1-Naphthalenemethanol, decahydro-5-[(3E)-5-hydroxy-3-methyl-3-penten-1-yl]-1,4a-dimethyl-6-methylene-, (1S,4aR,5S,8aR)- (CAS 1857-24-5) – Thermophysical Properties

This page provides thermophysical, transport, safety, and environmental property data for 1-Naphthalenemethanol, decahydro-5-[(3E)-5-hydroxy-3-methyl-3-penten-1-yl]-1,4a-dimethyl-6-methylene-, (1S,4aR,5S,8aR)-, along with a property calculator for evaluating values at user-defined temperature and pressure conditions.

Related Calculators for 1-Naphthalenemethanol, decahydro-5-[(3E)-5-hydroxy-3-methyl-3-penten-1-yl]-1,4a-dimethyl-6-methylene-, (1S,4aR,5S,8aR)-

Input Conditions

Enter a pure component, temperature, and pressure.

Results

Calculated properties for the given state will appear here.

1-Naphthalenemethanol, decahydro-5-[(3E)-5-hydroxy-3-methyl-3-penten-1-yl]-1,4a-dimethyl-6-methylene-, (1S,4aR,5S,8aR)-

Identification

AtomsC: 20, H: 34, O: 2
CAS1857-24-5
FormulaC20H34O2
ID1-Naphthalenemethanol, decahydro-5-[(3E)-5-hydroxy-3-methyl-3-penten-1-yl]-1,4a-dimethyl-6-methylene-, (1S,4aR,5S,8aR)-
InChIC20H34O2/c1-15(10-13-21)6-8-17-16(2)7-9-18-19(3,14-22)11-5-12-20(17,18)4/h10,17-18,21-22H,2,5-9,11-14H2,1,3-4H3/b15-10+/t17-,18-,19+,20+/m0/s1
InChI KeyMJHWZTRFACWHTA-AKZLODSSSA-N
IUPAC Name(e)-5-[(1s,4ar,5s,8ar)-5-(hydroxymethyl)-5,8a-dimethyl-2-methylidene-3,4,4a,6,7,8-hexahydro-1h-naphthalen-1-yl]-3-methylpent-2-en-1-ol
Molecular Weight (kg/kmol)306.483
Phases
PubChem ID1.5559e+7
SMILESC=C1CC[C@H]2[C@@](C)(CO)CCC[C@]2(C)[C@H]1CC/C(C)=C/CO
Synonyms

Physical Properties

Acentric factor
Critical pressure (bar)16.1
Critical temperature (°C)516.85
Critical volume (m³/kmol)1.03
Dipole moment
Melting temperature (°C)219.41
Normal boiling temperature (°C)593.31

State-dependent Properties

API gravity14.222
Compressibility factor0.0127164
Density (kg/m³)985.117
Dynamic viscosity (cP)0
Joule–Thomson coefficient
Kinematic viscosity
Molar enthalpy (kJ/kmol)0
Molar enthalpy of vaporization (kJ/kmol)7.1408e+4
Molar entropy (kJ/(kmol·K))0
Molar Gibbs free energy (kJ/kmol)0
Molar heat capacity (kJ/(kmol·K))459.681
Molar volume (m³/kmol)0.311113
Parachor
Poynting correction factor
Prandtl number
Saturation pressure (bar)0
Solubility parameter1.4727e+4
Specific enthalpy (kJ)0
Specific enthalpy of vaporization (kJ)232.992
Specific entropy (kJ/kg·K)0
Specific Gibbs free energy (kJ)0
Specific gravity0.986087
Specific heat capacity (kJ/kg·K)1.49986
Surface tension
Thermal conductivity (W/m·K)
Thermal diffusivity

Safety Properties

Autoignition temperature (°C)-273.15
Flash point temperature (°C)-273.15
Lower flammability limit0.00416983
Upper flammability limit0.0265353

Environmental Properties

Global warming potential
Ozone depletion potential

Failed Properties:

Saturation temperature (°C)Failed

About This Property Calculator

This tool provides a comprehensive set of thermophysical, safety, and environmental properties for 1-Naphthalenemethanol, decahydro-5-[(3E)-5-hydroxy-3-methyl-3-penten-1-yl]-1,4a-dimethyl-6-methylene-, (1S,4aR,5S,8aR)-. By default, the state-dependent properties like density, viscosity, and heat capacity are calculated at standard conditions of 25 °C (298.15 K) and 1 atm (101325 Pa).

How to Calculate Properties at Different Conditions

You can use the interactive calculator above to compute properties at your desired temperature and pressure. Simply enter your target values in the input fields and click the "Calculate Properties" button. The results table will update with the new values.

For example, to find the density of liquid 1-Naphthalenemethanol, decahydro-5-[(3E)-5-hydroxy-3-methyl-3-penten-1-yl]-1,4a-dimethyl-6-methylene-, (1S,4aR,5S,8aR)- at 50 °C and 2 bar, you would:

  1. Select your preferred unit system (e.g., Metric).
  2. Enter "50" into the Temperature field.
  3. Enter "2" into the Pressure field.
  4. Click "Calculate Properties."

The calculator will then display the updated density and other state-dependent properties for these specific conditions. This functionality is essential for process design, equipment sizing, and safety analysis in chemical engineering.

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