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Xu, Binyan, Ed.; Zhu, Yan, Ed.; Lu, Xiaoli, Ed. – Research in Mathematics Education, 2021
This book seeks to illustrate the research on mathematics competencies and disposition in China according to the conceptual development and empirical investigation perspective. Mathematics education in China has a distinguishing feature a focus of attention to mathematical competency. Paradoxically, there has not been an explicit, refined, and…
Descriptors: Mathematics Skills, Mathematics Achievement, Mathematics Education, Evaluation Methods
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Yopp, David A.; Ellsworth, Jacob L. – Mathematics Teaching in the Middle School, 2016
Empirical arguments rely on examples without necessarily addressing all cases. Students should be skeptical of empirical evidence and should seek more secure arguments for generalizations, such as those that explain why a generalization is true for all cases. Generalizing on the basis of patterns in data is an important mathematical practice;…
Descriptors: Generalization, Trust (Psychology), Persuasive Discourse, Mathematics Education
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Armstrong, Alayne C. – Journal of Mathematical Behavior, 2008
This article considers two small groups of students in the same Grade 8 mathematics classroom whose approaches to the same mathematical problem result in very different experiences. Using videotapes and written transcripts, an analysis of the groups' working processes was undertaken using Sawyer's pre-existing structures required for the presence…
Descriptors: Grade 8, Mathematics Instruction, Middle School Students, Secondary School Mathematics
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Shepherd, Carol; Mullane, Ann Mary – Journal of College Teaching & Learning, 2010
Harnessing student energy for the positive use of technology in the classroom requires significant change for many educators. Students today exhibit a one-click mentality when using computers in the classroom, and are frustrated when they are not provided with instant gratification. Gone are the reading and higher level thinking skills of the pen…
Descriptors: Toys, Learning Processes, Educational Technology, Thinking Skills
Schielack, Jane – National Council of Teachers of Mathematics, 2010
This book describes and illustrates learning paths for the mathematical concepts and skills of each grade 8 Focal Point as presented in Curriculum Focal Points for Prekindergarten through Grade 8 Mathematics. It includes representational supports for teaching and learning that can facilitate understanding, stimulate productive discussions about…
Descriptors: Mathematics Curriculum, Grade 8, Misconceptions, Mathematics Instruction
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Olitsky, Stacy – Science Education, 2007
This paper explores both the obstacles and the possibilities for students developing identities associated with science by engaging in solidarity-building classroom interactions. Data come from ethnographic research conducted in a diverse eighth-grade urban magnet school classroom in which the teacher taught out of field for part of the year.…
Descriptors: Learning Processes, Science Instruction, Teaching Methods, Urban Schools
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Schlenker, Richard M.; Blanke, Regina; Mecca, Peter – Science Activities: Classroom Projects and Curriculum Ideas, 2007
The authors used the 5E learning cycle (engage, explore, explain, extend, and evaluate) and a pulmonary carbon dioxide mystery to introduce eighth grade students to the study of chemistry. The activity engages students in measurement, data collection, data analysis, media and internet research, research design, and report writing as they search…
Descriptors: Research Design, Technical Writing, Chemistry, Learning Processes
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Haller, Eileen P.; And Others – Educational Researcher, 1988
Meta-analysis was used to assess the effect of metacognitive instruction on reading comprehension. Twenty studies from the reading research literature were compiled and quantitatively synthesized. Results affirm the effectiveness of metacognitive strategies, especially for junior high school students. Textual inconsistency awareness,…
Descriptors: Grade 7, Grade 8, Junior High School Students, Junior High Schools
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Watson, Jane – Australian Mathematics Teacher, 1991
A survey study asked Australian experienced teachers during workshops to rate what they believed to be the most difficult aspects of mathematics in grades seven and eight. Problem solving, number sense, and rational numbers were rated as most difficult. The research question provided a catalyst for action in professional development programs. (MDH)
Descriptors: Cognitive Processes, Educational Diagnosis, Grade 7, Grade 8
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Mansfield, Helen M.; Happs, John C. – School Science and Mathematics, 1992
Reports misconceptions identified in students with respect to the topic of parallel lines and the teaching strategies found to be useful in challenging those misconceptions. (11 references) (MDH)
Descriptors: Cognitive Development, Cognitive Processes, Cognitive Structures, Concept Formation
Prinsen, Tammy – 2000
This unit intends for students to explore various literary devices such as theme, characterization, and vocabulary while they read Jack London's "The Call of the Wild." While reading this text, students will explore the relationship of these devices in connection to the unit's overall theme: survival. Students will be exposed to history,…
Descriptors: Class Activities, Grade 8, Junior High Schools, Learning Activities
Iakimanskaia, I. S.; Iudashina, N. I. – Soviet Education, 1990
Examines relationships between student interests and aptitude in selected academic fields and their success in intensive courses on these subjects. Discusses a two-year study of 33 mathematics students and 32 literature students in the eighth and ninth grades in the Soviet Union. Shows that differentiated, intensive study did not strengthen…
Descriptors: Academic Aptitude, Classroom Research, Cognitive Development, Comparative Analysis