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Predicted properties of the compound entered.

ID AAARTTJTRNAYHQ-VHSXEESVSA-N
Formula C10H19N
IUPAC Name (4aS,8aR)-1-methyl-decahydroquinoline
SMILES
Standard InChI
Standard InChIKey
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Other Names and Identifiers
Standard InChI (User Input) InChI=1S/C10H19N/c1-11-8-4-6-9-5-2-3-7-10(9)11/h9-10H,2-8H2,1H3/t9-,10+/m0/s1
Standard InChIKey (User Input) InChIKey=AAARTTJTRNAYHQ-VHSXEESVSA-N
Non-Standard InChI
Non-Standard InChIKey
Other Names and Identifiers (4aS,8aR)-1-methyl-3,4,4a,5,6,7,8,8a-octahydro-2H-quinoline | 875-63-8 | EINECS 212-875-8 | trans-Decahydro-1-methylquinoline | (4aS,8aR)-1-methyldecahydroquinoline | InChI=1/C10H19N/c1-11-8-4-6-9-5-2-3-7-10(9)11/h9-10H,2-8H2,1H3/t9-,10+/m0/s | quinoline, decahydro-1-methyl-, (4aS,8aR)-
This prediction is based on QSPR only and is the first basic approximate estimation.
For more property data (~2,100 data sets per compound) with higher accuracy , try our new database.
Mol-Instincts Database
 
Property Value Unit Accuracy
Absolute Entropy of Ideal Gas at 298.15K and 1bar - - -
Acentric Factor - - -
Critical Compressibility Factor - - -
Critical Pressure - - -
Critical Temperature - - -
Critical Volume - - -
Enthalpy of Formation for Ideal Gas at 298.15K - - -
Liquid Molar Volume at 298.15K - - -
Molecular Weight - - -
Net Standard State Enthalpy of Combustion at 298.15K - - -
Normal Boiling Point - - -
Melting Point - - -
Refractive Index - - -
Solubility Parameter at 298.15K - - -
Standard State Absolute Entropy at 298.15K and 1bar - - -
Standard State Enthalpy of Formation at 298.15K and 1bar - - -
Magnetic Susceptibility - - -
Polarizability - - -
Flash Point - - -
Parachor - - -
Lower Flammability Limit Temperature - - -
Lower Flammability Limit Volume Percent - - -
Upper Flammability Limit Temperature - - -
Upper Flammability Limit Volume Percent - - -
Liquid Density at Normal Boiling Point - - -
Heat of Vaporization at 298.15K - - -
Heat of Vaporization at Normal Boiling Point - - -
Water Solubility - - -
For professional applications, try our new chemical database based on quantum mechanics - more property data (~2,100 data sets per compound) with higher accuracy.

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1H NMR prediction -
13C NMR prediction -
COSY -
HSQC/HMBC prediction -
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