What is the structure of 1 Methylcyclohexene?
1-Methylcyclohexene | C7H12 – PubChem.
What is the molar mass of 1 Methylcyclohexene?
98.186 g/molMethylcyclohexane / Molar mass
What is the refractive index of 1 Methylcyclohexene?
refractive index n20/D 1.45 (lit.)
What does h1 NMR tell?
NMR spectra tell us how many C and H atoms are in a molecule and which atoms are attached to which.
What is the melting point of 1-methylcyclohexene?
-12.00 °C.
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Appearance: | colorless clear liquid (est) |
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Melting Point: | -12.00 °C. @ 760.00 mm Hg |
Boiling Point: | 110.30 °C. @ 760.00 mm Hg |
Vapor Pressure: | 30.600000 mmHg @ 25.00 °C. |
Flash Point: | 30.20 °F. TCC ( -1.00 °C. ) |
How do you make methylcyclohexene?
61 second suggested clip0:109:03Synthesis of 4-Methylcyclohexene – YouTubeYouTube
What is the purpose of proton NMR?
Proton nuclear magnetic resonance (proton NMR, hydrogen-1 NMR, or 1H NMR) is the application of nuclear magnetic resonance in NMR spectroscopy with respect to hydrogen-1 nuclei within the molecules of a substance, in order to determine the structure of its molecules.
Is 1-methylcyclohexene solubility in water?
The solubility of 1-methylcyclohexene in water at 25°C was reported to be 52 g(1)/106 g(2). The corresponding mass percent and mole fraction, x1, calculated by the compilers are 0.0052 g(1)/100g sln and 9.7 x 10-6.
What is the boiling point of 1-methylcyclohexene in Celsius?
110-111 °C
1-METHYL-1-CYCLOHEXENE Properties Boiling point: 110-111 °C (lit.)
What is the relationship between 1-methylcyclohexene and 3-methylcyclohexene?
According to the GC, the product consisted of about 31% 1-methylcyclohexene and 69% 3-methylcyclohexene. This ratio corresponds to the stability of 3-methylcyclohexene. Since 3-methylcyclohexene is the more substituted, and thus more stable, alkene it should be formed at a higher rate than 1-methylcyclohexene.
Is 1-methylcyclohexene an alkyl halide?
1-iodo-1-methylcyclohexane is a tertiary alkyl halide. It tends to undergo E1 eliminations to give the most stable product — the most highly substituted alkene — 1-methylcyclohexene. The t-butoxide ion is a strong base, but it is bulky.