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McDowell, Eric L. – Mathematics Teacher, 2016
By the time they reach middle school, all students have been taught to add fractions. However, not all have "learned" to add fractions. The common mistake in adding fractions is to report that a/b + c/d is equal to (a + c)/(b + d). It is certainly necessary to correct this mistake when a student makes it. However, this occasion also…
Descriptors: Fractions, Number Systems, Number Concepts, Numbers
Patterson, Lynn G.; Patterson, Kadie L. – Mathematics Teaching in the Middle School, 2014
Motivating middle school students to learn can be challenging. One proven method for doing so is through an integrated curriculum. Educational philosophers and curriculum theorists have long noted the benefits of an integrated curriculum, which recognizes that the subject areas within the curriculum are connected to one another and to the real…
Descriptors: Middle School Students, Problem Solving, Integrated Curriculum, Interdisciplinary Approach
Wickett, Maryann; Hendrix-Martin, Eunice – Stenhouse Publishers, 2011
Multiple-choice testing is an educational reality. Rather than complain about the negative impact these tests may have on teaching and learning, why not use them to better understand your students' true mathematical knowledge and comprehension? Maryann Wickett and Eunice Hendrix-Martin show teachers how to move beyond the student's answer--right…
Descriptors: Educational Strategies, Student Evaluation, Standardized Tests, Multiple Choice Tests
Muschla, Judith A.; Muschla, Gary Robert; Muschla, Erin – Jossey-Bass, An Imprint of Wiley, 2012
The new Common Core State Standards for Mathematics have been formulated to provide students with instruction that will help them acquire a thorough knowledge of math at their grade level, which will in turn enable them to move on to higher mathematics with competence and confidence. "Hands-on Activities for Teaching the Common Core Math…
Descriptors: State Standards, Mathematics Instruction, Academic Standards, Experiential Learning
Taylor-Cox, Jennifer – Eye on Education, 2009
Useful for small groups or one-on-one instruction, this book offers successful math interventions and response to intervention (RTI) connections. Teachers will learn to target math instruction to struggling students by: (1) Diagnosing weaknesses; (2) Providing specific, differentiated instruction; (3) Using formative assessments; (4) Offering…
Descriptors: Feedback (Response), Intervention, Number Concepts, Mathematics Teachers
Fletcher, Rodney – Australian Senior Mathematics Journal, 2008
This article presents a guided investigation into the spacial relationships between the centres of the squares in a Fibonacci tiling. It is essentially a lesson in number pattern, but includes work with surds, coordinate geometry, and some elementary use of complex numbers. The investigation could be presented to students in a number of ways…
Descriptors: Geometry, Mathematics Activities, Number Concepts, Geometric Concepts
Kartambis, Kathy – Australian Primary Mathematics Classroom, 2007
Research has established that children's development of addition and subtraction skills progresses through a hierarchy of strategies that begin with counting-by-one methods through to flexible mental strategies using a combination of knowledge of basic facts and understanding of place value. An important transition point is the shift from the…
Descriptors: Mental Computation, Number Concepts, Subtraction, Arithmetic
Peer reviewedFeinberg-McBrian, Carol – Mathematics Teacher, 1996
Explores trapezoidal numbers, which are the result of subtracting two triangular numbers. Includes classroom activities involving trapezoidal numbers to help students develop their problem-solving skills. Includes reproducible student worksheets. (MKR)
Descriptors: Geometry, Mathematics Instruction, Number Concepts, Problem Solving
Peer reviewedTeaching Children Mathematics, 1998
Presents solutions for a problem concerning doubling a recipe from a previous article on number concepts in the October 1997 issue. (ASK)
Descriptors: Computation, Elementary Education, Mathematics Activities, Mathematics Instruction
Milou, Eric; Schiffman, Jay L. – Mathematics Teacher, 2007
In many mathematics classes, students are asked to learn via the discovery method, in the hope that the intrinsic beauty of mathematics becomes more accessible and that making conjectures, forming hypotheses, and analyzing patterns will help them compute fluently and solve problems creatively and resourcefully (NCTM 2000). The activity discussed…
Descriptors: Probability, Discovery Learning, Mathematics Instruction, Teacher Education
Peer reviewedDamjanovich, Mary Lou; Martain, Jane S. – Teaching Children Mathematics, 2000
Presents activities that focus on number sense. (KHR)
Descriptors: Elementary Education, Instructional Materials, Mathematics Activities, Mathematics Instruction
Peer reviewedSakshaug, Lynae – Teaching Children Mathematics, 2000
Describes a problem that appeared in the April, 1999 issue of this journal and analyzes student responses and misconceptions. The problem concerns exponential progressions. (KHR)
Descriptors: Elementary Education, Instructional Materials, Mathematics Education, Number Concepts
Peer reviewedBrickman, Mary – Arithmetic Teacher, 1986
Empty food containers can be used to have students devise mathematical problems. Sample questions that might be asked about two food boxes are included. (MNS)
Descriptors: Elementary Education, Elementary School Mathematics, Learning Activities, Mathematics Instruction
Peer reviewedSchultz, James E.; Burger, William F. – College Mathematics Journal, 1984
Demonstrated is how the concept of equivalence classes modulo n can provide a basis for solving a wide range of problems. Five problems are presented and described to illustrate the power and usefulness of modular arithmetic in problem solving. (MNS)
Descriptors: College Mathematics, Higher Education, Mathematics, Mathematics Instruction
Peer reviewedWillcutt, Bob – Arithmetic Teacher, 1983
The problem of placing stamps on a grid is presented, with variable forms of the problem and various levels of the solution described. (MNS)
Descriptors: Elementary Secondary Education, Manipulative Materials, Mathematics Education, Mathematics Instruction

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