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1-Methylcyclohexene. Except where otherwise noted, data are given for materials in their standard state (at 25 °C [77 °F], 100 kPa). 1-Methylcyclohexene an organic compound consisting of cyclohexene with a methyl group substituent attached to the alkene group. Two other structural isomers are known: 3-methylcyclohexene and 4-methylcyclohexene.
Methylcyclohexene. Methylcyclohexene can refer to any of three compounds: 1-Methylcyclohexene. 3-Methylcyclohexene. 4-Methylcyclohexene. set index article chemical compounds. Categories: Set index articles on chemistry. Cyclohexenes.
Infobox references. 4-Methylcyclohexene is an organic compound consisting of cyclohexene with a methyl group substituent attached to carbon most distant from the alkene group. Two other structural isomers are known: 1-methylcyclohexene and 3-methylcyclohexene. All are colorless volatile liquids classified as a cyclic olefins.
Infobox references. Cyclohexene is a hydrocarbon with the formula (CH2)4C2H2. It is an example of a cycloalkene. At room temperature, cyclohexene is a colorless liquid with a sharp odor. Among its uses, it is an intermediate in the commerical synthesis of nylon.
Methylcyclohexane (cyclohexylmethane) is an organic compound with the molecular formula is CH 3 C 6 H 11. Classified as saturated hydrocarbon, it is a colourless liquid with a faint odor. Methylcyclohexane is used as a solvent. It is mainly converted in naphtha reformers to toluene. [4]
M N−1. In chemistry, the molar mass (M) (sometimes called molecular weight or formula weight, but see related quantities for usage) of a chemical compound is defined as the ratio between the mass and the amount of substance (measured in moles) of any sample of the compound. [1] The molar mass is a bulk, not molecular, property of a substance.
Infobox references. 3-Methylcyclohexene an organic compound consisting of cyclohexene with a methyl group substituent adjacent to the alkene group. Two other structural isomers are known: 1-methylcyclohexene and 4-methylcyclohexene. All are colorless volatile liquids classified as a cyclic olefins. They are specialized reagents.
The ideal gas equation can be rearranged to give an expression for the molar volume of an ideal gas: = = Hence, for a given temperature and pressure, the molar volume is the same for all ideal gases and is based on the gas constant: R = 8.314 462 618 153 24 m 3 ⋅Pa⋅K −1 ⋅mol −1, or about 8.205 736 608 095 96 × 10 −5 m 3 ⋅atm⋅K ...