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Ceuppens, Stijn; Bollen, Laurens; Deprez, Johan; Dehaene, Wim; De Cock, Mieke – Physical Review Physics Education Research, 2019
We design, validate, and administer a 24-item test to study student understanding of linear functions in 1D kinematics [x(t)] and mathematics [y(x)] in the 9th grade. The items assess identification and comparison of initial position and velocity in 1D kinematics and of the y intercept and slope in mathematics using a graph or an algebraic…
Descriptors: Grade 9, Problem Solving, Student Attitudes, Mechanics (Physics)
Bundock, Kaitlin; Hawken, Leanne S.; Kiuhara, Sharlene A.; O'Keeffe, Breda V.; O'Neill, Robert E.; Cummings, Margarita B. – Learning Disability Quarterly, 2021
Implementing an integrated sequence of concrete-representational-abstract depictions of mathematics concepts (CRA-I) can improve the mathematics achievement of students with disabilities, and explicit instructional strategies involving problem-solving heuristics and student verbalizations can help facilitate students' conceptual understanding of…
Descriptors: High School Students, Students with Disabilities, Problem Solving, Mathematics Instruction
Daher, Wajeeh M.; Anabousi, Anlam A. – REDIMAT - Journal of Research in Mathematics Education, 2015
The topic of function transformations is a difficult mathematical topic for school and college students. This article examines how students conceive function transformations after working with GeoGebra, when this conceiving relates to the algebraic representation. The research participants were 19 ninth grade high achieving students who learned,…
Descriptors: Mathematical Concepts, Algebra, Educational Technology, Technology Uses in Education
Fonger, Nicole L.; Davis, Jon D.; Rohwer, Mary Lou – School Science and Mathematics, 2018
This research addresses the issue of how to support students' representational fluency--the ability to create, move within, translate across, and derive meaning from external representations of mathematical ideas. The context of solving linear equations in a combined computer algebra system (CAS) and paper-and-pencil classroom environment is…
Descriptors: Mathematics Instruction, Mathematical Concepts, Algebra, Problem Solving
Grünberg, David; Matt, Andreas – Mathematics Teacher, 2015
Children love sculpting clay or building sand castles, creating objects in three dimensions before they have the motor skills to draw in two dimensions. Similar arguments applied to the study of curves and graphs in high school mathematics would suggest that students' work and calculation with shapes should move sequentially from concrete to more…
Descriptors: Algebra, Secondary School Mathematics, High School Students, Grade 9
Nitsch, Renate; Fredebohm, Anneke; Bruder, Regina; Kelava, Augustin; Naccarella, Dominik; Leuders, Timo; Wirtz, Markus – International Journal of Science and Mathematics Education, 2015
In the subject matter of functional relationships, a student's ability to translate from one form of representation to another is seen as a central competence. In the course of the HEUREKO project (heuristic work with representations of functional relationships and the diagnosis of mathematical competencies of students), a theoretical competence…
Descriptors: Mathematics Instruction, Secondary School Mathematics, Mathematical Concepts, Mathematics Skills
Fonger, Nicole L. – Mathematics Teacher, 2014
How can the key concept of equivalent expressions be addressed so that students strengthen their representational fluency with symbols, graphs, and numbers? How can research inform the synergistic use of both paper-and-pencil analysis and computer algebra systems (CAS) in a classroom learning environment? These and other related questions have…
Descriptors: Mathematics Instruction, Mathematical Concepts, Computer Uses in Education, Algebra
Valahas, Theodoros; Boukas, Andreas – Australian Senior Mathematics Journal, 2011
In Years 9 and 10 of secondary schooling students are typically introduced to quadratic expressions and functions and related modelling, algebra, and graphing. This includes work on the expansion and factorisation of quadratic expressions (typically with integer values of coefficients), graphing quadratic functions, finding the roots of quadratic…
Descriptors: Algebra, French, Mathematics Instruction, Mathematics Activities
Foegen, Anne; Morrison, Candee – Intervention in School and Clinic, 2010
Algebra progress monitoring is a research-based practice that extends a long history of research in curriculum-based measurement (CBM). This article describes the theoretical foundations and research evidence for algebra progress monitoring, along with critical features of the practice. A detailed description of one practitioner's implementation…
Descriptors: Curriculum Based Assessment, Algebra, Mathematics Education, Intervention
What Works Clearinghouse, 2007
"University of Chicago School Mathematics Project (UCSMP) Algebra," designed to increase students' skills in algebra, is appropriate for students in grades 7-10, depending on the students' incoming knowledge. This one-year course highlights applications, uses statistics and geometry to develop the algebra of linear equations and…
Descriptors: Grade 7, Algebra, Mathematics Instruction, Mathematics Skills