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yc_hust

铁杆木虫 (正式写手)

[交流] 转发实验室内部邮件系统的博后招聘信息已有3人参与

最近实验室内部邮件系统转发了两份招聘博后的信息,有适合的虫友可以投简历尝试一下!
第一则:
Our laboratory addresses emerging questions in the filed of cell and tissue
dynamics, cytoskeletal mechanics and genetic regulation (website). Our team is
interdisciplinary, composed of both biologists and physicists, and is located in the
Department of Developmental Biology and Genetics of the Curie Institute, Paris
France. Successful applicants will work on fundamental questions related to the
mechanisms of actin-myosin dynamics, cell division in tissue, regulation of tissue
morphogenesis or the interplay between biochemical and mechanical cues in tissue
dynamics. Candidates should have a background in cell biology, development
biology or physics/engineering and be highly motivated to work in a multidisciplinary
environment. Experience and publications in advanced imaging, tissue
morphogenesis or cell biomechanics will be strongly appreciated.
The Curie Institute is an ideal and challenging environment for any candidate who is
deeply interested in cell and developmental biology or interdisciplinary research.
The Institute has state-of-the-art core facilities for microscopy, protein purification
and mass spectrometry,... In addition, the Curie Institute is ideally located in the
centre of Paris and, with a large international community of students and scientists,
it provides a wonderful environment for foreign post-docs. .
Questions regarding the projects and applications (curriculum vitae, statement of
research interests, and contact information of 2 references) should be addressed by
email to: Yohanns Bellaïche: yohanns.bellaiche@curie.fr
Recent selected publications:
Bardet P-L, Guirao B, Paoletti C, Serman F, Léopold V, Bosveld F, Goya Y, Mirouse
V, Graner F Bellaïche Y. 2013. PTEN controls junction lengthening and stability
during cell rearrangement in epithelial tissue. Developmental Cell, 25:534-46.
Heisenberg C-P. and Bellaïche 2013. Forces in tissue morphogenesis and
patterning. Cell. 153:948-62.
Herszterg S, Liebfried A, Bosveld F, Martin C, Bellaiche Y. 2013. Interplay between
the dividing cell and its neighbors regulates adherens junction formation during
cytokinesis in epithelial tissue. Developmental Cell, 24: 256-70.
Bosveld F, Bonnet I, Guirao B, Tlili S, Wang Z, Petitalot A, Marchand R, Bardet PL,
Marcq P, Graner F, Bellaïche Y. 2012. Mechanical control of morphogenesis by
Fat/Dachsous/Four-jointed planar cell polarity pathway. Science. 336:724-7.
第二则:
Post Doc position in Prof. Marcio Carvalho′s research group (msc@puc-rio.br)
http://carvalho.usuarios.rdc.puc-rio.br/index.htm
Start: From November 2013.
Duration: 2 years.
Salary: R$ 120.000,00 / year (approximately US$ 51,600.00 / year).
Place: Laboratory of Microhidrodynamics and Flow through Porous Media.
Departament of Mechanical Engineering
Pontificia Universidade Católica do Rio de Janeiro (PUC-Rio)
Research Project: Flow of complex fluids through porous media.
The project is on fundamental analysis of flow of polymer solutions and emulsions through porous media. The project will involve pore-scale flow visualization (micro fluidics) and numerical solutions (finite element method for free boundary flows), capillary network model and macroscopic experiments (core flooding) and numerical model (reservoir-scale simulation). The application is related to enhanced oil recovery.
Seeking post-doctoral researcher for experimental work, including micro fluidics, complex liquid preparation and characterization and macroscopic flow analysis.
Backgroup information:
Founded in 1941, the Pontificia Universidade Catolica do Rio de Janeiro, PUC-Rio, has always been committed to excellence in education and research. Along these years, PUC-Rio played a leadership role in Brazil, being among the first universities in the country to maintain full-time faculty, conducting integrated research and teaching activities. Major investments in research and educational facilities, such as the first university computing center in Brazil in 1959, together with a well-trained faculty, has been the key to the high quality of its undergraduate and graduate (Master and Doctoral) programs.
The Department of Mechanical Engineering is part of the Science and Technology Center of PUC-Rio. This Center is ranked among the best in the country and in Latin America, and encompasses four science departments (Chemistry, Physics, Mathematics and Computer Science), five engineering departments (Mechanical, Civil, Electrical, Industrial and Materials Science). Presently, about 3500 undergraduate and 1000 graduate students are enrolled in the different programs offered at the Center.
Currently, about 400 undergraduate and 120 graduate students pursue bachelors, masters and doctoral degrees in Mechanical Engineering at PUC-Rio. Several of these students are from Latin America countries. International cooperation is also fostered by agreements with universities in France, Germany and the United States. In the last decade, the Mechanical Engineering Department has strengthen its cooperation with industry through joint research projects in areas such as oil/gas production, steel manufacturing, refrigeration, internal combustion engines, structural analysis and others. At the same time, it has maintained its activities in advanced topics in engineering sciences. The Department has 20 full-time faculty members holding doctoral degrees from leading universities in the word, such as University of
Minnesota, Stanford University, University of Michigan, Massachusetts Institute of Technology, Technische Universitat Munchen, Carnigie-Mellon University, among others.
List of recent publications from the group (2009-2013):
1. C. Talisch, A. Pereira, G. H. Paulino, I. F. Menezes e M. S. Carvalho, “Polygonal Finite Elements for Incompressible Fluid Flow”, accepted for publication, International Journal for Numerical Methods in Fluids
2. J. Roca e M. S. Carvalho, “Flow of a drop through a constricted micro-capillary”, in press, Computer & Fluids. DOI 10.1016/j.compfluid.2012.11.020
3. G. Nogueira, M. S. Carvalho e V. Alvarado, “Dynamic Network Model of Mobility Control in Emulsion Flow through Porous Media”, Transport in Porous Media, Vol.98(2), 427-441, 2013.
4. M. Sasaki, W. J. Suszynski, M. S. Carvalho e L.F. Francis, “Process limits in two-layer reverse roll transfer”, Journal of Coatings Technology and Research,vol.10(4), 485-492, 2013.
5. B. Engelke, M. S. Carvalho e V. Alvarado, “Conceptual Darcy-Scale Model of Oil Displacement with Macro Emulsion”, Energy and Fuels, vol. 27(4), 1967-1973, 2013.
6. D. Maza, M. S. Carvalho e S. Kumar, “Spreading and merging of liquid streams flowing down an inclined plane: Modeling and experiments”, Chemical Engineering Science, vol.95, 221-231, 2013.
7. P. E. Aranha, C. R. Miranda, W. F. Cardoso Jr., G. Campos, A. L. Martins, F. C. Gomes, S. B. de Araujo e M. S. Carvalho, “A Comprehensive Theoretical and Experimental Study on Fluid Displacement for Oil Well Cementing Operations”, SPE Drilling and Completion, vol.27(4), 596-603, 2012
8. E. O. Dias, E. Alvarez-Lacalle., M. S. Carvalho e J. A. Miranda, “Minimization of Viscous Fluid Fingering: A Variational Scheme for Optimal Flow Rates”, Physical Review Letters, vol.109, 144502, 2012.
9. S. Dodds, M. S. Carvalho e S. Kumar, “The dynamics of three-dimensional liquid bridges with pinned and moving contact lines”, Journal of Fluid Mechanics, vol.707, 521 - 540, 2012.
10. E. Vandre, M. S. Carvalho e S. Kumar, “Delaying the onset of dynamic wetting failure through meniscus confinement”, Journal of Fluid Mechanics, vol.707, 496 - 520, 2012.
11. V. R. Guillen, M. S. Carvalho e V. Alvarado, “Pore-scale and macroscopic displacement mechanisms in emulsion flooding”, Transport in Porous Media, vol.94, 197 – 206, 2012.
12. V. R. Guillen, M. I. Romero, M. S. Carvalho e V. Alvarado, “Capillary-driven mobility control in macro emulsion flow in porous media”, International Journal of Multiphase Flow, vol.43, 62-65, 2012.
13. M. I. Romero, M. S. Carvalho e V. Alvarado, “Experiments and Network Model of Flow of Oil-water Emulsion in Porous Media”, Physical Review E, vol.84(4), 046305, 2011.
14. S. Dodds, M. S. Carvalho e S. Kumar, “Stretching and Slipping of Liquid Bridges: The Effect of Inertia”, Physics of Fluids, vol.23(9), 092101, 2011.
15. K. Tjiptowidjojo e M. S. Carvalho, “Operability Limits of Slide Coating”, Chemical Engineering Science, vol. 66, pp.5077-5083, 2011.
16. M. Lage, H. Lopes e M. S. Carvalho, “Flows with suspended and floating particles”, Journal of Computational Physics, vol.230, pp.7736 – 7754, 2011.
17. E. B. Perez e M. S. Carvalho, “Optimization of Slot Coating Process: Minimizing the amplitude of film thickness oscillation”, Journal of Engineering Mathematics, vol. 71(1), pp.97 – 108, 2011.
18. S. F. A. Andrade, J. V. Valério e M. S. Carvalho, “Asymptotic Model of the 3D Flow in a Progressive Cavity Pump”, SPE Journal, vol.16(2), pp.451-462, 2011.
19. M. Becerra e M. S. Carvalho, “Stability of Viscoelastic Liquid Curtain”, Chemical Engineering Processing, vol.50, pp.445-449, 2011.
20. J. Nam e M. S. Carvalho, “Flow visualization and operating limits of tensioned-web-over slot die coating process”, Chemical Engineering Processing. vol.50, pp.471-477, 2011.
21. S. Dodds, M. S. Carvalho e S. Kumar, “Stretching liquid bridges with bubbles: The effect of air bubbles on liquid transfer”, Langmuir, vol.27(5), pp. 1556-1559, 2011.
22. J. Nam e M. S. Carvalho, “Linear Stability Analysis of Two-layer Rectilinear Flow in Slot Coating”, AIChE Journal, vol.56(10), pp.2503-2512, 2010.
23. J. Nam e M. S. Carvalho, “Two-layer tensioned-web-over-slot die coating: Effect of die lip geometry”, Chemical Engineering Science, vol.65, pp.4014-4026, 2010.
24. J. Nam e M. S. Carvalho, “Two-layer tensioned-web-over-slot die coating: Effect of operating conditions on coating window”, Chemical Engineering Science, vol.65, pp.4065-4079, 2010.
25. J. Nam e M. S. Carvalho, “Flow in tensioned web slot die coating: effect of die lip design”, Chemical Engineering Science, vol.65, pp.3957-3971, 2010.
26. B. Tsai, S. Kumar e M. S. Carvalho, “Leveling of thin films of colloidal suspensions”, Journal of Colloid and Interface Science, vol.343(1), pp.306-313, 2010.
27. S. Dodds, Satish Kumar e M. S. Carvalho, “Stretching and Slipping of Liquid Bridges near Plates and Cavities”, Physics of Fluids, vol.21(9), 2009.
28. K. Tjiptowidjojo e M. S. Carvalho, “Viscocapillary Model of Slide Coating: Effect of Operating Parameters and Range of Validity”, AIChE Journal, vol.55(10), pp. 2491-2505, 2009.
29. T. Pena, M. S. Carvalho e V. Alvarado, “Snap-off of a liquid drop immerse in another liquid flowing through a constricted capillary”, AIChE Journal, vol.55(8), pp.1993-1999, 2009.
30. J. Nam e M. S. Carvalho, “Mid-gap invasion in two-layer slot coating”, Journal of Fluid Mechanics, Vol. 631, pp. 397-417, 2009.
31. J. Nam, L. E. Scriven e M. S. Carvalho, “Tracking birth of vortex in flow”, Journal of Computational Physics, vol.228, pp.4549-4567, 2009.
32. S. Cobos, M. S. Carvalho e V. Alvarado, “Flow of oil-water emulsions through constricted capillary”, International Journal of Multiphase Flow, vol.35, pp.507-515, 2009.
33. J.V. Valerio, M. S. Carvalho e C. Tomei, “Efficient computation of the spectrum of viscoelastic flows”, Journal of Computational Physics, vol. 228, pp. 1172-1187, 2009.
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