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List of Possible Elimination Products from Methylcyclohexanols
Name | Structure | b.p. (oC) | A | B | C | Kovats Index | MS Spectrum | ΔHf0(kJ/mol) |
1-Methylcyclohexene | 110.3 | 17.480 | -2371.5 | -3.2568 | 765 | link | -81.3 | |
3-Methylcyclohexene | 104.0 | 17.369 | -2317.8 | -3.2306 | 740 | link | -75.2 | |
4-Methylcyclohexene | 102.7 | 17.373 | -2319.7 | -3.2315 | link | |||
Methylenecyclohexane | 103.0 | 750 | link | -61.3 | ||||
Vinylcyclopentane | 97.0 | link | -33.5 | |||||
Ethylidenecyclopentane | 113-117 | 737 | link | -56.8 | ||||
1-Ethylcyclopentene | 106.3 | 17.642 | -2373.0 | -3.2987 | 754 | link | -58.4 | |
3-Ethylcyclopentene | 97.8 | 17.517 | -2313.6 | -3.2689 | link | |||
4-Ethylcyclopentene | 98.3 | 17.523 | -2316.6 | -3.2704 | link |
The vapor pressure can be calculated using the A, B and C parameter according to the formula
log p= A + B/T + C*log(T) (T in K)