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  1. Thermodynamic properties. Spectral data. Vapor pressure of liquid. Density of ethanol at various temperatures. Data obtained from Lange 1967. These data correlate as ρ [g/cm 3] = −8.461834 × 10 −4 T [°C] + 0.8063372 with an R2 = 0.99999. Properties of aqueous ethanol solutions. Data obtained from Lange 1967. Boiling points of aqueous solutions.

  2. Online calculator, figures and tables showing density and specific weight of ethanol at temperatures ranging from -25 to 325 °C (-10 to 620 °F) at atmospheric and higher pressure - Imperial and SI Units.

  3. Density of ethane at varying temperature and pressure, SI and Imperial units: The density of liquid ethane is nearly the same for all pressures up to 100 bara and -50 °C (-60°F), and the density of the liquid at equilibrium pressure can be used for most practical purposes.

  4. Thermal equation of State and Critical point of Ethane. There are three parts to this experiment. They are: To measure a number of p-V-isotherms of ethane. Determine the critical temperature and pressure of ethane. Calculate the constants of the Van der Waals equation and the radius of the molecules. NOTE:

  5. Modify the access date according your visit. Online calculator, figures and tables showing density and specific weight of ethanol at temperatures ranging from -25 to 325 °C (-10 to 620 °F) at atmospheric and higher pressure - Imperial and SI Units.

  6. explain why the boiling points of alcohols and phenols are much higher than those of alkanes, ethers, etc., of similar molecular mass. discuss the factors that are believed to determine the acidity of alcohols and phenols. list a given series of alcohols or phenols in order of increasing or decreasing acidity.

  7. 1 Νοε 1999 · Mixtures of ethanol, containing 5–100% ethanol, were made up in water w/w and their density and sound velocity measured. Apparent volumes, isentropic compressibilities and compressibility hydration numbers were then calculated.