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Portnoy, Lindsay Blau; Rabinowitz, Mitchell – Educational Research and Evaluation, 2014
How students ask questions as they learn has implications for understanding, retention, and problem solving. The current research investigates the influence of domain, age, and previous experience with content on the ways students approach questioning across history and science texts. In 3 experiments, 3rd-, 8th-, and 10th-grade students in large…
Descriptors: Questioning Techniques, Learning Strategies, Intellectual Disciplines, Elementary School Students
Bray, Barbara; McClaskey, Kathleen – Learning & Leading with Technology, 2013
It is known that every learner is unique and that one-size-fits-all instruction does not work for most. How can a classroom environment be created that gives each learner voice and choice? The co-founders of Personalize Learning, LLC, offer a detailed six-step approach. This article provides the background on what is and what is not Personalized…
Descriptors: Classroom Environment, Individualized Instruction, Student Needs, Student Characteristics
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Hu, Hsin-Wen; Chiou, Guey-Fa – Turkish Online Journal of Educational Technology - TOJET, 2012
This study explored the types, frequencies and quality of student questioning based on three kinds of question-stems (detailed-stem, simple-stem, and no-stem). A questioning-supported thinking and learning system (QSTLS) was developed to scaffold stem-based student questioning. One hundred fifth-grade students participated in this study. Students…
Descriptors: Foreign Countries, Active Learning, Learning Strategies, Questioning Techniques
Walsh, Jackie Acree; Sattes, Beth Dankert – Corwin, 2011
This groundbreaking book provides teachers with an accessible, research-based blueprint for developing student metacognitive skills and ensuring that students take responsibility for their own learning. The authors use the findings of cognitive scientists to highlight quality questioning behaviors and explain how to apply them for improved student…
Descriptors: Learner Engagement, Evidence, Formative Evaluation, Learning Strategies
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Jones, Rachael Adams – Science Teacher, 2012
Too often, teachers scratch their heads and ask, "What were my students thinking?" then answer, "I don't want to know." But teachers should want to know, and students should question their own thinking, as well. Critical thinking involves not just problem solving, creativity, analysis, and synthesis but also self-awareness of learning and learning…
Descriptors: Educational Strategies, Learning Strategies, Critical Thinking, Misconceptions
Trilling, Bernie – Principal, 2010
Important tools that schools need to support a 21st century approach to teaching and learning include the usual suspects: the Internet, pen and paper, cell phones, educational games, tests and quizzes, good teachers, caring communities, educational funding, and loving parents. All of these items and more contribute to a 21st century education, but…
Descriptors: Learning Strategies, Motivation, Educational Technology, Teaching Methods
Rosebrough, Thomas R.; Leverett, Ralph G. – ASCD, 2011
Yes, it's true that today's students have tons of distractions that take their attention away from the hard work of learning. That's why it's more important than ever to establish a teaching relationship with students that makes academic learning relevant to their lives. Here's a book that explains how to do that by changing teaching practices…
Descriptors: Teaching Methods, Teacher Student Relationship, Teaching (Occupation), Teaching Models
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Janssen, Fred; de Hullu, Els – Journal of Biological Education, 2008
Students need tools, thinking skills, to help them think actively and in depth about biological phenomena. They need to know what kind of questions to ask and how to find answers to those questions. In this article we present a toolkit with 12 "thinking tools" for asking and answering questions about biological phenomena from different…
Descriptors: Biology, Productive Thinking, Thinking Skills, Questioning Techniques
Martin-Kniep, Giselle O.; Picone-Zocchia, Joanne – Association for Supervision and Curriculum Development, 2009
Two experienced teacher educators describe a framework for effective teaching that can be applied in any subject area and grade level. Their detailed review of the structures, processes, and content of effective practice provides you with lots of practical tips you can use right away, including: (1) How to teach both the depth and the breadth of…
Descriptors: Teacher Effectiveness, Student Evaluation, Instructional Improvement, Curriculum Implementation
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Tan, Kok Siang – Asia-Pacific Forum on Science Learning and Teaching, 2007
With the widening knowledge base students will need to be more flexible in their learning habits. Traditionally, teaching school science often involves teacher-centred methods like lectures, experimental demonstration or guided inquiry. Plain knowledge dissemination will not adequately prepare students to cope with the changing world. Hence,…
Descriptors: Learning Strategies, Learning Experience, Questioning Techniques, Lesson Plans
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Cuthbert, Tony – Education 3-13, 2004
During practical science Sc1 experiments, some children find making predictions very difficult. The use of scenarios seems to be an excellent way of encouraging children to think creatively about what might happen and focus their attention on what they should experience. If children use carefully selected and explained data, it can help them to…
Descriptors: Prediction, Science Experiments, Vignettes, Creative Thinking
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Fordham, Nancy W. – Journal of Adolescent & Adult Literacy, 2006
This article describes initial attempts by preservice and inservice teachers enrolled in university reading courses to devise questions that encourage students to read content texts strategically. Teachers at both levels tended to confuse questions that encourage the use of comprehension strategies during reading with questions that assess…
Descriptors: Inferences, Content Area Reading, Learning Strategies, Reading Comprehension
Chick, Helen L., Ed.; Vincent, Jill L., Ed. – International Group for the Psychology of Mathematics Education, 2005
This document is the fourth volume of the proceedings of the 29th Conference of the International Group for the Psychology of Mathematics Education. Conference papers are centered around the theme of "Learners and Learning Environments." This volume features 42 research reports by presenters with last names beginning between Mul and Wu:…
Descriptors: Conference Papers, Motion, Mathematics Teachers, Self Efficacy