Combining forces for causal reasoning: Children's predictions about physical interactions.
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[1] Moritz M. Daum,et al. Do typological differences in the expression of causality influence preschool children’s causal event construal? , 2022, Language and Cognition.
[2] L. Feigenson,et al. Stable individual differences in infants’ responses to violations of intuitive physics , 2021, Proceedings of the National Academy of Sciences.
[3] Moritz M. Daum,et al. Influence of causal language on causal understanding: A comparison between Swiss German and Turkish. , 2021, Journal of experimental child psychology.
[4] Noah D. Goodman,et al. A counterfactual simulation model of causal judgments for physical events. , 2021, Psychological review.
[5] Caren M. Walker,et al. Thinking Counterfactually Supports Children's Evidence Evaluation in Causal Learning. , 2021, Child development.
[6] Deon T. Benton,et al. When correlation equals causation: A behavioral and computational account of second-order correlation learning in children. , 2020, Journal of experimental child psychology.
[7] Caren M. Walker,et al. Informative experimentation in intuitive science: Children select and learn from their own causal interventions , 2020, Cognition.
[8] J. Tenenbaum,et al. Intuitive Theories , 2020, Encyclopedia of Creativity, Invention, Innovation and Entrepreneurship.
[9] Frank C. Keil,et al. The trajectory of counterfactual simulation in development , 2019, CogSci.
[10] K. Hirsh-Pasek,et al. Any way the wind blows: Children's inferences about force and motion events. , 2019, Journal of experimental child psychology.
[11] A. Meltzoff,et al. Preschool physics: Using the invisible property of weight in causal reasoning tasks , 2018, PloS one.
[12] Joshua B. Tenenbaum,et al. What happened? Reconstructing the past through vision and sound , 2018, CogSci.
[13] N. Newcombe,et al. Where will it go? How children and adults reason about force and motion , 2018 .
[14] Jonathan F. Kominsky,et al. Categories and Constraints in Causal Perception , 2017, Psychological science.
[15] J. Tenenbaum,et al. Mind Games: Game Engines as an Architecture for Intuitive Physics , 2017, Trends in Cognitive Sciences.
[16] P. White. Visual Impressions of Causality , 2017 .
[17] Joachim T. Operskalski,et al. Cognitive Neuroscience of Causal Reasoning , 2017 .
[18] K. Hirsh-Pasek,et al. Can a microwave heat up coffee? How English- and Japanese-speaking children choose subjects in lexical causative sentences , 2015, Journal of Child Language.
[19] Alison Gopnik,et al. Bayesian models of child development. , 2015, Wiley interdisciplinary reviews. Cognitive science.
[20] Phillip Wolff,et al. Causal reasoning with forces , 2015, Front. Hum. Neurosci..
[21] D. Bates,et al. Fitting Linear Mixed-Effects Models Using lme4 , 2014, 1406.5823.
[22] A. Schlottmann,et al. Domain-specific perceptual causality in children depends on the spatio-temporal configuration, not motion onset , 2013, Front. Psychol..
[23] K. Hirsh-Pasek,et al. Forces and motion: how young children understand causal events. , 2013, Child development.
[24] Vikash K. Mansinghka,et al. Reconciling intuitive physics and Newtonian mechanics for colliding objects. , 2013, Psychological review.
[25] A. Gopnik,et al. Reconstructing constructivism: causal models, Bayesian learning mechanisms, and the theory theory. , 2012, Psychological bulletin.
[26] D. Kuhn. The development of causal reasoning. , 2012, Wiley interdisciplinary reviews. Cognitive science.
[27] C. Howe,et al. Everyday conceptions of object fall: explicit and tacit understanding during middle childhood. , 2012, Journal of experimental child psychology.
[28] Eric H. Swanson. The Language of Causation , 2012 .
[29] P. White. Visual impressions of causality: Effects of manipulating the direction of the target object's motion in a collision event , 2012 .
[30] Kevin A. Smith,et al. Sources of uncertainty in intuitive physics , 2012, CogSci.
[31] J. Call,et al. The Effect of Plausible Versus Implausible Balance Scale Feedback on the Expectancies of 3- to 4-Year-Old Children , 2011 .
[32] P. Muentener,et al. The intention-to-CAUSE bias: Evidence from children’s causal language , 2011, Cognition.
[33] S. Carey,et al. Infants’ causal representations of state change events , 2010, Cognitive Psychology.
[34] J. Woodward,et al. Just do it? Investigating the gap between prediction and action in toddlers’ causal inferences , 2010, Cognition.
[35] K. Murphy,et al. Integration of weight and distance information in young children: The role of relational complexity , 2009 .
[36] Friedrich Wilkening,et al. Children's Intuitive Physics , 2007 .
[37] Scott P. Johnson,et al. Conditions for young infants' failure to perceive trajectory continuity. , 2007, Developmental science.
[38] T. Griffiths,et al. Can being scared cause tummy aches? Naive theories, ambiguous evidence, and preschoolers' causal inferences. , 2007, Developmental psychology.
[39] Mary Hegarty,et al. Spatial Visualization in Physics Problem Solving , 2007, Cogn. Sci..
[40] P. Wolff. Representing causation. , 2007, Journal of experimental psychology. General.
[41] J. Tenenbaum,et al. Secret Agents , 2005, Psychological science.
[42] David M. Sobel,et al. A theory of causal learning in children: causal maps and Bayes nets. , 2004, Psychological review.
[43] P. Wolff. Direct causation in the linguistic coding and individuation of causal events , 2003, Cognition.
[44] David M. Sobel,et al. Detecting blickets: how young children use information about novel causal powers in categorization and induction. , 2000, Child development.
[45] N. Berthier,et al. Where's the ball? Two- and three-year-olds reason about unseen events. , 2000, Developmental psychology.
[46] E. Spelke,et al. Perception and understanding of effects of gravity and inertia on object motion , 1999 .
[47] Peter M. Vishton,et al. Predictive action in infancy: tracking and reaching for moving objects , 1998, Cognition.
[48] L. Cohen,et al. Precursors to infants' perception of the causality of a simple event , 1998 .
[49] S. Pauen. Children's reasoning about the interaction of forces. , 1996, Child development.
[50] E. Amsel,et al. The Development of Reasoning about Causal and Noncausal Influences on Levers. , 1996 .
[51] J. Huttenlocher,et al. The development of hierarchical representation of two-dimensional space. , 1996, Child development.
[52] B. Hood. Gravity rules for 2- to 4-year olds? , 1995 .
[53] R. Baillargeon,et al. Calibration-based reasoning about collision events in 11-month-old infants , 1994, Cognition.
[54] E. Spelke,et al. Early knowledge of object motion: continuity and inertia , 1994, Cognition.
[55] Franz von Kutschera,et al. Causation , 1993, J. Philos. Log..
[56] Leonard Talmy,et al. Force Dynamics in Language and Cognition , 1987, Cogn. Sci..
[57] A. Leslie,et al. Do six-month-old infants perceive causality? , 1987, Cognition.
[58] Ibrahim A. Halloun,et al. Common sense concepts about motion , 1985 .
[59] M. McCloskey,et al. Intuitive physics: the straight-down belief and its origin. , 1983, Journal of experimental psychology. Learning, memory, and cognition.
[60] T. Shultz. Rules of Causal Attribution. , 1982 .
[61] Andrea A. diSessa,et al. Unlearning Aristotelian Physics: A Study of Knowledge-Based Learning , 1982, Cogn. Sci..