Results for 'Elizabeth Spelke'

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  1.  48
    The double-edged sword of pedagogy: Instruction limits spontaneous exploration and discovery.Elizabeth Bonawitz, Patrick Shafto, Hyowon Gweon, Noah D. Goodman, Elizabeth Spelke & Laura Schulz - 2011 - Cognition 120 (3):322-330.
  2.  85
    Beyond Core Knowledge: Natural Geometry.Elizabeth Spelke, Sang Ah Lee & Véronique Izard - 2010 - Cognitive Science 34 (5):863-884.
    For many centuries, philosophers and scientists have pondered the origins and nature of human intuitions about the properties of points, lines, and figures on the Euclidean plane, with most hypothesizing that a system of Euclidean concepts either is innate or is assembled by general learning processes. Recent research from cognitive and developmental psychology, cognitive anthropology, animal cognition, and cognitive neuroscience suggests a different view. Knowledge of geometry may be founded on at least two distinct, evolutionarily ancient, core cognitive systems for (...)
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  3.  68
    Principles of object perception.Elizabeth S. Spelke - 1990 - Cognitive Science 14 (1):29--56.
    Research on human infants has begun to shed light on early-developing processes for segmenting perceptual arrays into objects. Infants appear to perceive objects by analyzing three-dimensional surface arrangements and motions. Their perception does not accord with a general tendency to maximize figural goodness or to attend to nonaccidental geometric relations in visual arrays. Object perception does accord with principles governing the motions of material bodies: Infants divide perceptual arrays into units that move as connected wholes, that move separately from one (...)
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  4. Core knowledge.Elizabeth S. Spelke - 2000 - American Psychologist 55 (11):1233-1243.
    Complex cognitive skills such as reading and calculation and complex cognitive achievements such as formal science and mathematics may depend on a set of building block systems that emerge early in human ontogeny and phylogeny. These core knowledge systems show characteristic limits of domain and task specificity: Each serves to represent a particular class of entities for a particular set of purposes. By combining representations from these systems, however human cognition may achieve extraordinary flexibility. Studies of cognition in human infants (...)
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  5.  67
    Origins of knowledge.Elizabeth S. Spelke, Karen Breinlinger, Janet Macomber & Kristen Jacobson - 1992 - Psychological Review 99 (4):605-632.
    Experiments with young infants provide evidence for early-developing capacities to represent physical objects and to reason about object motion. Early physical reasoning accords with 2 constraints at the center of mature physical conceptions: continuity and solidity. It fails to accord with 2 constraints that may be peripheral to mature conceptions: gravity and inertia. These experiments suggest that cognition develops concurrently with perception and action and that development leads to the enrichment of conceptions around an unchanging core. The experiments challenge claims (...)
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  6. Core knowledge.Elizabeth S. Spelke & Katherine D. Kinzler - 2007 - Developmental Science 10 (1):89-96.
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  7. Large number discrimination in 6-month-old infants.Fei Xu & Elizabeth S. Spelke - 2000 - Cognition 74 (1):1-11.
    Six-month-old infants discriminate between large sets of objects on the basis of numerosity when other extraneous variables are controlled, provided that the sets to be discriminated differ by a large ratio (8 vs. 16 but not 8 vs. 12). The capacities to represent approximate numerosity found in adult animals and humans evidently develop in human infants prior to language and symbolic counting.
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  8.  66
    Initial knowledge: six suggestions.Elizabeth Spelke - 1994 - Cognition 50 (1-3):431-445.
    Although debates continue, studies of cognition in infancy suggest that knowledge begins to emerge early in life and constitutes part of humans' innate endowment. Early-developing knowledge appears to be both domain-specific and task-specific, it appears to capture fundamental constraints on ecologically important classes of entities in the child's environment, and it appears to remain central to the commonsense knowledge systems of adults.
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  9. Object permanence in five-month-old infants.Elizabeth S. Spelke - 1985 - Cognition 20 (3):191-208.
    A new method was devised to test object permanence in young infants. Fivemonth-old infants were habituated to a screen that moved back and forth through a 180-degree arc, in the manner of a drawbridge. After infants reached habituation, a box was centered behind the screen. Infants were shown two test events: a possible event and an impossible event. In the possible event, the screen stopped when it reached the occluded box; in the impossible event, the screen moved through the space (...)
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  10.  40
    The construction of large number representations in adults.Elizabeth Spelke & Hilary Barth - 2003 - Cognition 86 (3):201-221.
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  11. What makes us Smart? Core knowledge and natural language.Elizabeth S. Spelke - 2003 - In Dedre Getner & Susan Goldin-Meadow (eds.), Language in Mind: Advances in the Study of Language and Thought. MIT Press. pp. 277--311.
  12. Science and Core Knowledge.Susan Carey & Elizabeth Spelke - 1996 - Philosophy of Science 63 (4):515 - 533.
    While endorsing Gopnik's proposal that studies of the emergence and modification of scientific theories and studies of cognitive development in children are mutually illuminating, we offer a different picture of the beginning points of cognitive development from Gopnik's picture of "theories all the way down." Human infants are endowed with several distinct core systems of knowledge which are theory-like in some, but not all, important ways. The existence of these core systems of knowledge has implications for the joint research program (...)
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  13.  30
    Spontaneous mapping of number and space in adults and young children.Elizabeth S. Spelke Maria Dolores de Hevia - 2009 - Cognition 110 (2):198.
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  14. The native language of social cognition.Elizabeth S. Spelke - unknown
    What leads humans to divide the social world into groups, preferring their own group and disfavoring others? Experiments with infants and young children suggest these tendencies are based on predispo- sitions that emerge early in life and depend, in part, on natural language. Young infants prefer to look at a person who previously spoke their native language. Older infants preferentially accept toys from native-language speakers, and preschool children preferentially select native-language speakers as friends. Variations in accent are sufficient to evoke (...)
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  15. Core systems of number.Stanislas Dehaene, Elizabeth Spelke & Lisa Feigenson - 2004 - Trends in Cognitive Sciences 8 (7):307-314.
  16.  81
    Language and number: a bilingual training study.Elizabeth S. Spelke - 2001 - Cognition 78 (1):45-88.
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  17. Sex Differences in Intrinsic Aptitude for Mathematics and Science?Elizabeth S. Spelke - unknown
    This article considers 3 claims that cognitive sex differ- ences account for the differential representation of men and women in high-level careers in mathematics and sci- ence: (a) males are more focused on objects from the beginning of life and therefore are predisposed to better learning about mechanical systems; (b) males have a pro- file of spatial and numerical abilities producing greater aptitude for mathematics; and (c) males are more variable in their cognitive abilities and therefore predominate at the upper (...)
     
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  18.  87
    Foundations of cooperation in young children.Kristina R. Olson & Elizabeth S. Spelke - 2008 - Cognition 108 (1):222-231.
  19. Conceptual precursors to language.Elizabeth S. Spelke & Susan J. Hespos - unknown
    Because human languages vary in sound and meaning, children must learn which distinctions their language uses. For speech perception, this learning is selective: initially infants are sensitive to most acoustic distinctions used in any language1–3, and this sensitivity reflects basic properties of the auditory system rather than mechanisms specific to language4–7; however, infants’ sensitivity to non-native sound distinctions declines over the course of the first year8. Here we ask whether a similar process governs learning of word meanings. We investigated the (...)
     
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  20. Infants' discrimination of number vs. continuous extent.Elizabeth Spelke - manuscript
    Seven studies explored the empirical basis for claims that infants represent cardinal values of small sets of objects. Many studies investigating numerical ability did not properly control for continuous stimulus properties such as surface area, volume, contour length, or dimensions that correlate with these properties. Experiment 1 extended the standard habituation/dishabituation paradigm to a 1 vs 2 comparison with three-dimensional objects and confirmed that when number and total front surface area are confounded, infants discriminate the arrays. Experiment 2 revealed that (...)
     
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  21. aCCENT TrumpS raCE iN GuiDiNG ChilDrEN'S SOCial prEfErENCES.Elizabeth S. Spelke - unknown
    A series of experiments investigated the effect of speakers’ language, accent, and race on children’s social preferences. When presented with photographs and voice recordings of novel children, 5-year-old children chose to be friends with native speakers of their native language rather than foreign-language or foreign-accented speakers. These preferences were not exclusively due to the intelligibility of the speech, as children found the accented speech to be comprehensible, and did not make social distinctions between foreign-accented and foreign-language speakers. Finally, children chose (...)
     
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  22.  78
    Skills of divided attention.Elizabeth Spelke - 1976 - Cognition 4 (3):215-230.
  23. Perceiving and reasoning about objects: Insights from infants.Elizabeth S. Spelke & Gretchen A. Van de Walle - 1993 - In Naomi Eilan, Rosaleen McCarthy & Bill Brewer (eds.), Spatial Representation: Problems in Philosophy and Psychology. Blackwell.
     
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  24. Log or linear? Distinct intuitions of the number scale in Western and Amazonian indigene cultures.Pierre Pica, Stanislas Dehaene, Elizabeth Spelke & Véronique Izard - 2008 - Science 320 (5880):1217-1220.
    The mapping of numbers onto space is fundamental to measurement and to mathematics. Is this mapping a cultural invention or a universal intuition shared by all humans regardless of culture and education? We probed number-space mappings in the Mundurucu, an Amazonian indigene group with a reduced numerical lexicon and little or no formal education. At all ages, the Mundurucu mapped symbolic and nonsymbolic numbers onto a logarithmic scale, whereas Western adults used linear mapping with small or symbolic numbers and logarithmic (...)
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  25.  19
    Human infants’ understanding of social imitation: Inferences of affiliation from third party observations.Lindsey J. Powell & Elizabeth S. Spelke - 2018 - Cognition 170 (C):31-48.
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  26. Core systems in human cognition.Elizabeth Spelke - manuscript
    Research on human infants, adult nonhuman primates, and children and adults in diverse cultures provides converging evidence for four systems at the foundations of human knowledge. These systems are domain specific and serve to represent both entities in the perceptible world (inanimate manipulable objects and animate agents) and entities that are more abstract (numbers and geometrical forms). Human cognition may be based, as well, on a fifth system for representing social partners and for categorizing the social world into groups. Research (...)
     
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  27. Natural number and natural geometry.Elizabeth S. Spelke - 2011 - In Stanislas Dehaene & Elizabeth Brannon (eds.), Space, Time and Number in the Brain. Oxford University Press. pp. 287--317.
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  28.  51
    Updating egocentric representations in human navigation.Ranxiao Frances Wang & Elizabeth S. Spelke - 2000 - Cognition 77 (3):215-250.
  29.  40
    Core multiplication in childhood.Elizabeth S. Spelke - 2010 - Cognition 116 (2):204-216.
  30. Perception of unity, persistence, and identity: Thoughts on infants' conceptions of objects.Elizabeth S. Spelke - 1985 - In Jacques Mehler & R. Fox (eds.), Neonate Cognition: Beyond the Blooming Buzzing Confusion. Lawrence Erlbaum. pp. 89--113.
     
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  31.  15
    Six-month-old infants expect agents to minimize the cost of their actions.Shari Liu & Elizabeth S. Spelke - 2017 - Cognition 160 (C):35-42.
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  32. Sex differences in intrinsic aptitude for mathematics and science? A critical review.Elizabeth S. Spelke - 2005 - American Psychologist 60 (9):950-958.
  33. Preschool Children's Mapping of Number Words to Nonsymbolic Numerosities.Jennifer S. Lipton & Elizabeth S. Spelke - unknown
    Five-year-old children categorized as skilled versus unskilled counters were given verbal estimation and number word comprehension tasks with numerosities 20 – 120. Skilled counters showed a linear relation between number words and nonsymbolic numerosities. Unskilled counters showed the same linear relation for smaller numbers to which they could count, but not for larger number words. Further tasks indicated that unskilled counters failed even to correctly order large number words differing by a 2 : 1 ratio, whereas they performed well on (...)
     
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  34.  37
    Early knowledge of object motion: continuity and inertia.Elizabeth S. Spelke, Gary Katz, Susan E. Purcell, Sheryl M. Ehrlich & Karen Breinlinger - 1994 - Cognition 51 (2):131-176.
  35.  71
    Quinian bootstrapping or Fodorian combination? Core and constructed knowledge of number.Elizabeth S. Spelke - 2011 - Behavioral and Brain Sciences 34 (3):149-150.
    According to Carey (2009), humans construct new concepts by abstracting structural relations among sets of partly unspecified symbols, and then analogically mapping those symbol structures onto the target domain. Using the development of integer concepts as an example, I give reasons to doubt this account and to consider other ways in which language and symbol learning foster conceptual development.
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  36. Perceiving bimodally specified events in infancy.Elizabeth S. Spelke - unknown
    Four-month-old infants can perceive bimodally speciiied events. They respond to relationships between the optic and acoustic stimulation that carries information about an object. Infants can do this by detecting the temporal synchrony of an object’s sounds and its optically specified impacts. They are sensitive both to the common tempo and to the simultaneity of such sounds and visible impacts. These findings support the view that intermodal perception depends at least in part on the detection of invariant relationships in patterns of (...)
     
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  37.  47
    Object perception and object-directed reaching in infancy.Claes von Hofsten & Elizabeth S. Spelke - 1985 - Journal of Experimental Psychology 114 (2):198-212.
  38. Preschool children's mapping of number words to nonsymbolic numerosities.Elizabeth Spelke - manuscript
    Five-year-old children categorized as skilled versus unskilled counters were given verbal estimation and number word comprehension tasks with numerosities 20 – 120. Skilled counters showed a linear relation between number words and nonsymbolic numerosities. Unskilled counters showed the same linear relation for smaller numbers to which they could count, but not for larger number words. Further tasks indicated that unskilled counters failed even to correctly order large number words differing by a 2 : 1 ratio, whereas they performed well on (...)
     
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  39. Predictive Reaching for Occluded Objects by 6-Month-Old Infants.Elizabeth S. Spelke - unknown
    Infants were presented with an object that moved into reaching space on a path that was either continuously visible or interrupted by an occluder. Infants’ reaching was reduced sharply when an occluder was present, even though the occluder itself was out of reach and did not serve as a barrier to direct reaching for the object. We account for these findings and for the apparently contrasting findings of experiments using preferential looking methods to assess infants’ object representations, by proposing that (...)
     
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  40.  23
    Perception, ontology, and word meaning.Susan Carey & Elizabeth S. Spelke - 1992 - Cognition 45 (1):101-107.
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  41. Evolutionary and developmental foundations of human knowledge.Marc D. Hauser & Elizabeth Spelke - 2004 - In Michael S. Gazzaniga (ed.), The Cognitive Neurosciences Iii. MIT Press.
    What are the brain and cognitive systems that allow humans to play baseball, compute square roots, cook soufflés, or navigate the Tokyo subways? It may seem that studies of human infants and of non-human animals will tell us little about these abilities, because only educated, enculturated human adults engage in organized games, formal mathematics, gourmet cooking, or map-reading. In this chapter, we argue against this seemingly sensible conclusion. When human adults exhibit complex, uniquely human, culture-specific skills, they draw on a (...)
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  42.  51
    Modularity and development: the case of spatial reorientation.Linda Hermer & Elizabeth Spelke - 1996 - Cognition 61 (3):195-232.
  43. Non-symbolic halving in an amazonian indigene group.Koleen McCrink, Elizabeth Spelke, Stanislas Dehaene & Pierre Pica - 2013 - Developmental Science 16 (3):451-462.
    Much research supports the existence of an Approximate Number System (ANS) that is recruited by infants, children, adults, and non-human animals to generate coarse, non-symbolic representations of number. This system supports simple arithmetic operations such as addition, subtraction, and ordering of amounts. The current study tests whether an intuition of a more complex calculation, division, exists in an indigene group in the Amazon, the Mundurucu, whose language includes no words for large numbers. Mundurucu children were presented with a video event (...)
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  44. Number-space mapping in human infants.Elizabeth S. Spelke & William James Hall - unknown
    Mature representations of number are built on a core system of numerical representation that connects to spatial representations in the form of a ‘mental number line’. The core number system is functional in early infancy, but little is known about the origins of the mapping of numbers onto space. Here we show that preverbal infants transfer the discrimination of an ordered series of numerosities to the discrimination of an ordered series of line lengths. Moreover, infants construct relationships between individual numbers (...)
     
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  45.  30
    Do infants show social preferences for people differing in race?Katherine D. Kinzler & Elizabeth S. Spelke - 2011 - Cognition 119 (1):1-9.
  46.  49
    Children’s understanding of the relationship between addition and subtraction.Elizabeth Spelke & Camilla Gilmore - 2008 - Cognition 107 (3):932-945.
    In learning mathematics, children must master fundamental logical relationships, including the inverse relationship between addition and subtraction. At the start of elementary school, children lack generalized understanding of this relationship in the context of exact arithmetic problems: they fail to judge, for example, that 12 + 9 - 9 yields 12. Here, we investigate whether preschool children’s approximate number knowledge nevertheless supports understanding of this relationship. Five-year-old children were more accurate on approximate large-number arithmetic problems that involved an inverse transformation (...)
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  47.  28
    Preverbal infants identify emotional reactions that are incongruent with goal outcomes.Amy E. Skerry & Elizabeth S. Spelke - 2014 - Cognition 130 (2):204-216.
  48.  22
    Object perception.Elizabeth S. Spelke - 1993 - In Alvin Goldman (ed.), Readings in Philosophy and Cognitive Science. Cambridge: MIT Press.
  49. Exact equality and successor function: Two key concepts on the path towards understanding exact numbers.Véronique Izard, Pierre Pica, Elizabeth S. Spelke & Stanislas Dehaene - 2008 - Philosophical Psychology 21 (4):491 – 505.
    Humans possess two nonverbal systems capable of representing numbers, both limited in their representational power: the first one represents numbers in an approximate fashion, and the second one conveys information about small numbers only. Conception of exact large numbers has therefore been thought to arise from the manipulation of exact numerical symbols. Here, we focus on two fundamental properties of the exact numbers as prerequisites to the concept of EXACT NUMBERS : the fact that all numbers can be generated by (...)
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  50.  28
    Spontaneous mapping of number and space in adults and young children.Maria-Dolores de Hevia & Elizabeth S. Spelke - 2009 - Cognition 110 (2):198-207.
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