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The main novelty of the proposed simulations is based on the characterization of stiffness performances of passive joints-based proteins (α helix deca-alanine, repressor of primer protein and immunoglobulin protein) and active joints-based viral protein motor (VPL) in their native environment.
A method for validating quantum simulations is based on interrogating the system with a modulated magnetic field.
The generation of network models and simulations is based on Monte Carlo method.
The execution of simulations is based on the notion of rounds.
The time-domain solution with Monte Carlo simulations is based on solving a set of deterministic problems.
The scenario used in the system-level simulations is based on configuration #4b HetNet scenario in [21].
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All simulations were based on simulated sibling pairs only, and the simulated marker was assumed to be the actual QTL.
The simulation model is based on [19].
The simulation model is based on the following assumptions.
It boils down to the details of the assumptions the simulations are based on.
Simulations are based on 5000 runs.
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