Diphenylmethane-4,4'-diisocyanate  Thermodynamic & Transport Properties
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Synonym Diphenylmethane-4,4'-Diisocyanate,Benzene,_1,1'-Methylenebis(4-Isocyanato-,4,4-Diphenylmethane_Diisocyanate,1,1-Methylenebis4-Isocyanatobenzene,Methylenebis(p-Phenyl_Isocyanate),Methylenebis(4-Phenyl_Isocyanate),Methylenebis(4-Isocyanatobenzene),Bis(1,4-Isocyanatophenyl)methane,DiPhC1-44Di-iCyan,Methylenebis(p-Phenyleneisocyanate),Bis(p-Isocyanatophenyl)methane,p,p'-Methylenebis(phenylisocyanate),4,4'-Diisocyanatodiphenylmethane,p,p'-Diphenylmethane_Diisocyanate,Nacconate_300,Nci-C50668,Methylenedi-p-Phenylenediisocyanate,4,4'diphenylmethane_Diisocyanate,4,4'methylenebis(phenyl_Isocyanate),Bis(4-Isocyanatophenyl)methane,4,4'-Methylenediphenyl_Diisocyanate,4,4'-Methylenediphenyleneisocyanate;Methylene di-p-phenyl diisocyanate,flakes; 4,4'-Diphenylmethane Diisocyanate; PMDI; 4,4-Diphenylmethane Diisocyanate; bis(4-isocyanatophenyl)methane; desmodur44; 4,4'-diphenylmethanediisocyanate; Methylenediphenyl 4,4'-Diisocyanate; 4,4'-methylenediphenyl diisocyanate; 1,1‘-Methylenebis[4-isocyanatobenzene]; caradate30; MDI; 4,4'-Diphenylmethane diisocyanate; hylenem50; methylene 4,4'-diphenyl diisocyanate; 4,4'-MDI; Bis(4-isocyanatophenyl)methane; Isonate; p,p'-diphenylmethane diisocyanate; methylene; 4,4'-Methylenebis(phenyl Isocyanate);
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Normal Boiling PointNormal Boiling Point
Critical Temperature Critical temperature
Acentric FactorAcentric Factor
Dipole Momentdipole moment
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Diphenylmethane-4,4'-diisocyanate :Introduction
Calculation Model :
Based on Mars Model
Temperature =
Pressure =
Specific Enthalpy =
Specific Entropy =
Reference
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Diphenylmethane-4,4'-diisocyanate :Thermodynamic & Transport Properties Calculated Result
Physical State:
Molecular Weight=
Celsius,Fahrenheit,Reaumur & Thermodynamic Temperature ConversionTemperature=
absolute pressure & gauge pressurePressure=
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specific volumespecific volume=
Specific EnthalpySpecific Enthalpy=
Specific Entropy Specific Entropy =
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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)=
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Adiabatic ExponentCp/Cv=
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Compression FactorCompression Factor=
Thermal conductivityThermal Conductivity=
Thermal Diffusion CoefficientThermal Diffusivity=
Kinematic ViscosityKinematic Viscosity=
Dynamic ViscosityDynamic Viscosity=
Surface TensionSurface Tension=
Prandtl NumberPrandtl Number=

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