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Viscosity of glycerol12/29/2023 The Journal of Physical Chemistry B 2019, 123 Sensing Temperature in Vitro and in Cells Using a BODIPY Molecular Probe. Spinning Drop Dynamics in Miscible and Immiscible Environments. Alessandro Carbonaro, Luca Cipelletti, Domenico Truzzolillo.Insights into Hydration Dynamics and Cooperative Interactions in Glycerol–Water Mixtures by Terahertz Dielectric Spectroscopy. Ali Charkhesht, Djamila Lou, Ben Sindle, Chengyuan Wen, Shengfeng Cheng, Nguyen Q.Translational and Rotational Diffusion Coefficients of Gold Nanorods Dispersed in Mixtures of Water and Glycerol by Polarized Dynamic Light Scattering. Berger Bioucas, Cornelia Damm, Wolfgang Peukert, Michael H. Revealing Protein Aggregates under Thapsigargin-Induced ER Stress Using an ER-Targeted Thioflavin. Peter Verwilst, Kyutae Kim, Kyoung Sunwoo, Hye-Ri Kim, Chulhun Kang, Jong Seung Kim.The Journal of Physical Chemistry C 2020, 124 Viscosity-Mediated Growth and Coalescence of Surface Nanodroplets. About a Membrane with Microfluidic Porous-Wall Channels of Cylindrical Shape for Droplet Formation. Breisig, Michael Alders, Matthias Wessling. ACS Applied Materials & Interfaces 2020, 12 Chiral Plasmonic Metamaterials with Tunable Chirality. Yuduo Guan, Zengyao Wang, Bin Ai, Chong Chen, Wei Zhang, Yu Wang, Gang Zhang.Industrial & Engineering Chemistry Research 2021, 60 Viscosity Model for Liquid Mixtures of Propylene Glycol, Glycerol, and Water. Effects of Shearing and Extensional Flows on the Alignment of Colloidal Rods. The Journal of Physical Chemistry Letters 2021, 12 Highly Spherical Nanoparticles Probe Gigahertz Viscoelastic Flows of Simple Liquids Without the No-Slip Condition. ACS Biomaterials Science & Engineering 2021, 7 Microfluidic 3D Printing of a Photo-Cross-Linkable Bioink Using Insights from Computational Modeling. Bahram Mirani, Evan Stefanek, Brent Godau, Seyed Mohammad Hossein Dabiri, Mohsen Akbari.Femtomolar Biodetection by a Compact Core–Shell 3D Chiral Metamaterial. Mariachiara Manoccio, Marco Esposito, Elisabetta Primiceri, Angelo Leo, Vittorianna Tasco, Massimo Cuscunà, Dmitry Zuev, Yali Sun, Giuseppe Maruccio, Alessandro Romano, Angelo Quattrini, Giuseppe Gigli, Adriana Passaseo.ACS Applied Materials & Interfaces 2021, 13 3D Magnetic Field-Controlled Synthesis, Collective Motion, and Bioreaction Enhancement of Multifunctional Peasecod-like Nanochains. Dong Liu, Shangsong Li, Ting Zhang, Hao Jiang, Yuan Lu.FM-AFM with a Hanging Fiber Probe for the Study of Liquid–Liquid Interfaces. Matthieu Rocheron, Christian Curtil, Hubert R.3D Spectroscopic Tracking of Individual Brownian Nanoparticles during Galvanic Exchange. ![]() Minh-Chau Nguyen, Pascal Berto, Fabrice Valentino, Jean-François Lemineur, Jean-Marc Noel, Frédéric Kanoufi, Gilles Tessier.Evaporation of a Sessile Colloidal Water–Glycerol Droplet: Marangoni Ring Formation. van der Linden, Xuehua Zhang, Detlef Lohse. Lijun Thayyil Raju, Christian Diddens, Yaxing Li, Alvaro Marin, Marjolein N.The steel ball is released using an electromagnet and simultaneously time is measured with a digital timer.This article is cited by 555 publications. In the present setup, the viscosity of glycerine is found by allowing a steel ball to fall through a column of glycerine and measuring the time taken by the ball to cover a known distance. For a sphere of radius r moving at velocity v in an infinitely extended fluid of dynamic viscosity η, the frictional force according to Stokes' law is given as:įor a sphere moving along the axis of a cylinder of fluid of radius R, the frictional force is: A measure for the internal friction is given by the dynamic viscosity η. The magnitude of this force depends on the geometry of the body, velocity of the body, and the internal friction of the fluid. A body moving in a fluid is acted upon by a frictional force in the opposite direction to its direction of travel.
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