ASTM-E1970 Historical Revision Information
Standard Practice for Statistical Treatment of Thermoanalytical Data

ASTM-E1970 - 2006 EDITION - SUPERSEDED
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Standard Practice for Statistical Treatment of Thermoanalytical Data
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Scope

1.1 This practice details the statistical data treatment used in some thermal analysis methods.

1.2 The method describes the commonly encountered statistical tools of the mean, standard derivation, relative standard deviation, pooled standard deviation, pooled relative standard deviation and the best fit to a straight line, all calculations encountered in thermal analysis methods.

1.3 Some thermal analysis methods derive the analytical value from the slope or intercept of a best fit straight line assigned to three or more sets of data pairs. Such methods may require an estimation of the precision in the determined slope or intercept. The determination of this precision is not a common statistical tool. This practice details the process for obtaining such information about precision.

1.4 SI units are the standard.

1.5 There are no ISO methods equivalent to this practice.

Significance and Use

The standard deviation, or one of its derivatives, such as relative standard deviation or pooled standard deviation, derived from this practice, provides an estimate of precision in a measured value. Such results are ordinarily expressed as the mean value ± the standard deviation, that is, X ± s.

If the measured values are, in the statistical sense, normally distributed about their mean, then the meaning of the standard deviation is that there is a 67 % chance, that is 2 in 3, that a given value will lie within the range of ± one standard deviation of the mean value. Similarly, there is a 95 % chance, that is 19 in 20, that a given value will lie within the range of ± two standard deviations of the mean. The two standard deviation range is sometimes used as a test for outlying measurements.

The calculation of precision in the slope and intercept of a line, derived from experimental data, commonly is required in the determination of kinetic parameters, vapor pressure or enthalpy of vaporization. This practice describes how to obtain these and other statistically derived values associated with measurements by thermal analysis.

Keywords

intercept; mean; precision; relative standard deviation; slope; standard deviation; ICS Number Code 03.120.30 (Application of statistical methods); 17.200.10 (Heat. Calorimetry)

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Document Number

ASTM-E1970-06

Revision Level

2006 EDITION

Status

Superseded

Modification Type

Revision

Publication Date

March 1, 2006

Document Type

Practice

Page Count

4 pages

Committee Number

E37.10