Real-Time Tunable Optofluidic Splitter via Two Laminar Flow Streams in a Microchannel. [PDF]
Xiong S, Mai W, Huang X.
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Discussion: “Resistance Coefficients for Laminar and Turbulent Flow Through One-Half-Inch Valves and Fittings” (Kittredge, C. P., and Rowley, D. S., 1957, Trans. ASME, 79, pp. 1759–1764) [PDF]
R. J. S. Pigott
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Development of processing window for the continuous manufacturing of flexible and anisotropic piezoresistive films using magnetic‐field assisted alignment of Ni particles on a roll‐to‐roll processing line. Abstract Flexible pressure sensors are highly sought after for applications like rehabilitation healthcare, advanced wearable electronics ...
Nagarpita Moka Vidyanag+3 more
wiley +1 more source
Diathermy and bone sawing are high aerosol yield procedures. [PDF]
Hamilton V+7 more
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This study proposes a magnetoelastic strain sensor for highly deformed posture perception. The sensor can maintain stable sensing signal output under significant strain (200%) and at varying stretch rates (ranging from 1000 to 8000 mm min−1). The sensor design is simple and can be applied to soft robots and wearable devices.
Jing Shu+12 more
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Heat Transfer in Laminar Flow with Internal Heat Generation in Concentric Annulus [PDF]
Itaru Michiyoshi
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3D Wiring Microelectrodes in a PMMA Microfluidic Device by Vacuum Filling Method
This paper proposes a method for fabricating 3D wiring microelectrodes in arbitrary designs within 3D‐printed microfluidics. By attaching a PDMS lid and using vacuum filling, low‐melting‐point alloy (LMA) is introduced into microchannels. This enables the creation of 50 µm microelectrodes, including complex shapes.
Keisuke Sugahara+4 more
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Numerical analyses of a reference wing for combination of hybrid laminar flow control and variable camber. [PDF]
Jentys MM+3 more
europepmc +1 more source
Possible similarity solutions of the laminar natural convection flow of non-newtonian fluids [PDF]
Tsung Yen Na, Arthur G. Hansen
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A Dynamic Double‐Flow Gut‐On‐Chip Model for Predictive Absorption Studies In Vitro
This study presents a novel millifluidic gut‐on‐chip model using the MIVO® device to replicate human intestinal conditions. Dynamic co‐culture of CaCo‐2 and HT‐29 cells accelerates differentiation, modulates mucus thickness, and enhances barrier function.
Maria Elisabetta Federica Palamà+6 more
wiley +1 more source