![Table 3 from Prediction of self-diffusion coefficient and shear viscosity of water and its binary mixtures with methanol and ethanol by molecular simulation. | Semantic Scholar Table 3 from Prediction of self-diffusion coefficient and shear viscosity of water and its binary mixtures with methanol and ethanol by molecular simulation. | Semantic Scholar](https://d3i71xaburhd42.cloudfront.net/e1bceac7ffc5c548b4c5d01251366b22e5f19c15/56-Table3-1.png)
Table 3 from Prediction of self-diffusion coefficient and shear viscosity of water and its binary mixtures with methanol and ethanol by molecular simulation. | Semantic Scholar
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Table 3 from Binary diffusion coefficients for mixtures of ionic liquids [EMIM][N(CN)2], [EMIM][NTf2], and [HMIM][NTf2] with acetone and ethanol by dynamic light scattering (DLS). | Semantic Scholar
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Comparison of models for predicting pore space indices and their relationships with CO2 and N2O fluxes in a corn–soybean field
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Table 1 from Three-Porosity Model for Predicting the Gas Diffusion Coefficient in Undisturbed Soil | Semantic Scholar
The Effect of Temperature on Kinetics and Diffusion Coefficients of Metallocene Derivatives in Polyol-Based Deep Eutectic Solvents | PLOS ONE
![PDF] Self-Diffusion Coefficients of Lennard-Jones Liquids and Gases for Various Models in the Modified Free Volume Theory:Tables | Semantic Scholar PDF] Self-Diffusion Coefficients of Lennard-Jones Liquids and Gases for Various Models in the Modified Free Volume Theory:Tables | Semantic Scholar](https://d3i71xaburhd42.cloudfront.net/f5cfa3309b95ccd3f1ea1910385f7eac8bbb212f/7-Table4-1.png)
PDF] Self-Diffusion Coefficients of Lennard-Jones Liquids and Gases for Various Models in the Modified Free Volume Theory:Tables | Semantic Scholar
![SOLVED:At what temperature will the diffusion coefficient for the diffusion of zinc in copper have a value of 2.6 ×10^-16 m^2 / s ? Use the diffusion data in Table 5.2. SOLVED:At what temperature will the diffusion coefficient for the diffusion of zinc in copper have a value of 2.6 ×10^-16 m^2 / s ? Use the diffusion data in Table 5.2.](https://cdn.numerade.com/previews/4c8f5c80-e59b-4477-a8d5-72bbbe3ba4a3_large.jpg)