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Showing 1 to 15 of 21 results Save | Export
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Lewis, Drew; Clontz, Steven; Estis, Julie – PRIMUS, 2021
Team-Based Learning (TBL) is a cooperative learning strategy blending elements of flipped learning, inquiry-based learning, and problem-based learning. Although used quite frequently in other disciplines, use of this strategy in mathematics has been limited. In this article, we describe how TBL can be implemented in math courses with adherence to…
Descriptors: Cooperative Learning, Inquiry, Active Learning, Flipped Classroom
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Sumrall, William J.; Sumrall, Kristen M. – Science Activities: Classroom Projects and Curriculum Ideas, 2018
The NGSS MS-ETS1 Engineering Design (1-4) is the focus of the article. Development of a challenging problem-based activity that is an improvement over the traditional egg drop competition is emphasized. Quantification of data collected and real-world relevance are two activity components that are viewed as improvements over the egg drop. The…
Descriptors: Engineering, Design, Problem Based Learning, Science Activities
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Preston, Christine – Teaching Science, 2016
This article is the second in "Teaching Science's" "Try This" series. These hands-on activities are designed especially for early childhood students to encourage their natural curiosity and promote development of scientific thinking. In this activity, the problem-based learning approach means that the children are engaged in a…
Descriptors: Early Childhood Education, Inquiry, Problem Based Learning, Hands on Science
Stanley, Todd – Prufrock Press Inc., 2019
"Case Studies and Case-Based Learning" brings authentic, real-world learning to the classroom and: (1) Transforms students' thinking and fosters 21st-century skills; (2) Provides strategies, examples, and resources for implementing case-based learning across the disciplines; (3) Features a step-by-step process for creating case-based…
Descriptors: Case Method (Teaching Technique), Case Studies, Authentic Learning, Active Learning
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Mann, Michele J.; Pynes, D'Anna – Science and Children, 2016
In this article, Mann and Pynes describe a five-day mini-project-based learning (PBL) unit about organisms and their environments that addresses the "Next Generation Science Standards" (3-LS4-3). Third-grade students were asked how they could determine which animals live in their neighborhoods. In teacher-determined collaborative groups,…
Descriptors: Science Education, Elementary School Science, Grade 3, Animals
McConnell, Tom J.; Parker, Joyce; Eberhardt, Janet – NSTA Press, 2018
"Problem-Based Learning in the Physical Science Classroom, K-12" will help your students truly understand concepts such as motion, energy, and magnetism in true-to-life contexts. The book offers a comprehensive description of why, how, and when to implement problem-based learning (PBL) in your curriculum. Its 14 developmentally…
Descriptors: Problem Based Learning, Physical Sciences, Elementary Secondary Education, Science Instruction
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Lawrence, Maria; Yang, Li-Ling; Briggs, May; Hession, Alicia; Koussa, Anita; Wagoner, Lisa – Science Activities: Classroom Projects and Curriculum Ideas, 2016
A fifth grade life science lesson was implemented through a lesson study approach in two fifth grade classrooms. The research lesson was designed by a team of four elementary school teachers with the goal of emphasizing engineering practices consistent with the "Next Generation Science Standards" (NGSS) (Achieve Inc. 2013). The fifth…
Descriptors: Biological Sciences, Elementary School Science, Grade 5, Engineering
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Forringer, Ted – Physics Teacher, 2014
In our science for non-science majors course "21st Century Physics," we investigate modern "Hubble plots" (plots of velocity versus distance for deep space objects) in order to discuss the Big Bang, dark matter, and dark energy. There are two potential challenges that our students face when encountering these topics for the…
Descriptors: Inquiry, Nonmajors, Physics, Discovery Processes
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Giza, Brian – Science Scope, 2007
When students design and build their own versions of instruments, they appreciate them more--and are more likely to appreciate how experimentation plays a critical role in explaining the world around them (NRC 1999). In this activity, students learn how science is done by becoming active participants. They use free lenses to build simple…
Descriptors: Teaching Methods, Problem Based Learning, Laboratory Equipment, Science Experiments
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Greenwald, Nina L. – Science Teacher, 2000
Focuses on problem-based learning (PBL). Explains ill-defined problems of PBL and compares PBL with the typical problem solving approach. Lists 10 steps to involve students in constructing understanding for use with PBL. (YDS)
Descriptors: Constructivism (Learning), Creative Thinking, Critical Thinking, Inquiry
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Larwa, David J. – Science and Children, 2001
Discusses the different varieties of rice and how these differences are important in cooking and health. Discusses the cultural and historical importance of rice. (YDS)
Descriptors: Elementary Education, Food, Hands on Science, Inquiry
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Singletary, James R. – Science Teacher, 2000
Uses a hypothetical ecology problem in which students need to apply problem based learning for a town government. Explains how to evaluate student results. (YDS)
Descriptors: Ecology, Evaluation, Inquiry, Internet
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Embry, Robyn L. – Hoosier Science Teacher, 2001
Introduces five approaches--problem solving/problem based learning, authentic assessment, writing and communication skills, peer and self evaluation, and fostering curiosity. Suggests that these approaches bring critical thinking to the learning process. (Contains 15 references.) (YDS)
Descriptors: Critical Thinking, High Schools, Inquiry, Learning Processes
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Reinhart, Steven C. – Mathematics Teaching in the Middle School, 2000
Indicates that a teacher-centered, direct-instruction model often did not fit well with more in-depth problems and tasks. Suggests a student-centered, problem-based approach. Presents questioning strategies used to help students engage in learning. (KHR)
Descriptors: Communication (Thought Transfer), Inquiry, Mathematics Education, Mathematics Instruction
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Smithenry, Dennis; Gassman, Christopher; Goodridge, Brandon; Petersen, Tom – Science Teacher, 1998
Explains the process of student and teacher collaboration on a project to develop a faster electrolysis mechanism. Provides a good example of the problem-based approach to science instruction and curriculum. (DDR)
Descriptors: Chemical Reactions, Chemistry, Electrochemistry, Hands on Science
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