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Furman, Cara E. – Education and Culture, 2017
This paper is premised on the fact that math can be an important tool in helping people make sense of the world. Math offers a unique and particular lens, helping people to focus on a range of characteristics from shape and amount to the relationship between the general and the particular. To promote math as a tool for making sense, early…
Descriptors: Preschool Teachers, Manipulative Materials, Early Childhood Education, Teaching Methods
Lombardi, Sara A.; Hicks, Reimi E.; Thompson, Katerina V.; Marbach-Ad, Gili – Advances in Physiology Education, 2014
This study investigated the impact of three commonly used cardiovascular model-assisted activities on student learning and student attitudes and perspectives about science. College students enrolled in a Human Anatomy and Physiology course were randomly assigned to one of three experimental groups (organ dissections, virtual dissections, or…
Descriptors: Teaching Methods, Experiential Learning, Manipulative Materials, Human Body
Georgeson, Joseph – Mathematics Teaching in the Middle School, 2011
Students enjoy origami and like making everything from paper cranes to footballs out of small, colorful squares of paper. They can invent their own shapes and are intrigued by the polyhedrons that they can construct. Paper folding is fun, but where is the math? Unless teachers develop lessons that address mathematical objectives, origami could be…
Descriptors: Student Interests, Algebra, Mathematics Instruction, Experiential Learning
Elicker, Joelle D.; McConnell, Nicole L. – Teaching of Psychology, 2011
This study examined three methods of responding to in-class multiple-choice concept questions in an Introduction to Psychology course. Specifically, this study compared exam performance and student reactions using three methods of responding to concept questions: (a) a technology-based network system, (b) hand-held flashcards, and (c) hand…
Descriptors: Student Reaction, Program Effectiveness, Educational Technology, Psychology

Brunton, James – Mathematics in School, 1973
Descriptors: Activity Units, Enrichment, Experiential Learning, Geometric Concepts

Spaulding, Raymond E. – Mathematics Teacher, 1974
Descriptors: Discovery Learning, Experiential Learning, Geometric Concepts, Instructional Materials

Mensch, David L.; Rubba, Peter A. – School Science and Mathematics, 1991
The effectiveness of using a set of models in two protein synthesis laboratory exercises accompanied by a series of two lectures on the topic was assessed. The purpose, procedure, example test items, the findings, and a discussion are included. (KR)
Descriptors: Achievement, Biology, Experiential Learning, Manipulative Materials

Allen, Barbara – Science Scope, 2000
Uses marshmallows to teach students about atomic structure by having students make models of atoms out of marshmallows. Allows for creativity while enhancing students' understanding of atoms. (ASK)
Descriptors: Atomic Structure, Elementary Secondary Education, Experiential Learning, Hands on Science

DeTemple, Duane; Miedema, Allen – Mathematics Teacher, 1997
Describes activities in which students perform experiments with physical models that they create. Students develop geometric intuition and build a concrete foundation upon which abstract principles can be built. (DDR)
Descriptors: Educational Resources, Educational Strategies, Experiential Learning, Geometric Constructions