69
Halmos, P. R. (1950). Measure theory. Litton Educational Publishing (reprinted by SpringerVerlag, 1974).
Hutton, C. (1795). A mathematical and philosophical dictionary. London: Johnson.
Idrac, J. (1960). Measure et instrument de mesure. Paris: Dunod.
International Bureau of Weights and Measures (BIPM). (2019). The international system of units
(SI) (“SI Brochure”) (9th ed.). Sèvres: BIPM.
International Bureau of Weights and Measures (BIPM) and Other Six International Organizations.
(1993). International vocabulary of basic and general terms in metrology (VIM) (2nd ed.).
Geneva: ISO.
International Organization for Standardization (ISO). (1994). ISO 5725-1:1994, Accuracy (trueness and precision) of measurement methods and results—Part 1: General principles and definitions. Geneva: ISO.
International Organization for Standardization (ISO). (2009). ISO 80000-1:2009, Quantities and
units—Part 1: General. Geneva: ISO.
International Organization for Standardization (ISO) and Other Three International Organizations.
(1984). International vocabulary of basic and general terms in metrology (VIM) (1st ed.).
Geneva: International Bureau of Weights and Measures (BIPM), International Electrotechnical
Commission (IEC), International Organization for Standardization (ISO), International
Organization of Legal Metrology (OIML).
Joint Committee for Guides in Metrology (JCGM). (2008a). JCGM 100:2008, Evaluation of measurement data—Guide to the expression of uncertainty in measurement (GUM). Sèvres: JCGM.
Retrieved from www.bipm.org/en/publications/guides/gum.html
Joint Committee for Guides in Metrology (JCGM). (2008b). JCGM 101:2008, Evaluation of
measurement data—Supplement 1 to the “Guide to the expression of uncertainty in measurement”—Propagation of distributions using a Monte Carlo method. Sèvres: JCGM. Retrieved
from www.bipm.org/en/publications/guides/gum.html
Joint Committee for Guides in Metrology (JCGM). (2012). JCGM 200:2012, International
Vocabulary of Metrology—Basic and general concepts and associated terms (VIM) (3rd ed.).
Sèvres: JCGM. (2008 version with minor corrections). Retrieved from www.bipm.org/en/publications/guides/vim.html
Kelly, E. J. (1916). The Kansas silent reading tests. Journal of Educational Psychology, 7, 63–80.
Kuhn, T. S. (1961). The function of measurement in modern physical science. Isis, 52(2), 161–193.
Lira, I. (2002). Evaluating the measurement uncertainty: Fundamentals and practical guidance.
London: Institute of Physics Publishing.
Mari, L., Maul, A., Torres Irribarra, D., & Wilson, M. (2017). Quantities, quantification, and the
necessary and sufficient conditions for measurement. Measurement, 100, 115–121.
Mari, L., Narduzzi, C., Nordin, G., & Trapmann, S. (2020). Foundations of uncertainty in evaluation of nominal properties. Measurement, 152, 1–7.
Mari, L., & Sartori, S. (2007). A relational theory of measurement: Traceability as a solution to the
non-transitivity of measurement results. Measurement, 40, 233–242.
Matthews, M. (1996). Teaching to read. Chicago, IL: University of Chicago Press.
Maul, A., Mari, L., & Wilson, M. (2019). Intersubjectivity of measurement across the sciences.
Measurement, 131, 764–770.
Mencattini, A., & Mari, L. (2015). A conceptual framework for concept definition in measurement:
The case of ‘sensitivity’. Measurement, 72, 77–87.
Michell, J. (2005). The logic of measurement: A realist overview. Measurement, 38, 285–294.
Michell, J., & Ernst, C. (1996). The axioms of quantity and the theory of measurement. Translated
from Part I of Otto Hölder’s German text “Die axiome der quantität und die lehre vom mass”.
Journal of Mathematical Psychology, 40(3), 235–252.
Mislevy, R. J. (2018). Sociocognitive foundations of educational measurement. Milton Park:
Routledge.
Newton, I. (1724). The mathematical principles of natural philosophy. Translated into English by
A. Motte, London.
References
Halmos, P. R. (1950). Measure theory. Litton Educational Publishing (reprinted by SpringerVerlag, 1974).
Hutton, C. (1795). A mathematical and philosophical dictionary. London: Johnson.
Idrac, J. (1960). Measure et instrument de mesure. Paris: Dunod.
International Bureau of Weights and Measures (BIPM). (2019). The international system of units
(SI) (“SI Brochure”) (9th ed.). Sèvres: BIPM.
International Bureau of Weights and Measures (BIPM) and Other Six International Organizations.
(1993). International vocabulary of basic and general terms in metrology (VIM) (2nd ed.).
Geneva: ISO.
International Organization for Standardization (ISO). (1994). ISO 5725-1:1994, Accuracy (trueness and precision) of measurement methods and results—Part 1: General principles and definitions. Geneva: ISO.
International Organization for Standardization (ISO). (2009). ISO 80000-1:2009, Quantities and
units—Part 1: General. Geneva: ISO.
International Organization for Standardization (ISO) and Other Three International Organizations.
(1984). International vocabulary of basic and general terms in metrology (VIM) (1st ed.).
Geneva: International Bureau of Weights and Measures (BIPM), International Electrotechnical
Commission (IEC), International Organization for Standardization (ISO), International
Organization of Legal Metrology (OIML).
Joint Committee for Guides in Metrology (JCGM). (2008a). JCGM 100:2008, Evaluation of measurement data—Guide to the expression of uncertainty in measurement (GUM). Sèvres: JCGM.
Retrieved from www.bipm.org/en/publications/guides/gum.html
Joint Committee for Guides in Metrology (JCGM). (2008b). JCGM 101:2008, Evaluation of
measurement data—Supplement 1 to the “Guide to the expression of uncertainty in measurement”—Propagation of distributions using a Monte Carlo method. Sèvres: JCGM. Retrieved
from www.bipm.org/en/publications/guides/gum.html
Joint Committee for Guides in Metrology (JCGM). (2012). JCGM 200:2012, International
Vocabulary of Metrology—Basic and general concepts and associated terms (VIM) (3rd ed.).
Sèvres: JCGM. (2008 version with minor corrections). Retrieved from www.bipm.org/en/publications/guides/vim.html
Kelly, E. J. (1916). The Kansas silent reading tests. Journal of Educational Psychology, 7, 63–80.
Kuhn, T. S. (1961). The function of measurement in modern physical science. Isis, 52(2), 161–193.
Lira, I. (2002). Evaluating the measurement uncertainty: Fundamentals and practical guidance.
London: Institute of Physics Publishing.
Mari, L., Maul, A., Torres Irribarra, D., & Wilson, M. (2017). Quantities, quantification, and the
necessary and sufficient conditions for measurement. Measurement, 100, 115–121.
Mari, L., Narduzzi, C., Nordin, G., & Trapmann, S. (2020). Foundations of uncertainty in evaluation of nominal properties. Measurement, 152, 1–7.
Mari, L., & Sartori, S. (2007). A relational theory of measurement: Traceability as a solution to the
non-transitivity of measurement results. Measurement, 40, 233–242.
Matthews, M. (1996). Teaching to read. Chicago, IL: University of Chicago Press.
Maul, A., Mari, L., & Wilson, M. (2019). Intersubjectivity of measurement across the sciences.
Measurement, 131, 764–770.
Mencattini, A., & Mari, L. (2015). A conceptual framework for concept definition in measurement:
The case of ‘sensitivity’. Measurement, 72, 77–87.
Michell, J. (2005). The logic of measurement: A realist overview. Measurement, 38, 285–294.
Michell, J., & Ernst, C. (1996). The axioms of quantity and the theory of measurement. Translated
from Part I of Otto Hölder’s German text “Die axiome der quantität und die lehre vom mass”.
Journal of Mathematical Psychology, 40(3), 235–252.
Mislevy, R. J. (2018). Sociocognitive foundations of educational measurement. Milton Park:
Routledge.
Newton, I. (1724). The mathematical principles of natural philosophy. Translated into English by
A. Motte, London.
References
