A method for efficiently developing flow interconnects has been demonstrated.AB - We report on a microfabrication techniques for realizing re-configurable micro fluidics devices using polymethylsiloxane material (PDMS). Field(s) of Research: Ergodic Theory, Topological Dynamics and Symbolic Dynamics Field(s) of Research: Partial differential equations on manifolds, Analysis on CR manifolds, Asymptotic distribution of eigenvalues and eigenfunctions, Scattering theory, Random fields The adhesion energy is a function of the PDMS composition as well as chemical treatment. Field(s) of Research: Dynamical systems The mechanical characteristics of the material, including the Young's modulus and the adhesion energy have been determined experimentally. Field(s) of Research: Geometric Analysis
View full fingerprint Field(s) of Research: Dynamical Systems
Field(s) of Research: Geometric Topology Field(s) of Research: Dynamical systems and ergodic theory Field(s) of Research: Algebraic Geometry
Field(s) of Research: Symplectic geometry, contact geometry, Topological groupoids A method for efficiently developing flow interconnects has been demonstrated.UR - http://www.scopus.com/inward/record.url?scp=0032626712&partnerID=8YFLogxKUR - http://www.scopus.com/inward/citedby.url?scp=0032626712&partnerID=8YFLogxKBT - Proceedings of the IEEE Micro Electro Mechanical Systems (MEMS)T2 - Proceedings of the 1999 12th IEEE International Conference on Micro Electro Mechanical Systems, MEMS"We use cookies to help provide and enhance our service and tailor content. Re-configurable fluid circuits by PDMS elastomer micromachiningRe-configurable fluid circuits by PDMS elastomer micromachiningRe-configurable fluid circuits by PDMS elastomer micromachining The magnitude of Young's modulus ranges from 8.7×10T1 - Re-configurable fluid circuits by PDMS elastomer micromachiningN2 - We report on a microfabrication techniques for realizing re-configurable micro fluidics devices using polymethylsiloxane material (PDMS). Liu, Chang (Co-PD/PI) Liu, Chang (PD/PI) Northwestern University; Project: Research project. Overview; Project Details Status: Finished: Effective start/end date: 10/1/06 → 9/30/11: Funding. Quant Researcher, Citadel Securities. ... Chang Liu. A method for efficiently developing flow interconnects has been demonstrated. Phone number: 847-467-1658 Office location: Lunt B20 danielfletcher2023@u.northwestern.edu Proceedings of the 1999 12th IEEE International Conference on Micro Electro Mechanical Systems, MEMS Field(s) of Research: Geometric analysis Field(s) of Research: Complex Dynamics Y1 - 1999/1/1.
The magnitude of Young's modulus ranges from 8.7×105 Pa to 3.6×105 Pa. N2 - We report on a microfabrication techniques for realizing re-configurable micro fluidics devices using polymethylsiloxane material (PDMS).
The adhesion energy is a function of the PDMS composition as well as chemical treatment. Field(s) of Research: Mirror symmetry, symplectic aspects; homological mirror symmetry; Fukaya category, Mirror symmetry
Chang LIU My pdf CV can also be found here ().Summary PhD candidate in Electrical Engineering at Northwestern University with concentration on network economics, game theory and optimization.
Security Programming Language Deep Learning. Field(s) of Research: Probability theory Field(s) of Research: Arithmetic, number theory Eric Chang. The mechanical characteristics of the material, including the Young's modulus and the adhesion energy have been determined experimentally. We report on a microfabrication techniques for realizing re-configurable micro fluidics devices using polymethylsiloxane material (PDMS).
Chang-Hua Liu Materials Science and Engineering Post-doctorial Researcher Room 3087 Cook Hall Tel: (847) 491-5957 Fax: (847) 491-7820 Email: changhua@northwestern.edu The mechanical characteristics of the material, including the Young's modulus and the adhesion energy have been determined experimentally. Xiao Wang Northwestern University Verified email at cs.northwestern.edu. title = "Re-configurable fluid circuits by PDMS elastomer micromachining", abstract = "We report on a microfabrication techniques for realizing re-configurable micro fluidics devices using polymethylsiloxane material (PDMS). AU - Aluru, Narayan.
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