2017
DOI: 10.1007/s10798-017-9428-x
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Enhancing spatial ability and mechanical reasoning through a STEM course

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Cited by 29 publications
(25 citation statements)
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“…Trabajos similares han obtenido un mejor desempeño en hombres con respecto a mujeres en actividades basadas en robótica y programación a través de tareas relacionadas con habilidades espaciales y de resolución de problemas (Coxon, 2012;González-Calero, Cózar, Villena, y Merino, 2018;Julià y Antolí, 2018). En nuestro caso, la puntuación media por intento (scoret i ) presentó diferencias a favor de los hombres (Mdn = 0.67) con respecto de las mujeres (Mdn = 0.60) en tres de los cuatro problemas administrados (P01 a P04, ver Figura 6); no obstante, estas diferencias resultaron ser no significativas (W = 19124, p = .836, r= 0.02).…”
Section: Sobre El Papel Del Género En Las Tasas éXito De Los Problemasunclassified
“…Trabajos similares han obtenido un mejor desempeño en hombres con respecto a mujeres en actividades basadas en robótica y programación a través de tareas relacionadas con habilidades espaciales y de resolución de problemas (Coxon, 2012;González-Calero, Cózar, Villena, y Merino, 2018;Julià y Antolí, 2018). En nuestro caso, la puntuación media por intento (scoret i ) presentó diferencias a favor de los hombres (Mdn = 0.67) con respecto de las mujeres (Mdn = 0.60) en tres de los cuatro problemas administrados (P01 a P04, ver Figura 6); no obstante, estas diferencias resultaron ser no significativas (W = 19124, p = .836, r= 0.02).…”
Section: Sobre El Papel Del Género En Las Tasas éXito De Los Problemasunclassified
“…In fact, within mathematics' education research community it is consensual that the narrow ability of Visualization is relevant to all areas of Mathematics and particularly to Geometry (Sinclair et al, 2016;Yildiz & Özdemir, 2017), being itself an object of prolific research often under the names of visuospatial reasoning, visualizing, spatial reasoning, spatial thinking and visual reasoning (Sinclair et al, 2016). Spatial skills are associated with success in science, technology, engineering, and mathematics domains (Gilligan, Flouri, & Farran, 2017;Julià & Antolì, 2017;Kell & Lubinski, 2013). Even tough, as formulated by Bishop (2008), spatial abilities may constitute "an area like language, which is every teacher's responsibility" (p.79), Geometry Education's field produces fertile ground to, in natural contexts, see and learn about spatial reasoning in curricular motion (Sinclair et al, 2016), for it plays an important role in the process of interpreting visual information related to learning geometry (Kösa, 2016).…”
Section: Cognitive Abilities Learning Mathematical Learning and Achmentioning
confidence: 99%
“…However, no significant differences were observed for females. Julià and Antolì () conducted a study with 50 sixth‐ and seventh‐grade students in which participants completed a STEM course including robots‐based activities. Results indicated that after the intervention sixth‐grade males outscored females in one sub‐set of tasks associated with mental rotation.…”
Section: Antecedents and Aimsmentioning
confidence: 99%
“…In particular, previous literature offers evidence that educational robotics may be useful to foster students’ acquisition of spatial abilities (eg, Julià & Antolì, ). Considering these antecedents, we have conducted an experiment with 7‐ and 8‐year‐old students whose main goal is to investigate whether robotics‐based instruction, in the context of map‐reading tasks, may produce greater learning gains on mental rotation abilities in comparison with traditional instruction.…”
Section: Antecedents and Aimsmentioning
confidence: 99%