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Showing 1 to 15 of 40 results Save | Export
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Anna Trifonova; Mariela Destéfano; Mario Barajas – Digital Education Review, 2024
This article proposes a comprehensive AI curriculum tailored for young learners aged 11 to 14, emphasizing a humanistic approach. We review other AI curricula proposals for children and young people and underline that they focus primarily on AI's technological benefits and on learning coding and logic. Our curriculum explores human cognition that…
Descriptors: Artificial Intelligence, Cognitive Processes, Children, Constructivism (Learning)
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Seibert, Johann; Heuser, Katrin; Lang, Vanessa; Perels, Franziska; Huwer, Johannes; Kay, Christopher W.M. – Journal of Chemical Education, 2021
Multitouch experiment instructions (MEIs), implemented as interactive eBooks, are learning tools for pupils that offer various digital support tools and enable pupils to individualize their learning. They may be applied to contexts such as inquiry-based experiments in school laboratories, which involve highly demanding cognitive processes and…
Descriptors: Science Experiments, Educational Technology, Self Control, Active Learning
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Marah Sutherland; David Fainstein; Taylor Lesner; Georgia L. Kimmel; Ben Clarke; Christian T. Doabler – TEACHING Exceptional Children, 2024
Being able to understand, interpret, and critically evaluate data is necessary for all individuals in our society. Using the PreK-12 Guidelines for Assessment and Instruction in Statistics Education-II (GAISE-II; Bargagliotti et al., 2020) curriculum framework, the current paper outlines five evidence-based recommendations that teachers can use to…
Descriptors: Elementary Secondary Education, Multiple Literacies, Statistics Education, Data Analysis
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Sheila Tabanli – International Journal of Teaching and Learning in Higher Education, 2023
There is a large body of research on how to improve student learning through active learning and metacognition. However, without well-structured guidelines, students do not tend to actively engage with the taught material, peers, and the instructor at a desirable metacognitive level (Deslauriers et al., 2019). To address this problem, a…
Descriptors: Active Learning, Metacognition, Skill Development, Mathematics Education
Reed, Stephen K. – Oxford University Press, 2020
In "Cognitive Skills You Need for the 21st Century," Stephen Reed discusses a Future of Jobs report that contrasts trending and declining skills required by the workforce in the year 2022. Trending skills include analytical thinking and innovation, active learning strategies, creativity, reasoning, and complex problem solving. Part One…
Descriptors: Thinking Skills, 21st Century Skills, Labor Force Development, Creative Thinking
Boser, Ulrich – Educational Leadership, 2019
Although mastering the art of learning how to learn is considered one of the most important skills for young people, few teens know the basics of how to best learn something. And teachers rarely receive training in how to helps students become successful learners. The author describes seven well-supported techniques for learning anything that…
Descriptors: Adolescents, Learning Strategies, Active Learning, Attention
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Bishop-Williams, Katherine E. – Journal of the Scholarship of Teaching and Learning, 2020
Wicked problems are large, complex problems involving multiple perspectives that present substantial future challenges. These challenges can be overwhelming for learners and pose difficulties in teaching for instructors. Herein a solutions-oriented teaching strategy that amalgamates proven active learning strategies is presented along with a…
Descriptors: Problem Solving, Active Learning, Teaching Methods, Cognitive Processes
Kennedy, Gregor – Melbourne Centre for the Study of Higher Education, 2020
The term 'engagement' is much researched but tricky to define in the field of educational technology and online learning. In this short paper I will offer three perspectives on what 'engagement' means in online learning environments and provide some advice to educators on how student engagement in online learning might be promoted. The…
Descriptors: Learner Engagement, Foreign Countries, Electronic Learning, Online Courses
Stacey, Susan – Redleaf Press, 2019
What does it mean to inquire? Grownups would say it means to question, to search for information, or to finding out about a topic of interest. For children in an early childhood classroom, the definition is no different. From the time of their birth, children want to know how the world works and actively seek out information. How educators respond…
Descriptors: Inquiry, Active Learning, Classroom Environment, Creativity
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Randolph, Adriane B.; Raven, A. J. – Journal of Information Systems Education, 2022
Neuro-marketing, neuro-economics, and now the field of neuro-information systems (neuro-IS) is growing, and our students want to know more about it all. This paper presents the examination of the learning-needs of new entrants to the field of neuro-IS. The resulting elective course is targeted at IS undergraduate majors interested in learning…
Descriptors: Information Systems, Undergraduate Students, Majors (Students), Information Science Education
Boaler, Jo; Munson, Jen; Williams, Cathy – Jossey-Bass, An Imprint of Wiley, 2017
The most challenging parts of teaching mathematics are engaging students and helping them understand the connections between mathematics concepts. In this volume, you'll find a collection of low floor, high ceiling tasks that will help you do just that, by looking at the big ideas at the fourth-grade level through visualization, play, and…
Descriptors: Mathematics Instruction, Learner Engagement, Elementary School Mathematics, Grade 4
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Lund, Tony; Walker, Mimi – Science Teacher, 2015
To address the needs of the high population of students with learning disabilities at their school, the author and a colleague created an inclusion science class that focuses on active, hands-on science. The course prepares students of various learning abilities for the state-mandated end-of-course biology assessment. Many of their students have…
Descriptors: Science Instruction, Teaching Methods, Learning Disabilities, Inclusion
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Bledsoe, T. Scott; Baskin, Janice J. – College Teaching, 2014
Understanding fear, its causes, and its impact on students can be important for educators who seek ways to help students manage their fears. This paper explores common types of student fears such as performance-based anxiety, fear of failure, fear of being laughed at, and cultural components of fear that impact learning. The cognitive, emotional,…
Descriptors: Fear, Anxiety, Classroom Environment, College Students
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Börstler, Jürgen; Hilburn, Thomas B. – ACM Transactions on Computing Education, 2015
Team projects are a way to expose students to conflicting project objectives, and "[t]here should be a strong real-world element … to ensure that the experience is realistic" [ACM/IEEE-CS 2015b]. Team projects provide students an opportunity to put their education into practice and prepare them for their professional careers. The aim of…
Descriptors: Teamwork, Computer Science Education, Instructional Design, Teaching Methods
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Jiang, Xuan; Perkins, Kyle – Interdisciplinary Journal of Teaching and Learning, 2013
Bruner's constructs of learning, specifically the structure of learning, spiral curriculum, and discovery learning, in conjunction with the Cognitive Load Theory, are used to evaluate the Picture Word Inductive Model (PWIM), an inquiry-oriented inductive language arts strategy designed to teach K-6 children phonics and spelling. The PWIM reflects…
Descriptors: Constructivism (Learning), Cognitive Processes, Difficulty Level, Theories
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