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Postdoctoral Position in Molecular Modeling of Polymer at the University of Delaware Center for Composite Materials

Submitted by sockalsi on

Applications are invited for a postdoctoral position at the University of Delaware Center for Composite Materials (UD-CCM) focused on molecular modeling of polymer materials – PE and Epoxy. The successful applicant will closely work with Dr. Sanjib C Chowdhury and Professor John W Gillespie Jr to predict thermo-mechanical properties of the model materials through molecular dynamics simulations.

Use of phase change materials (PCMs) to mitigate early age thermal cracking in concrete: Theoretical considerations

Submitted by shavijabranko on

Dear all,

We have recently published a paper related to modelling of the influence of addition of phase change materials (PCMs) on early age cracking in concrete. Registered subscribers can view it at: http://www.sciencedirect.com/science/article/pii/S0950061816314878

Here is the abstract:

 

PhD Position at McGill University in Smart Advanced Materials

Submitted by Hamid.Akbarzadeh on

One PhD position is available for Fall 2017 in the Bioresource Engineering Department of McGill University. The research is on the Multiscale Modelling of Smart Advanced Materials. Theoretical, computational, and experimental studies will be conducted for design and analysis of smart advanced materials for energy scavenging. The candidate will work under the supervision of Dr. Hamid Akbarzadeh at McGill University. For this position, 

 

Required qualifications for the position are:

Free-standing graphene slit membrane for enhanced desalination

Submitted by Jingjie Yeo on

http://dx.doi.org/10.1016/j.carbon.2016.09.043 This study considers two novel ideas to further explore and enhance the graphene membrane for desalination. Firstly, while earlier molecular dynamics (MD) simulations studies have used frozen membranes, free-standing membrane is considered here. Since 2D membranes are usually embedded on porous support in the experimental reverse osmosis (RO) process, the free-standing membrane can more accurately model the behavior expected during operation.