α-phellandrene  Thermodynamic & Transport Properties
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Synonym alphaPhellandrene;2-methyl-5-isopropylcyclohexa-1,3-diene; ISONICOTINIC ACID,3-THUJYLIDENEHYDRAZIDE; alpha-phellandrene; 5-isopropyl-2-methylcyclohexa-1,3-diene; 1,3-Cyclohexadiene, 2-methyl-5-(1-methylethyl)-; 5-isopropyl-2-methyl-1,3-cyclohexadiene; 3-Thujylidenehydrazide of isonicotinic acid; (3R,5R)-(+)-2,6-DIMETHYL-3,5-HEPTANEDIOL; 2-Methyl-5-isopropyl-3-isonicotinoylhydrazono-bicyclo[3.1.0]hexan;
Molecular Weight
Normal Boiling PointNormal Boiling Point
Critical Temperature Critical temperature
Acentric FactorAcentric Factor
Dipole Momentdipole moment
Heat of Formation J/mol
Heat of Combustion J/mol
Composition
α-phellandrene :Introduction
Calculation Model :
Based on Mars Model
Temperature =
Pressure =
Specific Enthalpy =
Specific Entropy =
Reference
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α-phellandrene :Thermodynamic & Transport Properties Calculated Result
Physical State:
Molecular Weight=
Celsius,Fahrenheit,Reaumur & Thermodynamic Temperature ConversionTemperature=
absolute pressure & gauge pressurePressure=
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Saturated Vapor Pressure, boiling point (dew point), latent heat of vaporizationare are saturated properties, just enter One parameter to calculate them!
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Latent Heat of VaporizationLatent Heat of Vaporization=
Specific Heat at Constant PressureSpecific Heat(Cp)=
Specific Heat(Cv)=
Adiabatic ExponentCp/Cv=
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Compression FactorCompression Factor=
Thermal conductivityThermal Conductivity=
Thermal Diffusion CoefficientThermal Diffusivity=
Kinematic ViscosityKinematic Viscosity=
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Surface TensionSurface Tension=
Prandtl NumberPrandtl Number=

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