Dimensional analysis revisited

The applicability of dimensional analysis (DA) is discussed in relation to the metabolic scaling laws. The evolution of different theories of biological similarity has shown that the calculated reduced exponents (b) of Huxley's allometric equation are closely correlated with the numerical value...

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Main Authors: BRUNO GÜNTHER, ENRIQUE MORGADO
Format: Article
Language:English
Published: BMC 2003-01-01
Series:Biological Research
Subjects:
Online Access:http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0716-97602003000300011
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spelling doaj-45a60903f05a40c99f2f4e162d4e27282020-11-25T02:27:32ZengBMCBiological Research0716-97600717-62872003-01-01363-4405410Dimensional analysis revisitedBRUNO GÜNTHERENRIQUE MORGADOThe applicability of dimensional analysis (DA) is discussed in relation to the metabolic scaling laws. The evolution of different theories of biological similarity has shown that the calculated reduced exponents (b) of Huxley's allometric equation are closely correlated with the numerical values obtained from the statistical analysis of empirical data. Body mass and body weight are not equivalent as biological reference systems, since in accordance to Newton's second law, the former has a dimension of a mass, while the latter should be dimensionally considered as a force (W = MLT-2). This distinction affects the coefficients of the mass exponent (a). This difference is of paramount importance in microgravity conditions (spaceflight) and of buoyancy during the fetal life in mammals. Furthermore, the coefficients (ß) of the length dimension, and (g) of the time dimension do not vary when mass or weight are utilized as reference systems. Consequently, the "specific metabolic time," that results from the ratio of basal oxygen consumption and body mass or body weight yields the "biological meaning" of the time dimension, which is of fractal nature.http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0716-97602003000300011Dimensional analysisAllometric scalingTheories of biological similarityBody massBody weight
collection DOAJ
language English
format Article
sources DOAJ
author BRUNO GÜNTHER
ENRIQUE MORGADO
spellingShingle BRUNO GÜNTHER
ENRIQUE MORGADO
Dimensional analysis revisited
Biological Research
Dimensional analysis
Allometric scaling
Theories of biological similarity
Body mass
Body weight
author_facet BRUNO GÜNTHER
ENRIQUE MORGADO
author_sort BRUNO GÜNTHER
title Dimensional analysis revisited
title_short Dimensional analysis revisited
title_full Dimensional analysis revisited
title_fullStr Dimensional analysis revisited
title_full_unstemmed Dimensional analysis revisited
title_sort dimensional analysis revisited
publisher BMC
series Biological Research
issn 0716-9760
0717-6287
publishDate 2003-01-01
description The applicability of dimensional analysis (DA) is discussed in relation to the metabolic scaling laws. The evolution of different theories of biological similarity has shown that the calculated reduced exponents (b) of Huxley's allometric equation are closely correlated with the numerical values obtained from the statistical analysis of empirical data. Body mass and body weight are not equivalent as biological reference systems, since in accordance to Newton's second law, the former has a dimension of a mass, while the latter should be dimensionally considered as a force (W = MLT-2). This distinction affects the coefficients of the mass exponent (a). This difference is of paramount importance in microgravity conditions (spaceflight) and of buoyancy during the fetal life in mammals. Furthermore, the coefficients (ß) of the length dimension, and (g) of the time dimension do not vary when mass or weight are utilized as reference systems. Consequently, the "specific metabolic time," that results from the ratio of basal oxygen consumption and body mass or body weight yields the "biological meaning" of the time dimension, which is of fractal nature.
topic Dimensional analysis
Allometric scaling
Theories of biological similarity
Body mass
Body weight
url http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0716-97602003000300011
work_keys_str_mv AT brunogunther dimensionalanalysisrevisited
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