercise, but to use the data from the Minnesota human starvation study to verify the validity of our molecular diffusion based model.
An earlier study [26] suggests that signature height 1 3 produces good results for molecular classification with SVM based models.
The decision is made by comparing two competing likelihood based models, the molecular clock (MC) and UPM.
In parallel, we apply four independent methods of molecular based species delineation: General Mixed Yule Coalescent model (GMYC), statistical parsimony, Bayesian Species Delineation (BPP) and Automatic Barcode Gap Discovery (ABGD).
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