NotesFAQContact Us
Collection
Advanced
Search Tips
What Works Clearinghouse Rating
Showing 1 to 15 of 201 results Save | Export
Peer reviewed Peer reviewed
Direct linkDirect link
Winne, Philip H. – Metacognition and Learning, 2022
Metacognition is the engine of self-regulated learning. At the object level, learners seek information and choose learning tactics and strategies they forecast will develop knowledge. At the meta level, learners gather and analyze data about learning events to draw conclusions, such as: Is this tactic a good fit to conditions? Was it effective?…
Descriptors: Metacognition, Learning Strategies, Computer Software, Data Analysis
Peer reviewed Peer reviewed
Direct linkDirect link
Alan Chant; Christina M. Kraemer-Chant – Journal of Chemical Education, 2024
Colleges throughout the United States typically expect their students to take at least one course in the sciences to fulfill liberal studies curriculum requirements. For nonscience majors, the choice of science class can include introductory chemistry, introductory biology, and astronomy, among others. Based upon interactions both in and out of…
Descriptors: Liberal Arts, Science Education, Learning Strategies, College Science
Peer reviewed Peer reviewed
Direct linkDirect link
Fiorella, Logan; Zhang, Qian – Educational Psychology Review, 2018
Learning by drawing can be an effective strategy for supporting science text comprehension. However, drawing can also be cognitively demanding and time consuming, and students may not create quality drawings without sufficient guidance. Furthermore, evidence for drawing is often based on comparisons to weak control conditions, such as students who…
Descriptors: Learning Strategies, Freehand Drawing, Science Education, Reading Comprehension
Peer reviewed Peer reviewed
Direct linkDirect link
Wheaton, S. M.; Binder, P.-M. – Physics Education, 2017
We discuss strategies for the general solution of single-step 1D constant acceleration problems. In a slightly restricted form, these problems have five variables (?"x," "v[subscript 0]," "v," "a" and "t") and two independent equations, so three variables must be given to solve for the other two,…
Descriptors: Motion, Problem Solving, Physics, Equations (Mathematics)
Peer reviewed Peer reviewed
Direct linkDirect link
Eriksson, Urban – Physical Review Physics Education Research, 2019
This theoretical paper introduces a new way to view and characterize learning astronomy. It describes a framework, based on results from empirical data, analyzed through standard qualitative research methodology, in which a theoretical model for a vital competency of learning astronomy is proposed: "reading the sky," a broad description…
Descriptors: Astronomy, Intellectual Disciplines, Competency Based Education, Learning Strategies
Peer reviewed Peer reviewed
Direct linkDirect link
Hardman, Mark – School Science Review, 2017
Doing science involves the development and evaluation of models. These models are not objective truths but can be understood as explanations, which scientists use to explore and reason about an aspect of the world. Learning science involves students expressing and engaging with models in the classroom. However, this learning should not be seen as…
Descriptors: Models, Science Education, Learning Strategies, Learning Processes
Peer reviewed Peer reviewed
Direct linkDirect link
Kenneth Rotheram – School Science Review, 2014
The Teaching, Learning and Creativity (TLC) model suggests a wide variety of activities in three different phases. In the Teaching Phase, the teacher will discuss, demonstrate key experiments and provide data for pupils to interpret. In the Learning Phase, pupils will analyse text, do a simple test and write an essay. In the Creativity Phase,…
Descriptors: Creativity, Models, Science Education, Teaching Models
Peer reviewed Peer reviewed
Direct linkDirect link
Harris, G. Keith; Stevenson, Clint; Joyner, Helen – Journal of Food Science Education, 2015
Let's face it. Traditional lectures do not consistently capture our students' attention, especially when they are PowerPoint-driven and lack student/instructor interaction. Most of us have had the unfortunate feeling that our students were not fully engaged in our lectures, despite hours of preparation on our part. This sense of "wasted"…
Descriptors: Lecture Method, Learner Engagement, Attention Span, Learning Strategies
Marshall, Jeff C. – Educational Leadership, 2015
"Whether your state has adopted the Next Generation Science Standards or will soon revise its own science standards, one thing is clear," writes noted science educator Jeff Marshall. "Change is underway--in what is learned, in how we teach, and in how we assess." This article offers five realizations that point to the potential…
Descriptors: Science Education, Science Curriculum, Academic Standards, Instructional Innovation
Hougham, R. Justin; Eitel, Karla C. Bradley; Miller, Brant G. – Journal of Geoscience Education, 2015
In this article we explore how reconceptualizing the role of technology in place-based education (PBE) enhances place responsive pedagogies through technology. Combining the strengths of adventure learning (AL) and PBE, Adventure Learning @ (AL@) advances both place responsive education and online learning in science education. This is needed, as…
Descriptors: STEM Education, Place Based Education, Technology Uses in Education, Science Education
Peer reviewed Peer reviewed
Direct linkDirect link
Häkkinen, Päivi; Järvelä, Sanna; Mäkitalo-Siegl, Kati; Ahonen, Arto; Näykki, Piia; Valtonen, Teemu – Teachers and Teaching: Theory and Practice, 2017
With regard to the growing interest in developing teacher education to match the twenty-first-century skills, while many assumptions have been made, there has been less theoretical elaboration and empirical research on this topic. The aim of this article is to present our pedagogical framework for the twenty-first-century learning practices in…
Descriptors: Foreign Countries, Preservice Teachers, Preservice Teacher Education, Cooperative Learning
Peer reviewed Peer reviewed
Direct linkDirect link
Lin, Marcia C.; Eylon, Bat-Sheva; Rafferty, Anna; Vitale, Jonathan M. – EURASIA Journal of Mathematics, Science & Technology Education, 2015
Citizens need the capability to conduct their own inquiry projects so that they can make sense of claims about new energy policies, health remedies, or financial opportunities. To develop the lifelong capability to grapple with these dilemmas, we report on ways to design precollege units that engage students in realistic, personally relevant…
Descriptors: Lifelong Learning, Inquiry, Learning Strategies, Constructivism (Learning)
Peer reviewed Peer reviewed
Direct linkDirect link
Statham, Mick – Primary Science, 2014
Learning to use visualisation techniques in the classroom enables pupils and teachers to gain new insights into how concepts are formed and how to strengthen them, but visualisation is sometimes not what it seems. Learning by constructing meaning is a long-standing principle underpinning much of today's school science. In "Primary Science…
Descriptors: Visualization, Learning Strategies, Science Education, Educational Practices
Peer reviewed Peer reviewed
Direct linkDirect link
Tschaepe, Mark D. – Education and Culture, 2012
Dewey's conception of scientific explanation, which has been neglected by both philosophers of science and philosophers of education, facilitates overcoming the seeming divide between teaching a highly technical and specialized subject matter and encouraging students to successfully engage in the experience of being philosopher-scientists. By…
Descriptors: Science Education, Educational Philosophy, Inquiry, Teaching Methods
Peer reviewed Peer reviewed
Direct linkDirect link
Entress, Cole; Wagner, Aimee – Science Teacher, 2014
Scientists, science teachers, and serious students recognize that success in science classes requires consistent practice--including study at home. Whether balancing chemical equations, calculating angular momentum, or memorizing the steps of cell division, students must review material repeatedly to fully understand new ideas--and must practice…
Descriptors: Science Education, Science Instruction, Science Interests, Learning Strategies
Previous Page | Next Page »
Pages: 1  |  2  |  3  |  4  |  5  |  6  |  7  |  8  |  9  |  10  |  11  |  ...  |  14