Doctorate Degree | Scholarship for Nigerians and Africans - Part 362

Postdoctoral Position in Mechanical Screening and Selection of Circulating Cells, Netherlands

The Department of Biomedical Engineering is a cooperation of Eindhoven University of Technology (TU/e) and the Faculty of Health, Medicine and Life Sciences of the University of Maastricht. The department participates in distinguishing research programs. Research areas are Molecular Bioengineering & Molecular Imaging; Biomechanics & Tissue Engineering; and Biomedical Imaging & Modeling. TU/e is situated in the European technology hotspot ‘Brainport Eindhoven’, known for its many high-tech industries and start-ups. A sparkling environment with opportunities for talented people.

The Department of Mechanical Engineering considers as the core of their activities design, realization and analysis of new products, processes and materials. Besides the basis of (solid and fluid) mechanics, materials, control and thermodynamics, parts of mathematics, physics, chemistry and computing science are important supporting tools. The field is explored by a combination of modeling using fundamental concepts and applied engineering and technology. Automotive Engineering Science and Micro- amp; Nano-Scale Engineering are important departmental themes. The Mechanical Engineering Department comprises about 1000 students and 250 staff members.

Cell lysis is the process of disrupting a cell membrane in order to obtain intracellular material, such as DNA, RNA, proteins, organelles, mitochondria, chloroplasts, etc, for further analysis or use. This is therefore an essential step in many biological and biomedical applications, for example for the sequencing of DNA originating from prokaryotic and eukaryotic cells, or for infectious disease testing in which NA of bacteria or viruses must be detected. There are a number of existing lysis methods. Most of them use large volumes and are not suitable for integration in lab-on-chip systems. Methods using chemicals and /or enzymes to lyse cells could be miniaturized, but are considered to be too expensive or too invasive in disposable diagnostic systems. Our approach is to use the combination of electroporation (using electric fields generated by electrodes integrated in the device) with elongational flows to lyse cells in a controlled way within a micro-fluidic system. The advantage of this approach is that it may lead to a gentle, controlled lysis procedure. In addition, the approach would give the opportunity to study cell lysis in a controlled way in order to understand the process better.

The basic idea is that electroporation introduces controlled defects in the cell membrane, effectively weakening it. A subsequent exposure of the cell to an elongational flow would then deform it until complete lysis occurs. This process is reminiscent of classical fracture mechanics approaches.

The aim of the PostDoc project is to design variations of fluidic and electrode geometries to study the lysis method, in particular the effect of lysis on cell content, e.g. proteins or complexes of proteins. The device and the method need to be optimized to obtain a highly controllable method. The focus will be on circulating cells from the blood stream. Based on the experimental results, a model describing the cell failure has to be developed. This model will basically consist of the viscoelastic model for cell deformation, extended with a failure model. The combination of the numerical model and the experiments will lead to a better understanding and prediction of the effects of cell lysis. The project is embedded in a larger research program on ‘Circulating Cells’, performed by a consortium of several academic, clinical and industrial partners and funded by the Center for Translational Molecular Medicine (CTMM). The PostDoc will interact with these partners, and will be collaborating with existing activities on cell mechanical studies at the Materials Technology Institute.

Requirements

We are looking for candidates with a PhD in biomedical engineering, mechanical engineering, applied chemistry, etc. with a strong affinity for experimental and/or numerical micro-fluidic experiments, cell biology or mechanics, and biomedical applications.

Appointment and Salary

We offer:

* A challenging job at a dynamic and ambitious University
* The appointment is for one year. After a good evaluation your contract can be extended with 7 more months.
* The gross monthly salary will be in accordance with the Collective Labor Agreement of the Dutch Universities (CAO NU) and amounts initially to at least € 2861 per month (scale 10.4) depending on prior experience.
* An attractive package of fringe benefits (including excellent work facilities, end of the year allowance and sport facilities).

Application Deadline 31-08-2010
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Postdoctoral Position in Chemical Process Intensification, Netherlands

We have a post doc position available on the following themes:
Oxidative coupling of methane, ethylene, synthesis gas, dual function catalyst, membrane reactor.

Abstract
The direct route for the production of ethylene from natural gas via oxidative coupling of methane (OCM) in a single step is still high on the industrial wish-list, but has proven a major scientific and technological challenge. However, when the exothermic oxidative coupling of methane is combined with endothermic steam/dry reforming of the by-products of the OCM and additional methane, ethylene and syngas can be produced simultaneously in an autothermal process. Thus, a higher methane conversion (avoiding a large methane recycle) and efficient use of the by-products of the OCM is combined with optimal heat integration.

The integration of the exothermic and endothermic reactions is optimally achieved on the catalyst particle scale, which would make the reactor configuration much simpler (no lateral temperature gradients in the reactor) and cheaper compared to a non-isothermal membrane reactor. Detailed simulations on the integration of the reactions on the particle scale have been carried out in a previous ASPECT project titled ‘Simultaneous production of ethylene and synthesis gas combining the oxidative coupling and reforming of methane in a reverse flow membrane reactor with a dual function catalyst’, and have shown that it is theoretically indeed possible to integrate the oxidative coupling and steam reforming of methane on the particle scale, making effective use of intra-particle mass transfer limitations.

The simulations have led to a first possible design of the dual-function catalyst particle. In this follow-up project, we propose to actually fabricate the dual-function catalyst and to demonstrate its performance for the combined autothermal process experimentally. The deliverables of the project are new knowledge on the fabrication of dual-function catalysts, detailed reaction kinetics for this reaction system and an experimental proof-of-principle of reaction integration on the particle scale in a packed bed membrane reactor.

Requirements
We are looking for a talented and enthusiastic post-doc with a master degree in Chemical Engineering, with solid background and a strong research and publication record in the area of heterogeneous catalysis and/or membrane reactors. The candidate is required to have a sound experience in experimental work as well as modeling of chemical reactors.

Applicants are expected to have excellent communication skills with both technical and non-technical staff, ability to work in a multidisciplinary team of scientists and engineers, excellent knowledge of written and spoken English, good attitude to lead their own projects.

Conditions of employment
We offer a challenging job at a dynamic and ambitious university. The gross monthly salary in accordance with the Collective Labor Agreement of the Dutch Universities (CAO NU) starts with € 2861,-. Besides this, the TU/e has an excellent package of attractive benefits for employees, a child-care facility, and a modern sports complex. Assistance for finding accommodation can be given.

Application Deadline September 30th, 2010.
Read more: http://scholarship-positions.com/postdoctoral-position-in-chemical-process-intensification-netherlands/2010/08/04/?utm_source=feedburner&utm_medium=feed&utm_campaign=Feed%3A+ScholarshipPositions+%28International+Scholarships+and+Financial+Aid+Positions%29&utm_content=Yahoo%21+Mail#ixzz0xQk0Q3Bw

New Europe College International Fellowships 2011-12, Romania

New Europe College – Institute for Advanced Study in Bucharest, Romania – announces the competition for Fellowships for the academic year 2011-12.
The program targets young international researchers/academics working in the fields of humanities, social studies, and economics.

Eligibility:
Applicants must be doctoral students in an advanced stage of their research, or hold a Ph.D. title. Preference is given to candidates under the age of 40, and to those who have not yet benefited from a NEC Fellowship.
Working languages: English, French, and German. A good command of English is desirable.

Duration of the Fellowship:
a) a full academic year (10 months, October through July)
or
b) a one-term fellowship (October through February, or March through July). This second possibility is open only to international fellows.

Location: New Europe College – Institute for Advanced Study, Bucharest, Romania.

The Fellowship Consists of: a monthly stipend of 600 Euro (tax free), accommodation, international transportation to and from the home country of the Fellows at the beginning and the end of the Fellowship, as well as for season holidays. The Fellows who stay for the whole academic year are offered a one-month research trip abroad to an institution of their choice (2,600 Euro for transportation, accommodation, and per diem). As an alternative, they can opt for a field research, in Romania or outside it.
The Fellows are expected to work on their own projects, and take part in the scientific events organized by the New Europe College. At the end of their Fellowship, each Fellow is expected to hand in a research paper, reflecting the results of his/her work over the duration of the Fellowship. The papers will be included in a NEC publication.

How to Apply:
Applications will be submitted in electronic format only, to the address: applications@nec.ro
Candidates are asked to enter in the
Subject field of their e-mail message ”NEC International Fellowship”.

The application form, the application guidelines and additional information on New Europe College can be downloaded here:

Application_Form_NEC-International_2011-2012.doc
Application_Guidelines_NEC_International_2011-2012.doc
Call_For_Applications_NEC_International_2011-12 .doc

The deadline for the submission of applications is November 15, 2010.
Incomplete or late applications will not be taken into consideration.

The applicants will be notified on the results of the pre-selection at the beginning of the month of March, by e-mail. The shortlisted candidates will be invited to an interview, organized at the NEC in Bucharest, on April 8-10, 2011.

Mailing address: New Europe College, str. Plantelor 21, 023971 Bucharest, Romania
Phone (+4) 021 307 9910, Fax: (+4) 021 327 0774, E-mail: applications@nec.ro


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