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Using Cogenerative Dialogs to Improve Science Teaching and Learning: Challenges and Solutions in High School Students' Internships

机译:使用创生对话框改善科学教学和学习:高中学生实习中的挑战和解决方案

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Internships in science research settings have received increasing attention as a means of helping students construct appropriate understandings, practices, tools, and language in scientific activities. To advance student-scientist partnerships beyond the status quo, the study aimed to investigate how cogenerative dialogs (cogens) may help high school students and scientists identify and address challenges collectively. The analysis identified nine major challenges discussed during cogens: (1) the quality and progress of scientific practice in laboratories, (2) the quality of scientists'/assistants' instructions in classrooms, (3) the quality of student participation in classrooms and homework, (4) students' absences, including arriving late or leaving early, (5) the quality of administrative support, (6) preparation for scientific presentations, (7) the process of deciding project topics, (8) students' peer interactions and communication, and (9) students' physiological needs. The three most salient challenges were the quality and progress of scientific practice in laboratories (39%), the quality of scientists'/assistants' instructions in classrooms (20%), and the quality of student participation in classrooms and homework (17%). The study shows that cogens allowed students and scientists to agree on teaching modifications that positively influenced teaching and learning processes during the internship, such that issues were reduced from the beginning to the closing stages. Importantly, the challenges and solutions identified by students and scientists in this study provide accounts of first-hand experience as well as insights to aid program directors or coordinators in designing a learning environment that can foster effective practice for internships by avoiding the issues identified in the study.
机译:作为一种帮助学生在科学活动中建立适当的理解,实践,工具和语言的手段,科学研究环境中的实习越来越受到关注。为了使学生与科学家之间的合作伙伴关系超越现状,该研究旨在调查协同对话(cogens)如何帮助高中生和科学家共同识别和应对挑战。分析确定了余热发电期间讨论的九个主要挑战:(1)实验室科学实践的质量和进步;(2)科学家/助手在教室中的指导质量;(3)学生参与教室和家庭作业的质量,(4)学生缺勤,包括迟到或早退;(5)行政支持的质量;(6)准备科学演示文稿;(7)确定项目主题的过程;(8)学生的同伴互动和沟通,以及(9)学生的生理需求。三个最突出的挑战是实验室科学实践的质量和进步(39%),教室里科学家/助理指导的质量(20%)以及学生参与教室和家庭作业的质量(17%) 。这项研究表明,通过创造力,学生和科学家可以就在实习期间对教学过程产生积极影响的教学改进达成共识,从而使问题从开始到结束阶段都减少了。重要的是,学生和科学家在本研究中确定的挑战和解决方案提供了第一手经验,并提供了见解,以帮助项目负责人或协调员设计学习环境,从而避免了实习中发现的问题,从而促进了实习的有效实践。研究。

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