scholarly journals Mathematics teacher educators’ addressing the common core standards for mathematical practice in content courses for prospective elementary teachers: A focus on critiquing the reasoning of others

2020 ◽  
Vol 17 (2-3) ◽  
pp. 843-881
Author(s):  
Brooke Max ◽  
Rachael M. Welder
Author(s):  
Jayme Linton ◽  
David Stegall

This chapter seeks to answer the guiding question: How does the TPACK (Technological Pedagogical Content Knowledge) framework influence how technology can support the implementation of the Common Core Standards for Mathematical Practice? The authors provide an overview of the Standards for Mathematical Practice and an application of the TPACK framework to the Common Core State Standards for Mathematics. Classroom scenarios describe how teachers can use the TPACK framework to integrate technology into the Standards for Mathematical Practice from kindergarten to eighth grade. The authors conclude with implications for professional developers, teacher educators, and administrators as they work to develop teachers’ TPACK and prepare teachers for implementing the Common Core State Standards for Mathematics.


2015 ◽  
pp. 92-107
Author(s):  
Jayme Linton ◽  
David Stegall

This chapter seeks to answer the guiding question: How does the TPACK (Technological Pedagogical Content Knowledge) framework influence how technology can support the implementation of the Common Core Standards for Mathematical Practice? The authors provide an overview of the Standards for Mathematical Practice and an application of the TPACK framework to the Common Core State Standards for Mathematics. Classroom scenarios describe how teachers can use the TPACK framework to integrate technology into the Standards for Mathematical Practice from kindergarten to eighth grade. The authors conclude with implications for professional developers, teacher educators, and administrators as they work to develop teachers' TPACK and prepare teachers for implementing the Common Core State Standards for Mathematics.


Author(s):  
Marshall Lassak

This chapter describes how technology can support the implementation of the Common Core Standards for Mathematical Practice. Example problems are provided with details about how dynamic technologies support problem exploration and students' development of the mathematical practices.


2021 ◽  
Vol 7 (3) ◽  
pp. 954-971
Author(s):  
Scott A. Courtney ◽  
Joanne Caniglia

In the U.S., state adopted or developed college- and career-ready mathematics standards, including the Common Core State Standards for Mathematics, not only impact districts, students, and their teachers, but also university teacher preparation programs. In order to attain and sustain Common Core’s vision of developing mathematically competent citizens, teacher preparation programs must support pre-service teachers’ development of practical conceptions of the Standards for Mathematical Practice. In this article, we examine the mathematical practices middle grades pre-service teachers (grades 4-9 licensure) and mathematics teacher educators identified as playing a role in attempts to make sense of and work toward solutions to mathematics problems. In addition, we compare the mathematical practices indicated both within and across pre-service teachers and mathematics teacher educators. Results identify pre-service teachers’ potential difficulties operationalizing six specific mathematical habits of mind. Finally, we describe how such comparisons can guide the design of future teacher education and professional learning by describing a process for identifying problems and tasks with the greatest potential to support pre-service teachers’ development of practical conceptions of mathematics or other content-specific habits of mind.


Author(s):  
Christopher J. Johnston

Pre-service elementary teachers are faced with numerous technology tools which can be incorporated into their mathematics lesson plans. However, these teachers may not be experienced in evaluating technology tools for mathematical learning prior to using them. This chapter presents a reflective model for mathematics teacher educators. In a three-part activity, pre-service elementary teachers identify their criteria for evaluating technology tools, evaluate several technology tools according to their own criteria, and make recommendations for or against those technology tools. As pre-service elementary teachers reflect upon the criteria they feel are essential for evaluating technology tools, they begin to identify the specific affordances and limitations of the technology tools. This chapter describes this three-part activity by placing it within the context of a model for mathematics teacher education.


2018 ◽  
Vol 6 (2) ◽  
pp. 68-74
Author(s):  
Rochelle Gutiérrez

We are in an interesting historical moment in mathematics teacher education. On the one and, there is greater realization within our field of the connections between systems of power and mathematics (O'Neil, 2016). We are starting to acknowledge how mathematics education can be viewed as dehumanizing for both students and teachers as well as what might constitute rehumanizing practices (Gutiérrez, in press). Our professional organizations are calling for teachers to move beyond simplistic notions of equity to understand these power dimensions and challenge the system on behalf of (and in community with) Black,1 Indigenous,2 and Latinx3 students in particular


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