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Morofolina Conductividad PDF

This document provides a polynomial equation and coefficients to estimate the thermal conductivity of morpholine from 273K to 1200K. The polynomial uses temperature (T) as an independent variable to calculate thermal conductivity (λ) in W/mK. Coefficients are given for A, B, C, and D but no explicit numeric values for thermal conductivity are provided.

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0% found this document useful (0 votes)
86 views1 page

Morofolina Conductividad PDF

This document provides a polynomial equation and coefficients to estimate the thermal conductivity of morpholine from 273K to 1200K. The polynomial uses temperature (T) as an independent variable to calculate thermal conductivity (λ) in W/mK. Coefficients are given for A, B, C, and D but no explicit numeric values for thermal conductivity are provided.

Uploaded by

Hugh Manta
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© © All Rights Reserved
We take content rights seriously. If you suspect this is your content, claim it here.
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Document ID: 1995liesch88_30

DOI:
Bibliography: Liessmann, G.; Schmidt, W.; Reiffarth, S. Data compilation of the Saechsische
Olefinwerke Boehlen, Germany, p. 89 (1995)
Title: Recommended Thermophysical Data.
Abstract: lambda (W/m*K) = A + B*T + C*T**2 + D*T**3

1. Compound: Morpholine
Other Names: 1-Oxa-4-azacyclohexane, Diethylene imidoxide, Diethylene oximide, Diethylenimide
oxide, Tetrahydro-1,4-oxazine
Formula: C4H9NO
CAS-regno: 110-91-8
ChemSpiderID: 13837537
InChI-string: -
Purity: -
1. Property: Thermal conductivity, W/m/K
Keywords: organic, pure compound, gas state, ideal

Values: Explicitly numeric values are not given. For estimations, please have a look at the
graphs presented in the original article.
Polynomial Expansion: lambda (W/m*K) = A + B*T + C*T**2 + D*T**3

No. T min T max coeff. A coeff. B coeff. C coeff. D

1 273.000 1200.00 -7.59359E-4 -1.52363E-5 1.85089E-7 -7.45124E-11

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