Metaphors And Mathematical Identity: Math Is Like A Tornado In Kansas,
2017
University of Minnesota Duluth
Metaphors And Mathematical Identity: Math Is Like A Tornado In Kansas, Carmen M. Latterell, Janelle L. Wilson
Journal of Humanistic Mathematics
Mathematical identity is an individual’s concept of who he or she is mathematically. In this paper, metaphors for mathematics from elementary education majors are compared to metaphors created by secondary mathematics teaching majors. The analysis demonstrates a basic difference in the mathematical identity of the two groups, with the latter group having more holistic conceptions of mathematics than the first group. Elementary education majors describe mathematics as an ongoing struggle in which the mathematics is active, and they are the victims. The secondary teaching mathematics majors describe mathematics as an ongoing struggle in which they are active.
Stem Stories, February 2017, #1,
2017
University of Northern Iowa
Stem Stories, February 2017, #1, Mir Ashfaquzzaman
STEM Stories
Research Spotlight - MVMS: Magic in Math Classroom
High School Earth And Space Science Should Be Taught By Geoscientists,
2017
University of Nebraska-Lincoln
High School Earth And Space Science Should Be Taught By Geoscientists, Elizabeth Lewis
Department of Teaching, Learning, and Teacher Education: Faculty Publications
A recent survey of U.S. science teachers’ understanding, perspectives and teaching of climate change — an important earth and space science (ESS) standard included in the new Next Generation Science Standards (NGSS) — revealed that teachers spend an average of only one to two hours per year teaching students about climate change. The survey study’s authors concluded that “[science] teachers may not be very knowledgeable about a wide range of evidence and how climate models work.” However, the authors did not distinguish between qualified ESS teachers and other teachers, like biology, physics or chemistry teachers who might be charged with …
A Model Of The Use Of Evolutionary Trees (Muet) To Inform K-14 Biology Education,
2017
Fujian Normal University
A Model Of The Use Of Evolutionary Trees (Muet) To Inform K-14 Biology Education, Yi Kong, Ankita Thawani, Trevor R. Anderson, Nancy Pelaez
PIBERG Publications
Evolutionary trees are powerful tools used in modern biological research, and also commonly used in textbooks and classroom instruction. Studies have shown that K-14 students have difficulties interpreting evolutionary trees. To improve student learning about this topic, it is essential to teach them how to understand and use trees like professional biologists. Unfortunately, few currently used teaching frameworks for evolution instruction are designed for this purpose. In this study we developed the Model of the Use of Evolutionary Trees (MUET), a conceptual model that characterizes how evolutionary trees were used by professional biologists as represented in their research publications. The …
Mini-Symposium: Best Practices For Reu Programs And Unl,
2017
University of Nebraska-Lincoln
Mini-Symposium: Best Practices For Reu Programs And Unl, Mark A. Griep
Discipline-Based Education Research Group Speaker Series
If you want to learn how to run an REU (Research Experience for Undergraduates) program (or to make your REU program run more smoothly), then this is your opportunity to ask questions. The presentation will begin with 5-min talks from five REU program coordinators. These coordinators run a wide range of programs and have experience ranging from 1 year to 12 years. They will mention things such as how many applicants their program receives, how they review those files, an outline of the non-research portion of their summer program, and what sorts of outcomes they collect so they can report …
“Science Is Not My Thing”: Exploring Deaf Non-Science Majors’ Science Identities,
2017
Gallaudet University
“Science Is Not My Thing”: Exploring Deaf Non-Science Majors’ Science Identities, Cara L. Gormally, Amber Marchut
Journal of Science Education for Students with Disabilities
Students who are deaf and hard-of-hearing are underrepresented in science majors, yet we know little about why. Students from other underrepresented groups in science—women and people of color—tend to highly value altruistic or communal career goals, while perceiving science as uncommunal. Research suggests that holding stereotypical conceptions about scientists and perceptions of science as uncommunal may strongly hinder recruitment into science majors. This study sought to explore the science identities of students who are deaf, hard-of-hearing, and hearing signers. The study focused on non-science majors in bilingual (American Sign Language and written English) biology laboratory courses. This study is the …
Providing Annotated Examples Increases Science Learning,
2017
University of Nevada, Las Vegas
Providing Annotated Examples Increases Science Learning, Elana A. Paladino
UNLV Best Teaching Practices Expo
Students consistently score low in the areas of application of scientific results, critical analysis of results, proper citation usage, and poster design
The Healthy Flea Market,
2017
University of Kentucky
The Healthy Flea Market, Robin L. Cooper, Kimberly J. Zeidler-Watters, Diane Johnson, Jennifer Wilson
Biology Faculty Publications
Learn how rural students in Kentucky shared their classroom knowledge by presenting on health topics and new technologies at flea markets, swap meets, and specialty events such as car shows.
The Physics Of Skateboarding: Making Science Relevant, Engaging And Motivational,
2017
The University of Texas at El Paso
The Physics Of Skateboarding: Making Science Relevant, Engaging And Motivational, William Robertson
Selected Works Temporary Series
For me, skateboarding became the vehicle that lead to my success in education. In fact, the skills I learned in skateboarding, such as practice, creativity, discipline, persistence and setting goals, later made me successful in school. For young people, by knowing the terms, they can in effect learn more, when they can see practical applications in their own lives. My inspiration for choosing skateboarding to teach physics came from my work with middle school students who were not interested in the topics of science class until I showed how much of physics, such as forces and motion, were found in …
The Physics Of Skateboarding: Making Science Relevant, Engaging And Motivational,
2017
The University of Texas at El Paso
The Physics Of Skateboarding: Making Science Relevant, Engaging And Motivational, William Robertson
Departmental Papers (TE)
For me, skateboarding became the vehicle that lead to my success in education. In fact, the skills I learned in skateboarding, such as practice, creativity, discipline, persistence and setting goals, later made me successful in school. For young people, by knowing the terms, they can in effect learn more, when they can see practical applications in their own lives. My inspiration for choosing skateboarding to teach physics came from my work with middle school students who were not interested in the topics of science class until I showed how much of physics, such as forces and motion, were found in …
Disciplinary Differences In Out-Of-School High School Science Experiences And Influence On Students’ Engineering Choices,
2017
Purdue University
Disciplinary Differences In Out-Of-School High School Science Experiences And Influence On Students’ Engineering Choices, Allison Godwin, Gerhard Sonnert, Philip M. Sadler
Journal of Pre-College Engineering Education Research (J-PEER)
Participation from a variety of students is important to the long-term growth of the engineering field. Much of the research on engineering recruitment or career choice has focused on engineering as a whole, even though engineering disciplines are varied in student participation and focus. This work examines how students’ out-of-school interests and experiences in high school predict the likelihood of choosing a career in a particular engineering discipline. Out-of-school experiences offer more unstructured ways for students to meaningfully engage with science and engineering outside of the confines of the classroom. These experiences offer opportunities to spark particular science interests not …
Self-Regulated Learning In Engineering Labs,
2017
University of Nebraska-Lincoln
Self-Regulated Learning In Engineering Labs, Presentacion Rivera
Discipline-Based Education Research Group Speaker Series
Students’ task interpretation is a critical first step in the process of self-regulated learning and a key determinant in students setting their learning goals and selecting strategies to approach assigned work. Laboratory activities improve students’ conceptual understanding because of the cognitive demand when students integrate laboratory activities and theory. The purpose of this study is to investigate how students’ interpretation of the task assigned during laboratory work may change during the task process, and how it is related to their conceptual understanding. One-hundred and forty-three students enrolled in the course of Electronics participated in this study. Instruments used to measure …
Mathematics For Human Flourishing,
2017
Harvey Mudd College
Mathematics For Human Flourishing, Francis Su
All HMC Faculty Publications and Research
Why does the practice of mathematics often fall short of our ideals and hopes? How can the deeply human themes that drive us to do mathematics be channeled to build a more beautiful and just world in which all can truly flourish?
The Relationship Between Project-Based Learning And Rigor In Stem-Focused High Schools,
2017
SERVE Center at University of North Carolina at Greensboro
The Relationship Between Project-Based Learning And Rigor In Stem-Focused High Schools, Julie Edmunds, Nina Arshavsky, Elizabeth Glennie, Karen Charles, Olivia Rice
Interdisciplinary Journal of Problem-Based Learning
Project-based learning (PjBL) is an approach often favored in STEM classrooms, yet some studies have shown that teachers struggle to implement it with academic rigor. This paper explores the relationship between PjBL and rigor in the classrooms of ten STEM-oriented high schools. Utilizing three different data sources reflecting three different perceptions—student surveys, teacher logs, and classroom observations—the study examines the extent to which PjBL and rigor co-occur. Across all three measures, the results show that use of PjBL is associated with higher levels of rigor. However, the study also shows that academic rigor can be present in the absence of …
Real Data Is Messy... And Manageable,
2017
Embry-Riddle Aeronautical University
Real Data Is Messy... And Manageable, Beverly Wood, Carl Clark
Publications
Using real data in an introductory statistics course is a delicate balance between reality and manageability. The internet is awash with data that is useful for students to answer questions of interest to them but it is not always formatted as neatly as textbook data. The ASA's recently endorsed GAISE College Report 2016 points to the plausibility of considering multivariable thinking even if only at a rudimentary level. With both messy and multivariable data in mind, we present some activities/projects and sources for data to give introductory students the opportunity to engage with real data.
Parts Of The Whole: Error Estimation For Science Students,
2017
Dartmouth College
Parts Of The Whole: Error Estimation For Science Students, Dorothy Wallace
Numeracy
It is important for science students to understand not only how to estimate error sizes in measurement data, but also to see how these errors contribute to errors in conclusions they may make about the data. Relatively small errors in measurement, errors in assumptions, and roundoff errors in computation may result in large error bounds on computed quantities of interest. In this column, we look closely at a standard method for measuring the volume of cancer tumor xenografts to see how small errors in each of these three factors may contribute to relatively large observed errors in recorded tumor volumes.
Connecting Numbers With Emotion: Review Of Numbers And Nerves: Information, Emotion, And Meaning In A World Of Data By Scott Slovic And Paul Slovic (2015),
2017
Michigan State University
Connecting Numbers With Emotion: Review Of Numbers And Nerves: Information, Emotion, And Meaning In A World Of Data By Scott Slovic And Paul Slovic (2015), Samuel L. Tunstall
Numeracy
Scott Slovic and Paul Slovic (Eds.). Numbers and Nerves: Information, Emotion, and Meaning in a World of Data (Corvallis, OR: Oregon State University Press, 2015). 272 pp. ISBN 978-0-87071-776-5.
It is common to view quantitative literacy as reasoning with respect to numbers. In Numbers and Nerves, the contributors to the volume make clear that we should attend not only to how students consciously reason with numbers, but also how our innate biases influence our actions when faced with numbers. Beginning with the concepts of psychic numbing, and then psuedoinefficacy, the contributors to the volume examine how our behaviors when …
Review Of Qmasc: A Handbook For Directors Of Quantitative And Mathematics Support Centers Edited By Grace Coulombe, Mary B. O’Neill, And Michael Schuckers (2016),
2017
University of Cape Town
Review Of Qmasc: A Handbook For Directors Of Quantitative And Mathematics Support Centers Edited By Grace Coulombe, Mary B. O’Neill, And Michael Schuckers (2016), Vera Frith
Numeracy
Grace Coulombe, Mary B. O’Neill, and Michael Schuckers (Eds). QMaSC: A Handbook for Directors of Quantitative and Mathematics Support Centers. (Tampa FL: USF Libraries – Tampa Library, 2016). http://scholarcommons.usf.edu/qmasc_handbook/
The over thirty different authors of this handbook, all of whom are experienced in supporting learning in mathematics and quantitative disciplines, provide a useful perspective on the practical issues that affect the running of a learning support centre, as well as the problems of working within a complex institution of higher education. The handbook contains information on leadership and management, how to maintain community interactions, managing staffing (including hiring and …
Quantitative Literacy For The Future Flourishing Of Our Students: A Guiding Aim For Mathematics Education,
2017
Michigan State University
Quantitative Literacy For The Future Flourishing Of Our Students: A Guiding Aim For Mathematics Education, Samuel L. Tunstall
Numeracy
In this essay, I examine the extent to which mathematics education and education for quantitative literacy support students’ present and future flourishing, a concept that entails realizing objective goods in a life lived from the inside. This perspective requires disentangling philosophical assumptions about the aims of mathematics education, which—in the context of flourishing—I take to be a hybrid of those that have informed curricular discussions over the past two centuries. In the process, I problematize ("make strange") many of the common reasons given for students learning mathematics, including: learning it for one’s career, for one’s logical reasoning skills, or …
A Twenty-Year Look At “Computational Geology,” An Evolving, In-Discipline Course In Quantitative Literacy At The University Of South Florida,
2017
University of South Florida
A Twenty-Year Look At “Computational Geology,” An Evolving, In-Discipline Course In Quantitative Literacy At The University Of South Florida, Victor J. Ricchezza, H. L. Vacher
Numeracy
Since 1996, the Geology (GLY) program at the USF has offered “Computational Geology” as part of its commitment to prepare undergraduate majors for the quantitative aspects of their field. The course focuses on geological-mathematical problem solving. Over its twenty years, the course has evolved from a GATC (geometry-algebra-trigonometry-calculus) in-discipline capstone to a quantitative literacy (QL) course taught within a natural science major. With the formation of the new School of Geosciences in 2013, the merging departments re-examined their various curricular programs. An online survey of the Geology Alumni Society found that “express quantitative evidence in support of an argument” was …
