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Schmidt, William; Houang, Richard; Cogan, Leland – Journal of Direct Instruction, 2004
This article presents an analogy which explains much of the differences between schooling and teaching in the highest achieving countries in the world and in the United States. A new analysis of data from the Third International Math and Science Study (TIMSS) provides evidence that American students and teachers are greatly disadvantaged by the…
Descriptors: Mathematics Achievement, Mathematics Instruction, Teaching Methods, Mathematics Curriculum
What Works Clearinghouse, 2004
"The Expert Mathematician" is a three-year program of software instruction with 196 lessons, each ranging from one to three class periods. It covers general mathematics, pre-algebra, and algebra I. It uses the "Logo" computer language to focus on writing, operating, and applying mathematical procedures to study concepts,…
Descriptors: Computer Software, Middle Schools, Mathematics Curriculum, Middle School Students
Benken, Babette M.; Brown, Nancy – Issues in Teacher Education, 2008
The combination of federal exigency for Highly Qualified Teachers in every classroom (No Child Left Behind, 2001) and focus on teacher accountability has created a plethora of routes to teacher certification and continuing education. This urgent situation has placed a burden on schools of education to approach teacher education in creative and…
Descriptors: Mathematics Teachers, Professional Development, Alternative Teacher Certification, Mathematics Curriculum
Confrey, Jere; King, Karen D.; Strutchens, Marilyn E.; Sutton, John T.; Battista, Michael T.; Boerst, Timothy A.; Smith, Margaret Schwan; Reed, Judith – Journal for Research in Mathematics Education, 2008
Research on curricular choices has attracted widespread attention and merits increased investment by the research community. Multiple studies, publications, conferences, and a multicampus center (The Show-Me Project, n.d.) speak to the need to discuss what is taught in the classrooms and to whom, how, and when. Since the 1990s, with the creation…
Descriptors: Mathematics Education, Teacher Qualifications, Federal Legislation, Educational Change
Ruthven, Kenneth; Hennessy, Sara; Deaney, Rosemary – Computers & Education, 2008
The idea of "interpretative flexibility" underpins new approaches to studying technological artefacts and curricular resources in use. This paper opens by reviewing, in this light, the evolving design of dynamic geometry, its pioneering use within classroom projects, and early sketches of its mainstream use in ordinary classrooms. After…
Descriptors: Computer Software, Educational Change, Norms, Geometry
Duschl, Richard A.; Shouse, Andrew W.; Schweingruber, Heidi A. – Principal, 2007
The standards movement arrived in the mid-1980s and new curriculum frameworks of instruction were crafted for the reform of science and mathematics curriculum, instruction, assessment, and professional development for teachers. Today, the clarion warning calls about science and mathematics education, the fading STEM (science, technology,…
Descriptors: Mathematics Curriculum, Mathematics Education, Advanced Placement, Educational Change
Skalicky, Jane – Australian Primary Mathematics Classroom, 2007
This article tells the story of one student who chooses her personal interest in pigeons and their lifestyle to demonstrate her understanding of measurement concepts. The student's work is used to consider the possibilities for assessment afforded by tasks designed within reform-based curricula. Anita (pseudonym) was a Grade 6 student who was part…
Descriptors: Mathematics Curriculum, Numeracy, Educational Change, Grade 6
Tennison, Alan D. – Mathematics Teacher, 2007
This article examines the impact of using a problem-based curriculum in a heterogeneous classroom environment. (Contains 1 table.)
Descriptors: Classroom Environment, Problem Based Learning, Mathematics Curriculum, National Standards
Kettlewell, Janet S., Ed.; Henry, Ronald J., Ed. – Rowman & Littlefield Education, 2009
The U. S. is losing its competitive edge in science, technology, engineering, and mathematics (STEM). Thomas Friedman warns that America is not producing enough young people in STEM fields that are essential for entrepreneurship and innovation in the 21st century (The World Is Flat: A Brief History of the Twenty-First Century, 2005). Blue ribbon…
Descriptors: Mathematics Curriculum, Higher Education, Teacher Effectiveness, Elementary Secondary Education
Ruddock, Graham; Sainsbury, Marian – National Foundation for Educational Research, 2008
This study looks at the curricula for mathematics, science and literacy, comparing England's curricula with those of other countries based on performance in international comparative surveys. The main objective was to answer the question: How does the content of the Primary Curriculum in England at Key stage 2 compare in literacy, math and science…
Descriptors: Mathematics Curriculum, Foreign Countries, Literacy, Science Curriculum
Gutstein, Eric – Mathematical Thinking & Learning: An International Journal, 2006
This article describes the views of Latino/a parents who supported social justice mathematics curriculum for their children in a 7th-grade Chicago public school classroom in which I was the teacher. The parents viewed dealing with and resisting oppression as necessary parts of their lives; they also saw mathematics as integral and important.…
Descriptors: Mathematics Instruction, Hispanic Americans, Parent Attitudes, Justice
Duval, Raymond – Educational Studies in Mathematics, 2006
To understand the difficulties that many students have with comprehension of mathematics, we must determine the cognitive functioning underlying the diversity of mathematical processes. What are the cognitive systems that are required to give access to mathematical objects? Are these systems common to all processes of knowledge or, on the…
Descriptors: Cognitive Processes, Comprehension, Mathematics, Difficulty Level
American Association for the Advancement of Science, Washington, DC. – 1993
Project 2061, begun in 1985, is a long-term effort of scientists and educators on behalf of all children, the purpose of which is to help transform the nation's school system so that all students become well educated in science, mathematics, and technology. Science For All Americans, the first Project 2061 publication, answered the question of…
Descriptors: Benchmarking, Educational Change, Elementary Secondary Education, Mathematics Curriculum
Zaslavsky, Claudia – 1996
Teachers realize that students are most motivated when they are actively involved in their own learning and dealing with the issues of greatest concern to themselves and their communities. The first three chapters of this book present a rationale for multicultural mathematics education, including an overview of issues, features of a multicultural…
Descriptors: Elementary Secondary Education, Equal Education, Interdisciplinary Approach, Learning Activities
Brodsky, Stanley M. – 1995
A study sought to determine the extent to which mathematics content in tech prep programs in New York state matched or differed from the content of the three Regents college preparatory courses. Data were gathered through questionnaires received from a sample of 24 of the state's 30 tech prep consortia providing information about 27 curricula.…
Descriptors: College Preparation, Integrated Curriculum, Mathematics Curriculum, Mathematics Instruction

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