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What is the pH of tetrahydrofuran?

pH of 99.9% pure tetrahydrofuran is around 4.5 - 5.0 (Sigma-Aldrich)


What does THF mean?

THF stands for tetrahydrofuran, which is a solvent commonly used in organic chemistry reactions. It is a heterocyclic compound with a cyclic ether structure.


Is mineral oil soluble in a solution ofwater and tetrahydrofuran?

Mineral oil is insoluble in water due to its nonpolar nature, but it is soluble in tetrahydrofuran (THF) as they are both nonpolar compounds. Therefore, mineral oil would likely be soluble in a solution of water and tetrahydrofuran.


What is the molar mass of tetrahydrofuran?

72.11 grams/mole


What is the solvent for PVC?

The solvent commonly used for PVC is tetrahydrofuran (THF). It is often used to dissolve PVC for various applications such as adhesive formulations or polymer processing.


Where can I find the list Density of Tetrahydrofuran at different temperature?

You can typically find tables with densities of Tetrahydrofuran at different temperatures in chemical engineering or chemistry handbooks, online databases like NIST Chemistry WebBook or CRC Handbook of Chemistry and Physics, or through academic research articles focused on the properties of Tetrahydrofuran.


Is tetrahydrofuran a polar solvent?

Yes, tetrahydrofuran (THF) is a polar solvent. It has a dipole moment due to its oxygen atom and is capable of forming hydrogen bonds with other molecules, making it a good solvent for polar compounds.


Is napthalene aromatic?

Yes, naphthalene is aromatic. It consists of two-fused benzene rings, making it an aromatic hydrocarbon.


Is NOT an aromatic vegetable?

Carrot is not an aromatic vegetable.


Is purine aromatic?

Yes, purine is aromatic.


Is glucose aromatic?

Glucose is not an aromatic. It has no smell whatsoever.


Why tetrahydrofuran has a dipole moment of 1.1D?

Tetrahydrofuran (THF) has a dipole moment of 1.1D because of the molecular structure of the molecule. THF is a polar molecule due to the difference in electronegativity between the oxygen atom and the carbon atoms in the ring structure. This leads to a separation of charge, resulting in a net dipole moment for the molecule.