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Marin, Katherine Ariemma; White, Stephanie J. – School Science and Mathematics, 2023
Middle and high school students are part of Generation Z (birth years 1997-2012), a group that is emerging as very different from their parents and teachers. This article considers ways that generational research about Generation Z learners and NCTM's Effective Mathematics Teaching Practices can be used to inform and innovate practice in the…
Descriptors: Teaching Methods, Mathematics Instruction, Age Groups, Instructional Design

Kloosterman, Peter – School Science and Mathematics, 1992
Describes a teaching experiment that evaluated published supplemental materials used to aid preparation of lessons at the fourth grade level involving nonroutine word problems. Lists 12 insights gained that can be useful to teachers using commercially produced problem-solving materials. (MDH)
Descriptors: Cognitive Processes, Elementary Secondary Education, Enrichment Activities, Grade 4

Austin, Joe Dan; And Others – School Science and Mathematics, 1992
Describes a project that enrolled 36 secondary mathematics and science teachers to work cooperatively to plan a program to help integrate mathematics and science concepts. Thirteen ninth grade study units having a laboratory or demonstration component were developed, field tested, and evaluated. Teachers noted differences in using mathematics.…
Descriptors: Cooperative Planning, Cooperative Programs, Coordination, Curriculum Development

Lonning, Robert A.; DeFranco, Thomas C. – School Science and Mathematics, 1994
An integrated mathematics/science elementary methods course was developed as part of Connecticut's statewide systemic initiative. Considers: (1) What does integration mean? (2) What content should be taught? and (3) How should it be taught? Implementation team included an exemplary elementary teacher. Appendix presents a sample integrated lesson.…
Descriptors: Course Descriptions, Curriculum Development, Elementary Education, Higher Education

Sanders, Mark – School Science and Mathematics, 1994
Discusses the Technology, Science, Mathematics Integration Project's technological problem-solving method, briefly describes 15 activities and the corresponding technology, science, and mathematics content involved (including 1 detailed example), and proposes a general structure of the activities and research in support of this approach. (MKR)
Descriptors: Alternative Assessment, Cognitive Style, Competition, Constructivism (Learning)