Dynamic viscosity of liquid lithium at different temperatures
<p><strong>Dynamic viscosity of liquid lithium at different temperatures</strong></p> <p>Junjie Chen</p> <p>Department of Energy and Power Engineering, School of Mechanical and Power Engineering, Henan Polytechnic University, 2000 Century Avenue, Jiaozuo, Henan, 454000, P.R. China</p> <p>Contributor: Junjie Chen, ORCID: 0000-0001-5055-4309, E-mail address: komcjj@gmail.com</p> <p> </p> <p>The viscosity of a fluid is a measure of its resistance to deformation at a given rate. For liquids, it corresponds to the informal concept of "thickness": for example, syrup has a higher viscosity than water. Viscosity quantifies the internal frictional force between adjacent layers of fluid that are in relative motion. For instance, when a viscous fluid is forced through a tube, it flows more quickly near the tube's axis than near its walls. In general, viscosity depends on a fluid's state, such as its temperature, pressure, and rate of deformation. However, the dependence on some of these properties is negligible in certain cases. For example, the viscosity of a Newtonian fluid does not vary significantly with the rate of deformation. The dynamic viscosity of the fluid, often simply referred to as the viscosity.</p> <p>Temperature (degrees Celsius), Dynamic viscosity (grams per meter per second)</p> <p>200 0.566</p> <p>250 0.503</p> <p>300 0.453</p> <p>350 0.412</p> <p>400 0.379</p> <p>450 0.352</p> <p>500 0.328</p> <p>550 0.308</p> <p>600 0.29</p> <p>650 0.275</p> <p>700 0.261</p> <p>750 0.249</p> <p>800 0.238</p> <p>850 0.228</p> <p>900 0.219</p> <p>950 0.211</p> <p>1000 0.204</p> <p>1050 0.197</p> <p>1100 0.191</p> <p>1150 0.185</p> <p>1200 0.18</p> <p>1250 0.175</p> <p>1300 0.17</p> <p>1350 0.166</p> <p>1400 0.162</p> <p>1450 0.158</p> <p>1500 0.155</p> <p>1550 0.151</p> <p>1600 0.148</p> <p>1650 0.145</p> <p>1700 0.142</p> <p>1750 0.139</p> <p>1800 0.137</p> <p>1850 0.135</p> <p>1900 0.132</p> <p>1950 0.13</p> <p>2000 0.128</p> <p>Contributor: Junjie Chen, ORCID: 0000-0001-5055-4309, E-mail address: komcjj@gmail.com, Department of Energy and Power Engineering, School of Mechanical and Power Engineering, Henan Polytechnic University, 2000 Century Avenue, Jiaozuo, Henan, 454000, P.R. China</p>
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