Publication Date
In 2025 | 0 |
Since 2024 | 0 |
Since 2021 (last 5 years) | 2 |
Since 2016 (last 10 years) | 6 |
Since 2006 (last 20 years) | 15 |
Descriptor
Source
Author
Allen, Kasi C. | 1 |
Armstrong, Georganna | 1 |
Behrend, Kat | 1 |
Bradbury, Leslie | 1 |
Burgoa, A. Aaron | 1 |
Cabrera, Miguel L. | 1 |
Canty, Reality S. | 1 |
Cave, Richard C. | 1 |
Cohn, Cheryl L. | 1 |
Cook, Allen | 1 |
Dias, Ana Lucia Braz | 1 |
More ▼ |
Publication Type
Education Level
Elementary Education | 7 |
Secondary Education | 6 |
Higher Education | 4 |
Postsecondary Education | 3 |
Elementary Secondary Education | 2 |
Grade 1 | 2 |
Grade 5 | 2 |
Grade 6 | 2 |
High Schools | 2 |
Middle Schools | 2 |
Grade 2 | 1 |
More ▼ |
Audience
Teachers | 34 |
Practitioners | 19 |
Administrators | 1 |
Parents | 1 |
Students | 1 |
Location
Australia | 1 |
Bosnia and Herzegovina | 1 |
Brazil | 1 |
Croatia | 1 |
Germany | 1 |
Hungary | 1 |
Indiana | 1 |
Louisiana | 1 |
Romania | 1 |
Slovakia | 1 |
Slovenia | 1 |
More ▼ |
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
Frank, Kristin – Mathematics Teacher: Learning and Teaching PK-12, 2021
This article explains how explorations into the quadratic formula can offer students opportunities to learn about the structure of algebraic expressions. In this article, the author leverages the graphical interpretation of the quadratic formula and describes an activity in which students derive the quadratic formula by quantifying the symmetry of…
Descriptors: Mathematics Instruction, Mathematical Formulas, Algebra, Teaching Methods
Wonsavage, F. Paul – Mathematics Teacher: Learning and Teaching PK-12, 2022
Quadratic modeling problems are commonplace in high school mathematics courses; they typically situate quadratic patterns of change and their corresponding parabolic graph within real-world contexts. Traditional approaches to this type of problem lend themselves to making connections across different representations (e.g., Garofalo and Trinter…
Descriptors: Mathematics Instruction, Secondary School Mathematics, Problem Solving, High School Students
Young, Kaisa E.; Young, Chadwick H. – Physics Teacher, 2019
Two of the most fundamental skills that students acquire in introductory undergraduate physics laboratory courses are how to accurately plot data and interpret the physical meaning of linear graphs. We redesigned our graphing skills lab with an open-ended approach designed to promote inquiry in graphical analysis and to address specific areas of…
Descriptors: Undergraduate Study, College Science, Physics, Undergraduate Students
Wong, Vicky – School Science Review, 2017
Although graphs are used in both mathematics and science, there are disciplinary differences in the types of tasks, the terminology and the purpose for graphing. This can make it difficult for students to transfer their learning from one subject to the other. By examining the differences in how graphs are used, and the reasons for these…
Descriptors: Graphs, Science Instruction, Mathematics Instruction, Concept Formation
Wilson, Rachel; Bradbury, Leslie – Science and Children, 2019
To become scientifically literate, students need to interpret science concepts using numbers, text, and visuals (Lemke 2004). Scientists use multiple modes to communicate their ideas to each other and the public, including images, text, mathematical notations, symbols, diagrams, charts, and graphs. Several of the science and engineering practices…
Descriptors: Science Instruction, Teaching Methods, Interdisciplinary Approach, Scientific Literacy
Nebesniak, Amy L.; Burgoa, A. Aaron – Mathematics Teacher, 2015
As teachers working with students in entry-level algebra classes, authors Amy Nebesniak and A. Aaron Burgoa realized that their instruction was a major factor in how their students viewed mathematics. They often presented students with abstract formulas that seemed to appear out of thin air. One instance occurred while they were teaching students…
Descriptors: Mathematics Instruction, Algebra, Equations (Mathematics), Mathematical Formulas
Özgün-Koca, S. Asli – Mathematics Teacher, 2016
The Common Core State Standards (CCSSI 2010) and NCTM's (2014) "Principles to Actions" agree that "for meaningful learning of mathematics, tools and technology must be indispensable features of the classroom . . . that support students in exploring mathematics as well as in making sense of concepts and procedures and engaging in…
Descriptors: Mathematics Instruction, Technology Uses in Education, Educational Technology, Mathematical Concepts
Roddy, Mark; Behrend, Kat – Australian Mathematics Teacher, 2015
What do you do when you want to get your Stage 3 students authentically and enthusiastically engaged in the active construction of their understanding and fluency with measurement, data collection, representation and interpretation? How do you enable them to make choices about their learning, to measure with purpose, to record and organise the…
Descriptors: Mathematics Instruction, Elementary School Mathematics, Mathematical Concepts, Mathematics Skills
Kurz, Terri L.; Serrano, Alejandra – Teaching Children Mathematics, 2015
To support students' development of concepts in mathematics, the use of technology is often encouraged (Common Core State Standards Initiative [CCSSI] 2010). Technology can contextualize learning and provide a meaningful setting for mathematical ideas. Most teachers are supportive regarding the use of technology to encourage learning and…
Descriptors: Mathematics Instruction, Mathematical Concepts, Concept Formation, Teaching Methods
Allen, Kasi C. – Mathematics Teacher, 2013
Today, beginning algebra in the high school setting is associated more with remediation than pride. Students enroll by mandate and attend under duress. Class rosters in this "graveyard" course, as it is often referred to, include sophomores and juniors who are attempting the course for the second or third time. Even the ninth graders…
Descriptors: Algebra, Mathematics Instruction, High School Students, Secondary School Mathematics
Marshall, Anne Marie; Superfine, Alison Castro; Canty, Reality S. – Teaching Children Mathematics, 2010
Ms. Beyer's first graders have been working for several weeks on solving problems that encourage the use of such multiple representations as ten frames and number lines. The class is using Math Trailblazers, a National Science Foundation-supported elementary school math curriculum developed to reflect recent reform efforts in mathematics…
Descriptors: Educational Strategies, Mathematics Instruction, Elementary School Mathematics, Grade 1
Hewitt, Dave – Mathematics Teaching Incorporating Micromath, 2008
In this article, the author describes a lesson he observed involving a function machine. This function machine was a box with a slot at the top of one side and a large cut-out hole at the bottom of the opposite side. A card with a number written on it (the input) was pushed into the slot and the teacher put their hand through the hole of the other…
Descriptors: Algebra, Mathematics Instruction, Manipulative Materials, Teaching Methods
Pavlekovic, Margita, Ed.; Kolar-Begovic, Zdenka, Ed.; Kolar-Super, Ruzica, Ed. – Online Submission, 2013
The universities and faculties which educate teachers of mathematics for teaching pupils/students of any age group from pre-school age to higher education carefully monitor and compare valuable results of this research, detect the areas in which the mathematical achievements of pupils should be improved at the national level and propose the ways…
Descriptors: Operations Research, Geometric Concepts, Foreign Countries, Mathematics Instruction
King, Kenneth P. – Science Scope, 2007
The inertial balance is one device that can help students to quantify the quality of inertia--a body's resistance to a change in movement--in more generally understood terms of mass. In this hands-on activity, students use the inertial balance to develop a more quantitative idea of what mass means in an inertial sense. The activity also helps…
Descriptors: Science Instruction, Hands on Science, Teaching Methods, Scientific Concepts
Kovalik, Susan J.; Olsen, Karen D. – Corwin, 2010
This book examines learning science from multiple perspectives--especially a child's. The whimsical character of Mary Froggins guides readers through the steps of igniting students' natural sense of wonder, incorporating brain research, integrating science concepts with other subjects, and applying science to daily life. The authors demonstrate…
Descriptors: Educational Strategies, Curriculum Development, Multiple Intelligences, Science Programs