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  1. Factors influencing educational productivity.Herbert J. Walberg - 1988 - Behavioral and Brain Sciences 11 (2):214-215.
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  • Bias and sampling error in sex difference research.Douglas Wahlsten - 1988 - Behavioral and Brain Sciences 11 (2):214-214.
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  • Mathematics as male pathology.John Money - 1988 - Behavioral and Brain Sciences 11 (2):205-206.
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  • (1 other version)Mathematics, sex hormones, and brain function.Helmuth Nyborg - 1988 - Behavioral and Brain Sciences 11 (2):206-207.
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  • Biological influences on cognitive function.Doreen Kimura - 1988 - Behavioral and Brain Sciences 11 (2):200-200.
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  • Sex differences in mathematical reasoning ability: Causes, consequences, and variability.Brian Mackenzie - 1988 - Behavioral and Brain Sciences 11 (2):201-202.
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  • Sex differences in variability may be more important than sex differences in means.Lloyd G. Humphreys - 1988 - Behavioral and Brain Sciences 11 (2):195-196.
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  • Sex differences in mathematical talents remain unexplained.Earl Hunt - 1988 - Behavioral and Brain Sciences 11 (2):196-197.
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  • Spatial visualization and mathematical reasoning abilities.Sarah A. Burnett - 1988 - Behavioral and Brain Sciences 11 (2):187-188.
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  • The new math: Is XY ≥ XX?Patricia S. Goldman-Rakic & Ann S. Clark - 1988 - Behavioral and Brain Sciences 11 (2):191-191.
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  • Sex differences in mathematical reasoning ability in intellectually talented preadolescents: Their nature, effects, and possible causes.Camilla Persson Benbow - 1988 - Behavioral and Brain Sciences 11 (2):169-183.
    Several hundred thousand intellectually talented 12-to 13-year-olds have been tested nationwide over the past 16 years with the mathematics and verbal sections of the Scholastic Aptitude Test (SAT). Although no sex differences in verbal ability have been found, there have been consistent sex differences favoring males in mathematical reasoning ability, as measured by the mathematics section of the SAT (SAT-M). These differences are most pronounced at the highest levels of mathematical reasoning, they are stable over time, and they are observed (...)
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  • On the biology and politics of cognitive sex differences.David C. Geary - 1996 - Behavioral and Brain Sciences 19 (2):267-284.
    The male advantage in certain mathematical domains contributes to the difference in the numbers of males and females that enter math-intensive occupations, which in turn contributes to the sex difference in earnings. Understanding the nature and development of the sex difference in mathematical abilities is accordingly of social as well as scientific concern. A more complete understanding of the biological contributions to these differences can guide research on educational techniques that might someday produce more equal educational outcomes in mathematics and (...)
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  • The twain shall meet: Uniting the analysis of sex differences and within-sex variation.David C. Rowe - 1996 - Behavioral and Brain Sciences 19 (2):262-262.
    Spatial and mathematical abilities may be “sex-limited” traits. A sex-limited trait has the same determinants of variation within the sexes, but the genetic or environmental effects would be differentially expressed in males and females. New advances in structural equation modeling allow means and variation to be estimated simultaneously. When these statistical methods are combined with a genetically informative research design, it should be possible to demonstrate that the genes influencing spatial and mathematical abilities are sex-limited in their expression. This approach (...)
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  • Brain differences, anthropological stories, and educational implications.Christy Hammer & R. Valentine Dusek - 1996 - Behavioral and Brain Sciences 19 (2):257-257.
    Criticism of sex differences in mathematical ability and sex roles in sociobiology and the pernicious influence of these ideas on education.
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  • Sex differences in mathematical abllity: Genes, environment, and evolution.Jeffrey W. Gillger - 1996 - Behavioral and Brain Sciences 19 (2):255-256.
    Geary proposes a sociobiological hypothesis of how sex differences in math and spatial skills might have jointly arisen. His distinction between primary and secondary math skills is noteworthy, and in some ways analogous to the closed versus open systems postulated to exist for language. In this commentary issues concerning how genes might affect complex cognitive skills, the interpretation of heritability estimates, and prior research abilites are discussed.
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  • Mary has more: Sex differences, autism, coherence, and theory of mind.Uta Frith & Francesca Happé - 1996 - Behavioral and Brain Sciences 19 (2):253-254.
    We challenge the notion that differences in spatial ability are the best or only explanation for observed sex differences in mathematical word problems. We suggest two ideas from the study of autism: sex differences in theory of mind and in central coherence.
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  • How important is spatial ability to mathematics?Ann Dowker - 1996 - Behavioral and Brain Sciences 19 (2):251-251.
    This commentary focuses on one of the many issues raised in Geary's target article: the importance of gender differences in spatial ability to gender differences in mathematics. I argue that the evidence for the central role of spatial ability in mathematical ability, or in gender differences in it, is tenuous at best.
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  • All sex differences in cognitive ability may be explained by an X-Y homologous gene determining degrees of cerebral asymmetry.T. J. Crow - 1996 - Behavioral and Brain Sciences 19 (2):249-250.
    Male superiority in mathematical ability (along with female superiority in verbal fluency) may reflect the operation of an X-Y homologous gene (the right-shift-factor) influencing the relative rates of development of the cerebral hemispheres. Alleles at the locus on the Y chromosome will be selected at a later mean age than alleles on the X, and only by females.
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  • Gender differences in mathematics participation: An Australian perspective.Stephen Lamb - 1997 - Educational Studies 23 (1):105-125.
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  • Gender, Race, and Difference: Individual Consideration versus Group-based Affirmative Action in Admission to Higher Education.Alison M. Jaggar - 1997 - Southern Journal of Philosophy 35 (S1):21-51.
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  • Gender Differences in Mathematics: An Integrative Psychological Approach.David C. Geary - 2006 - British Journal of Educational Studies 54 (2):245-246.
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  • Sex-related differences in precocious mathematical reasoning ability: Not illusory, not easily explained.Camilla Persson Benbow - 1988 - Behavioral and Brain Sciences 11 (2):217-232.
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  • Sex differences in mathematics: Why the fuss?Lionel Tiger - 1988 - Behavioral and Brain Sciences 11 (2):212-212.
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  • Neuropsychological factors and mathematical reasoning ability.Alan Searleman - 1988 - Behavioral and Brain Sciences 11 (2):209-210.
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  • (1 other version)Causes of things and nature of things: Advice from Hughlings Jackson.Daniel W. Smothergill - 1988 - Behavioral and Brain Sciences 11 (2):210-210.
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  • Socialization versus biology: Time to move on.Diane McGuinness - 1988 - Behavioral and Brain Sciences 11 (2):203-204.
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  • Biology: Si! Hard-wired ability: Maybe no.Douglas T. Kenrick - 1988 - Behavioral and Brain Sciences 11 (2):199-200.
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  • Sex differences in mathematical reasoning ability: Let me count the ways.Diane F. Halpern - 1988 - Behavioral and Brain Sciences 11 (2):191-192.
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  • We are far from understanding sex-related differences in spatial-mathematical abilities despite the theory of sexual selection.Üner Tan - 1996 - Behavioral and Brain Sciences 19 (2):264-264.
    I have provided evidence that Geary's model does not explain male dominance in spatial abilities by sexual selection. The current literature concerning the relations of nonverbal IQ to testosterone, hand preference, and right- and left-hand skill, as well as the organizing effects of testosterone on cerebral lateralization during the perinatal period, does not support Geary's arguments.
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  • Between-sex differences are often averaging artifacts.Hoben Thomas - 1996 - Behavioral and Brain Sciences 19 (2):265-265.
    The central problem in Geary's theory is how differences are conceptualized. Recent research has shown that between-sex differences on certain tasks are a consequence of averaging within sex differences. A mixture distribution models between-sex differences on several tasks well and does not appear congenial to a sexual-selection perspective.
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  • Arithmetic and old lace.Jeffrey Foss - 1996 - Behavioral and Brain Sciences 19 (2):252-253.
    Geary's project faces the severe methodological difficulty of tracing the biological effects of gender on mathematical ability in a system that is massively open. Two methodological stratagems he uses are considered. The first is that pancultural sex differences are biological in nature, which is dubious in the domain of mathematics, since it is completely culture-bound. The second is that sociosexual differences are partly caused by biosexual differences, which renders his thesis unfalsifiable and empirically empty.
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  • On an evolutionary model of sex differences in mathematics: Do the data support the theory?Alan Feingold - 1996 - Behavioral and Brain Sciences 19 (2):252-252.
    The target article draws on evolutionary theory to formulate a biosocial model of sex differences in quantitative abilities. Unfortunately, the data do not support some of the crucial hypotheses. The male advantage in geometry is not appreciably greater than the male advantagi in algebra, and the greater male variability in mathematics cited by Gear is not cross-culturally invariant.
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  • Omissions relevant to gender-linked mathematical abilities.Herman T. Epstein - 1996 - Behavioral and Brain Sciences 19 (2):251-252.
    Analyses of bodies of data usually omit some relevant studies. Geary omits some studies looking at functional correlates of basic biological data, studies of developmental implications for functioning, and the recent achievement of acceleration of cognitive development.
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  • Sexual selection and sex differences in mathematical abilities.David C. Geary - 1996 - Behavioral and Brain Sciences 19 (2):229-247.
    The principles of sexual selection were used as an organizing framework for interpreting cross-national patterns of sex differences in mathematical abilities. Cross-national studies suggest that there are no sex differences in biologically primary mathematical abilities, that is, for those mathematical abilities that are found in all cultures as well as in nonhuman primates, and show moderate heritability estimates. Sex differences in several biologically secondary mathematical domains are found throughout the industrialized world. In particular, males consistently outperform females in the solving (...)
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  • The forgotten realm of genetic differences.Ada Zohar & Ruth Guttman - 1988 - Behavioral and Brain Sciences 11 (2):217-217.
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  • On throwing bones to environmentalists.Donald Symons - 1988 - Behavioral and Brain Sciences 11 (2):212-212.
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  • Could these sex differences be due to genes?Steven G. Vandenberg - 1988 - Behavioral and Brain Sciences 11 (2):212-214.
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  • Rival hypotheses about sex differences in mathematics: Problems and possibilities.Carol J. Mills - 1988 - Behavioral and Brain Sciences 11 (2):204-205.
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  • Hormonal influences on human cognition: What they might tell us about encouraging mathematical ability and precocity in boys and girls.Melissa Hines - 1988 - Behavioral and Brain Sciences 11 (2):194-195.
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  • A variety of brains?Richard A. Harshman - 1988 - Behavioral and Brain Sciences 11 (2):193-194.
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  • Causes of mathematical giftedness: Beware of left-handed compliments.Curtis Hardyck - 1988 - Behavioral and Brain Sciences 11 (2):192-193.
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  • The effects of selection and variability in studies of gender differences.Betsy Jane Backer & Larry V. Hedges - 1988 - Behavioral and Brain Sciences 11 (2):183-184.
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  • Sex differences and evolutionary by-products.Thomas Wynn, Forrest Tierson & Craig Palmer - 1996 - Behavioral and Brain Sciences 19 (2):265-266.
    From the perspective of evolutionary theory, we believe it makes more sense to view the sex differences in spatial cognition as being an evolutionary by-product of selection for optimal rates of fetal development. Geary does not convince us that his proposed selective factors operated with “sufficient precision, economy, and efficiency.” Moreover, the archaeological evidence does not support his proposed evolutionary scenario.
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  • Resources dimorphism sexual selection and mathematics achievement.Diana Eugenie Kornbrot - 1996 - Behavioral and Brain Sciences 19 (2):259-259.
    Geary's model is a worthy effort, but ambiguous on important issues. It ignores differential resource allocation, although this follows directly from sexual selection via differential parental investment. Dimorphism in primary traits is arbitrarily attributed to sexual selection via intramale competition, rather than direct evolutionary pressures. Dubious predictions are made about the consequences of raising mathematics achievement.
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  • Differences in male and female cognitive abilities: Sexual selection or division of labor?Michael T. Ghiselin - 1996 - Behavioral and Brain Sciences 19 (2):254-255.
    In Darwinian terminology, “sexual selection” refers to purely reproductive competition and is conceptually distinct from natural selection as it affects reproduction generally. As natural selection may favor the evolution of sexual dimorphism by virtue of the division of labor between males and females, this possibility needs to be taken very seriously.
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  • Do gender differences in spatial skills mediate gender differences in mathematics among high-ability students?M. Beth Casey - 1996 - Behavioral and Brain Sciences 19 (2):247-248.
    Based on Geary's theory, intelligence may determine which males utilize innate spatial knowledge to inform their mathematical solutions. This may explain why math gender differences occur mainly with higher abilities. In support, we found that mental rotation ability served as a mediator of gender differences on the math Scholastic Assessment Test for two high-ability samples. Our research suggests, however, that environment and biology interact to influence mental rotation abilities.
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  • Neuroanatomical sex differences: Of no consequence for cognition?Sandra F. Witelson - 1988 - Behavioral and Brain Sciences 11 (2):215-217.
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  • Mathematical ability, spatial ability, and remedial training.Barbara Sanders - 1988 - Behavioral and Brain Sciences 11 (2):208-209.
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  • The male/female difference is there: Should we care?Robert J. Steinberg - 1988 - Behavioral and Brain Sciences 11 (2):210-211.
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  • Nature/nurture in male/female mathematical giftedness.Nora Newcombe & Mary Ann Baenninger - 1988 - Behavioral and Brain Sciences 11 (2):206-206.
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