Title : Molecular Dynamics Simulation of the Oil Sequestration Properties of a Nonionic Rhamnolipid.

Pub. Date : 2018 Apr 12

PMID : 29547289






4 Functional Relationships(s)
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1 The results showed that the trapped decane molecules provide stability to the Rha-C10-C10 aggregates of size N = 50 which are shown to be unstable in our previous study and allow for the growth of larger aggregates than pure Rha-C10-C10 in water. decane homeobox C10 Homo sapiens
2 The results showed that the trapped decane molecules provide stability to the Rha-C10-C10 aggregates of size N = 50 which are shown to be unstable in our previous study and allow for the growth of larger aggregates than pure Rha-C10-C10 in water. decane homeobox C10 Homo sapiens
3 The results showed that the trapped decane molecules provide stability to the Rha-C10-C10 aggregates of size N = 50 which are shown to be unstable in our previous study and allow for the growth of larger aggregates than pure Rha-C10-C10 in water. decane homeobox C10 Homo sapiens
4 The results showed that the trapped decane molecules provide stability to the Rha-C10-C10 aggregates of size N = 50 which are shown to be unstable in our previous study and allow for the growth of larger aggregates than pure Rha-C10-C10 in water. decane homeobox C10 Homo sapiens