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Ark, Thomas J. Vander; Liebtag, Emily; McClennen, Nate – ASCD, 2020
"Place: it's where we're from; it's where we're going. . . . It asks for our attention and care. If we pay attention, place has much to teach us." With this belief as a foundation, "The Power of Place" offers a comprehensive and compelling case for making communities the locus of learning for students of all ages and…
Descriptors: Authentic Learning, Place Based Education, Learner Engagement, Educational Principles
Thomas, John I. – 1989
Pupils' natural questioning attitudes lead them to discovery in a learning center, in contrast to the lecture method, by which information is forced on students regardless of their interests. This paper describes learning experiences built around rocks. Materials placed in a rock center (rocks, stones, pebbles, magnifying glasses hammers, and…
Descriptors: Activity Units, Discovery Learning, Experiential Learning, Inquiry

Jacobs, Heidi Hayes; Borland, James H. – Gifted Child Quarterly, 1986
The Interdisciplinary Concept Model is a four-step plan for developing interdisciplinary curriculum units for gifted students. The model's steps are selecting a topic, brainstorming associations, formulating guiding questions for inquiry, and designing and implementing activities. (Author/CB)
Descriptors: Curriculum Development, Curriculum Enrichment, Elementary Secondary Education, Gifted

Taylor, Joseph A.; Lunetta, Vincent N.; Dana, Thomas M.; Tasar, Mehmet F. – Journal of College Science Teaching, 2002
Describes an engineering course for education and other nonscience majors. In this course, students integrate basic principles of applied physical science and engineering to solve authentic design problems. Discusses the nature of the interactive and problem-based instructional format and its effects on developing students' scientific inquiry…
Descriptors: Course Descriptions, Curriculum Development, Engineering Education, Higher Education
Zorfass, Judith M. – 1998
This book offers middle school educators information about inquiry-based, interdisciplinary learning, highlighting the I-Search process. I-Search offers a powerful mix of ingredients (e.g., respecting curiosity, supporting independence, and fostering creativity) to capture students' and teachers' imaginations. It makes research more learner…
Descriptors: Action Research, Diversity (Student), Early Adolescents, Inquiry
Penfield, Joyce A.; Ornstein-Galicia, Jacob – 1981
Two main factors are involved in bilingual-bicultural education as far as science education is concerned. First, there is the interplay between language and concept formation, and secondly, there is a need for culturally familiar examples in science materials for bilingual students. In line with these factors, this paper suggests that an inquiry…
Descriptors: Bilingual Education, Communicative Competence (Languages), Discovery Learning, Elementary Education
Martinello, Marian L.; Cook, Gillian E. – 2000
This book was written from the Deweyan premise that children will become lifelong, self-directed learners by engaging in inquiry processes with interdisciplinary content and that, from these explorations, upper elementary and middle school students can inductively formulate concepts and generalizations that help to explain the world and what it…
Descriptors: Accountability, Computer Uses in Education, Educational Technology, Elementary Education
Rainey, Larry; Mitrook, Kim – 1996
This program, supported by the Center for Communication and Educational Technology at the University of Alabama, incorporates the perspectives of biology, earth/space science, chemistry, and physics into an innovative science curriculum for the middle grades. Students are engaged for 20 minutes 3 times a week by an on-air instructor who is doing…
Descriptors: Chemistry, Earth Science, Educational Innovation, Electronic Mail