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Siantuba, Jackson; Nkhata, Leonard; de Jong, Ton – Smart Learning Environments, 2023
This study sought to develop and evaluate an online module based on inquiry learning with digital laboratories, which was intended to address students' misconceptions in a science domain. In a quasi-experimental design, 171 first-year students in a higher education introductory physics course on circular motion were as their existing groups…
Descriptors: College Freshmen, College Science, Introductory Courses, Physics
Harshbarger, Dena; Wiechman, Joseph – Science and Children, 2021
This article describes a force and motion unit that spanned four weeks (50 minutes a day) in a fifth-grade classroom. The inquiry-based learning progression mirrors Piaget's Theory of Cognitive Development (1952) because it allowed students to manipulate materials and ideas as they actively constructed and reconstructed their knowledge of motion…
Descriptors: Grade 5, Elementary School Science, Engineering Education, Physics
De Luca, Roberto; Faella, Orazio; Vestuti, Barbara – Physics Education, 2021
The motion of a cylindrically or spherically symmetric body on an accelerated treadmill, inclined of an angle [theta] with respect to the horizontal, is described by means of Newtonian mechanics. By assuming that the conveyor belt has an acceleration "a[subscript O][superscript ']", not necessarily constant, and that the body rolls on…
Descriptors: Motion, Physics, Mechanics (Physics), Scientific Concepts
Pierratos, Theodoros; Sotirios, Mandiliotis; Eirini, Dermitzaki – Physics Education, 2022
Teaching of centripetal force in secondary education is a challenging task because of its central role in the circular and rotational motion. The specific equipment needed for experiments that explore the physical law which governs the centripetal force is usually limited in schools. The experiment presented in this paper, is based on a device…
Descriptors: Physics, Science Instruction, Motion, Prediction
Hansen, Ryan R.; Anderson, Audrey C.; Barua, Niloy; McGinley, Logan M. – Chemical Engineering Education, 2021
This report evaluates the use of active, open-ended research problems taken from the instructor's laboratory and assigned as mid-semester projects in Transport Phenomena. Projects are structured in a POGIL [process oriented guided inquiry learning] format and designed to engage students by providing them the opportunity to impact real research…
Descriptors: Teaching Methods, Laboratories, Motion, Energy
Kuang, Xiulin; Eysink, Tessa H. S.; de Jong, Ton – Journal of Computer Assisted Learning, 2020
Hypothesis generation is an important but difficult process for students. This study investigated the effects of providing students with support for hypothesis generation, with regard to the testability and complexity of the generated hypotheses, the quality of the subsequent inquiry learning processes and knowledge acquisition. Fifty-two…
Descriptors: Hypothesis Testing, Simulation, Inquiry, Active Learning
Van Meeteren, Beth Dykstra, Ed. – Teachers College Press, 2022
Children are intrigued by moving objects, even more so when they can engineer the movement. This volume in the STEM for Our Youngest Learners Series uses Ramps and Pathways as a context to provide children ages 3-8 with opportunities to engage in STEM every day. Ramps and Pathways is a meaningful and fun way for children to develop engineering…
Descriptors: STEM Education, Teaching Methods, Vignettes, Communities of Practice
Greenwolfe, Matthew L. – Physics Teacher, 2015
In a Montessori preschool classroom, students work independently on tasks that absorb their attention in part because the apparatus are carefully designed to make mistakes directly observable and limit exploration to one aspect or dimension. Control of error inheres in the apparatus itself, so that teacher intervention can be minimal. Inspired by…
Descriptors: Robotics, Mechanics (Physics), Preschool Children, Preschool Education
Taylor, Gregory S.; Hord, Casey – Learning Disabilities: A Multidisciplinary Journal, 2016
An exploratory study of a middle school curriculum directly aligned with the Next Generation Science Standards was conducted with a focus on how the curriculum addresses the instructional needs of students with learning disabilities. A descriptive analysis of a lesson on speed and velocity was conducted and implications discussed for students with…
Descriptors: Middle School Students, Science Instruction, Science Curriculum, Research Methodology
Concannon, James; Brown, Patrick L. – Science Activities: Classroom Projects and Curriculum Ideas, 2017
The "Next Generation Science Standards" (NGSS) challenges science teachers to think beyond specific content standards when considering how to design and implement curriculum. This lesson, "Windmills by Design," is an insightful lesson in how science teachers can create and implement a cross-cutting lesson to teach the concepts…
Descriptors: Secondary School Science, Science Curriculum, Curriculum Design, High School Students
English, Vincent; Crotty, Yvonne; Farren, Margaret – Digital Education Review, 2015
Inspiring Science Education (ISE) (http://www.inspiringscience.eu/) is an EU funded initiative that seeks to further the use of inquiry-based science learning (IBSL) through the medium of ICT in the classroom. The Basketball Shot is a scenario (lesson plan) that involves the use of video capture to help the student investigate the concepts of…
Descriptors: Active Learning, Inquiry, Motion, Video Technology
Grooms, Jonathon; Enderle, Patrick J.; Hutner, Todd; Murphy, Ashley; Sampson, Victor – NSTA Press, 2016
Are you interested in using argument-driven inquiry for middle school lab instruction but just are not sure how to do it? "Argument-Driven Inquiry in Physical Science" will provide you with both the information and instructional materials you need to start using this method right away. The book is a one-stop source of expertise, advice,…
Descriptors: Biological Sciences, Science Instruction, Persuasive Discourse, Inquiry
Deniz, Hasan; Dulger, Mehmet F. – Journal of Science Education and Technology, 2012
This study examined to what extent inquiry-based instruction supported with real-time graphing technology improves fourth grader's ability to interpret graphs as representations of physical science concepts such as motion and temperature. This study also examined whether there is any difference between inquiry-based instruction supported with…
Descriptors: Graphs, Grade 4, Elementary School Students, Inquiry
What Works Clearinghouse, 2012
"ARIES: Exploring Motion and Forces" is a physical science curriculum for students in grades 5-8 that employs 18 inquiry-centered, hands-on lessons called "explorations." The curriculum draws upon students' curiosity to explore phenomena, allowing for a discovery-based learning process. Group-centered lab work is designed to…
Descriptors: Elementary School Science, Astronomy, Physics, Motion
Kopasz, Katalin; Makra, Péter; Gingl, Zoltán – Acta Didactica Napocensia, 2013
Experiments, as we all know, are especially important in science education. However, their impact on improving thinking could be even greater when applied together with the methods of inquiry-based learning (IBL). In this paper we present our observations of a high-school laboratory class where students used computers to carry out and analyse real…
Descriptors: Science Education, Science Experiments, Active Learning, Inquiry
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