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Articles 121 - 150 of 239
Full-Text Articles in Science and Mathematics Education
Do After-School Robotics Programs Expand The Pipeline Into Stem Majors In College?, Cathy Burack, Alan Melchior, Matthew Hoover
Do After-School Robotics Programs Expand The Pipeline Into Stem Majors In College?, Cathy Burack, Alan Melchior, Matthew Hoover
Journal of Pre-College Engineering Education Research (J-PEER)
One result of the growing concerns over the numbers of young people moving into science, technology, engineering and mathematics (STEM)-related careers has been the expansion of formal and informal STEM education programming for pre-college youth, from elementary school through high school. While the number of programs has grown rapidly, there is little research on their long-term impacts on participant education and career trajectories. This paper presents interim findings from a multi-year longitudinal study of three national after-school robotics programs that engage students in designing, building, and competing complex robots with the goal of inspiring long-term interest in STEM. Focusing on …
Across The Atlantic: Service-Learning In Spain And Morocco, Lauren Ward
Across The Atlantic: Service-Learning In Spain And Morocco, Lauren Ward
Purdue Journal of Service-Learning and International Engagement
Purdue provides many activities in service-learning each year, and though they are varied experiences, many of the same lessons can be learned. I had the opportunity to participate in two service-learning study abroad trips while at Purdue- the first to Spain and Morocco, and the second to Haiti. While on these trips, I was involved in projects that seemed very different. In Morocco, my group taught high school students about the history of mathematics during the Islamic Golden Age and how mathematics is utilized in Purdue research. In Haiti, I worked with my teammates to teach water sanitation and storage …
Weather Courtyard: Reflections On Interactive Stem Learning Spaces, Ryan Day
Weather Courtyard: Reflections On Interactive Stem Learning Spaces, Ryan Day
Purdue Journal of Service-Learning and International Engagement
In this article, the author discusses his experiences in service-oriented engineering developing an interactive weather station for DCES students. Day details this process and the lessons learned over the course of the project development, as well as the project’s influence on his aspirations for a career in civil and environmental engineering. To provide substantive takeaways from the project, he concludes by reviewing the benefits of interactive STEM learning spaces in the instructional environment and links them to the impacts of the weather station project on the community.
Argument-Driven Engineering In Middle School Science: An Exploratory Study Of Changes In Engineering Identity Over An Academic Year, Lawrence Chu, Victor Sampson, Todd L. Hutner, Stephanie Rivale, Richard H. Crawford, Christina L. Baze, Hannah S. Brooks
Argument-Driven Engineering In Middle School Science: An Exploratory Study Of Changes In Engineering Identity Over An Academic Year, Lawrence Chu, Victor Sampson, Todd L. Hutner, Stephanie Rivale, Richard H. Crawford, Christina L. Baze, Hannah S. Brooks
Journal of Pre-College Engineering Education Research (J-PEER)
The goal of this study was to examine how the use of a new instructional model is related to changes in middle school students’ engineering identity. The intent of this instructional model, which is called argument-driven engineering (ADE), is to give students opportunities to design and critique solutions to meaningful problems using the core ideas and practices of science and engineering. The model also reflects current recommendations found in the literature for supporting the development or maintenance of engineering identity. This study took place in the context of an eighth-grade science classroom in order to explore how middle school students’ …
Grading For Growth: Using Sliding Scale Rubrics To Motivate Struggling Learners, Dina Mahmood, Hugo Jacobo
Grading For Growth: Using Sliding Scale Rubrics To Motivate Struggling Learners, Dina Mahmood, Hugo Jacobo
Interdisciplinary Journal of Problem-Based Learning
In an effort to adopt more equitable and humanizing grading practices, this teacher inquiry explores how educators attempted to improve students’ views of learning and assessments by utilizing rubrics on a sliding scale. Using the sliding scale rubric approach to grading provided an opportunity for students and educators to rethink how learning is evaluated. The authors found that the logistics of using sliding scale rubrics as a grading tool does need to be refined and further evaluated; however, the belief that a student can receive a grade based on her or his individual starting point did have some positive implications …
The Effect Of Teacher Professional Development On Implementing Engineering In Elementary Schools, Teresa Porter, Meg E. West, Rachel L. Kajfez, Kathy L. Malone, Karen E. Irving
The Effect Of Teacher Professional Development On Implementing Engineering In Elementary Schools, Teresa Porter, Meg E. West, Rachel L. Kajfez, Kathy L. Malone, Karen E. Irving
Journal of Pre-College Engineering Education Research (J-PEER)
Increased attention on the implementation of engineering education into elementary school classrooms aims to start preparing students early for potential engineering careers. In order to efficiently and effectively add engineering concepts to the curriculum, appropriate development and facilitation of engineering design challenges are required. Therefore, professional development programs are necessary to educate teachers about engineering and how to adequately teach it. This paper explores the effects of an engineering professional development program for practicing teachers. The program included training elementary teachers about how to implement units from Engineering is Elementary (EiE) by the Science Museum of Boston into their classes. …
Elementary Teachers’ Positive And Practical Risk-Taking When Teaching Science Through Engineering Design, Jeffrey Radloff, Brenda Capobianco, Annie Dooley
Elementary Teachers’ Positive And Practical Risk-Taking When Teaching Science Through Engineering Design, Jeffrey Radloff, Brenda Capobianco, Annie Dooley
Journal of Pre-College Engineering Education Research (J-PEER)
This study examines the perspectives of three generations of elementary teachers learning to teach science using engineering design and the risks associated with implementing this innovative type of reform-based science instruction. Data were gathered using semi-structured interviews, classroom observations, and teacher reflections. Data analysis entailed open coding and document analysis. The findings indicated that there were four types of perceived risks: practical, pedagogical, conceptual, and personal. First-generation teachers exhibited conceptual risk-taking behavior, while second- and third-generation teachers reported practical, pedagogical, and personal risks. Benefits of risk-taking included increased student engagement in science, improved self-confidence in teaching science, and greater teacher …
A Systematic Review Of Studies On Educational Robotics, Saira Anwar, Nicholas Alexander Bascou, Muhsin Menekse, Asefeh Kardgar
A Systematic Review Of Studies On Educational Robotics, Saira Anwar, Nicholas Alexander Bascou, Muhsin Menekse, Asefeh Kardgar
Journal of Pre-College Engineering Education Research (J-PEER)
There has been a steady increase in the number of studies investigating educational robotics and its impact on academic and social skills of young learners. Educational robots are used both in and out of school environments to enhance K–12 students’ interest, engagement, and academic achievement in various fields of STEM education. Some prior studies show evidence for the general benefits of educational robotics as being effective in providing impactful learning experiences. However, there appears to be a need to determine the specific benefits which have been achieved through robotics implementation in K–12 formal and informal learning settings. In this study, …
The Relationship Between Engineering Identity And Belongingness On Certainty Of Majoring In Engineering For First-Generation College Students, Dina Verdín, Allison Godwin
The Relationship Between Engineering Identity And Belongingness On Certainty Of Majoring In Engineering For First-Generation College Students, Dina Verdín, Allison Godwin
School of Engineering Education Graduate Student Series
This paper seeks to understand the factors that support first-generation college students’ certainty of majoring in engineering. Data used in this study came from thirty-two four-year ABET- accredited institutions across the United States which has a total sample of 790 first-generation college students. We used the frameworks of engineering role identity and sense of belonging to understand the factors that influence first-generation college students’ certainty of majoring in engineering. Certainty is referred to as the degree of confidence or decisiveness an individual has with regard to their chosen occupational plans. First, we examine how first-generation college students’ engineering role identity …
The Nature Of Teaching: An Engaged Approach To K12 Program Delivery, Rebecca Busse
The Nature Of Teaching: An Engaged Approach To K12 Program Delivery, Rebecca Busse
Engagement & Service-Learning Summit
No abstract provided.
No Bones About It: How Digital Fabrication Changes Student Perceptions Of Their Role In The Classroom, Alexandria K. Hansen, Jasmine K. Mcbeath, Danielle B. Harlow
No Bones About It: How Digital Fabrication Changes Student Perceptions Of Their Role In The Classroom, Alexandria K. Hansen, Jasmine K. Mcbeath, Danielle B. Harlow
Journal of Pre-College Engineering Education Research (J-PEER)
This study used cultural historical activity theory to make meaning of a digital fabrication project situated in the complexity of a classroom. Using an ethnographic perspective, we observed 14 students (aged 13–14) in a middle school’s creative design and engineering class inspired by the Maker Movement. Working with the classroom teacher, a professional stuntman tasked students with fabricating a prosthetic bone for use as a movie prop using their understanding of science, technology, engineering, and mathematics. Teacher interviews and student focus groups revealed differences in perceptions between their science class and engineering class. Additionally, affordances and constraints of the 3D …
Disciplinary Learning From An Authentic Engineering Context, Catherine Langman, Judith Zawojewski, Patricia Mcnicholas, Ali Cinar, Eric Brey, Mustafa Bilgic, Hamidreza Mehdizadeh
Disciplinary Learning From An Authentic Engineering Context, Catherine Langman, Judith Zawojewski, Patricia Mcnicholas, Ali Cinar, Eric Brey, Mustafa Bilgic, Hamidreza Mehdizadeh
Journal of Pre-College Engineering Education Research (J-PEER)
This small-scale design study describes disciplinary learning in mathematical modeling and science from an authentic engineeringthemed module. Current research in tissue engineering served as source material for the module, including science content for readings and a mathematical modeling activity in which students work in small teams to design a model in response to a problem from a client. The design of the module was guided by well-established principles of model-eliciting activities (a special class of problem-solving activities deeply studied in mathematics education) and recently published implementation design principles, which emphasize the portability of model-eliciting activities to many classroom settings.
Two …
Examining Science Learning And Attitude By At-Risk Students After They Used A Multimedia-Enriched Problem-Based Learning Environment, Min Liu, Sa Liu, Zilong Pan, Wenting Zou, Chenglu Li
Examining Science Learning And Attitude By At-Risk Students After They Used A Multimedia-Enriched Problem-Based Learning Environment, Min Liu, Sa Liu, Zilong Pan, Wenting Zou, Chenglu Li
Interdisciplinary Journal of Problem-Based Learning
Most of the previous problem-based learning (PBL) studies have been conducted with gifted or regular education students and have shown successes. However, little research on PBL exists for disadvantaged middle school students, especially students who are considered to be at risk of failing academically. In this study, we examined the use of a multimedia-enriched PBL science environment by at-risk middle school students. The results, using a mixed-methods design, showed that these students significantly improved their science knowledge and attitude toward science after they engaged in PBL learning. While there were no differences in the scores between the genders, the gain …
Recognizing Engineering Students’ Funds Of Knowledge: Creating And Validating Survey Measures, Dina Verdín, Jessica M. Smith, Juan Lucena
Recognizing Engineering Students’ Funds Of Knowledge: Creating And Validating Survey Measures, Dina Verdín, Jessica M. Smith, Juan Lucena
School of Engineering Education Graduate Student Series
This research base paper examines students who are the first in their families to attend college. Our research seeks to understand the role students’ funds of knowledge makes in first-generation college students’ undergraduate experience. Funds of knowledge are the set of formal/informal knowledge and skills that students learn through family, friends, and communities outside of academic institutions. This paper reports funds of knowledge themes relevant to first-generation college students in engineering and the process of gathering validity evidence to support the funds of knowledge themes.
Using ethnographic and interview data, six themes emerged: connecting experiences, community networks, tinkering knowledge, perspective …
Eager: Broadening Participation Of First-Generation College Student, Jessica M. Smith, Dina Verdín, Juan C. Lucena
Eager: Broadening Participation Of First-Generation College Student, Jessica M. Smith, Dina Verdín, Juan C. Lucena
School of Engineering Education Graduate Student Series
No abstract provided.
Assessing Mechanistic Reasoning: Supporting Systems Tracing, Paul J. Weinberg
Assessing Mechanistic Reasoning: Supporting Systems Tracing, Paul J. Weinberg
Journal of Pre-College Engineering Education Research (J-PEER)
Reasoning about mechanism is central to disciplined inquiry in science and engineering and should thus be one of the foundations of a science, technology, engineering, and mathematics education. In addition, mechanistic reasoning is one of the core competencies listed in the Next Generation Science Standards (NGSS) Engineering Concepts and Practices (NGSS Lead States, 2013). Mechanistic explanations focus on the processes that underlie cause–effect relationships and consider how the activities of system components affect one another.
While some assessment work has been accomplished in engineering education, to date mechanistic reasoning is an area where limited assessment development has been accomplished for …
The Nature Of Teaching: Connecting K-5 Teachers And Students With Nature, Rebecca Busse
The Nature Of Teaching: Connecting K-5 Teachers And Students With Nature, Rebecca Busse
Engagement & Service-Learning Summit
No abstract provided.
Hands Of The Future, Inc.: Connecting Youth With Nature, Amee Waltman, Rebecca Busse
Hands Of The Future, Inc.: Connecting Youth With Nature, Amee Waltman, Rebecca Busse
Engagement & Service-Learning Summit
No abstract provided.
Implementing Ngss Engineering Disciplinary Core Ideas In Middle School Science Classrooms: Results From The Field, Jessica Gale, Jayma Koval, Mike Ryan, Marion Usselman, Stefanie Wind
Implementing Ngss Engineering Disciplinary Core Ideas In Middle School Science Classrooms: Results From The Field, Jessica Gale, Jayma Koval, Mike Ryan, Marion Usselman, Stefanie Wind
Journal of Pre-College Engineering Education Research (J-PEER)
With the inclusion of engineering disciplinary core ideas (DCIs), the Next Generation Science Standards (NGSS) position engineering as a new priority in K–12 science classrooms. This paper reports findings from the implementation of SLIDER, a problem-based learning 8th grade physical science curriculum that integrates engineering and physical science core ideas. As a culminating engineering design challenge, the SLIDER curriculum asks students to apply their understanding of energy, motion, and forces to design an automatic braking system for a robotic truck. The paper describes the curriculum and synthesizes findings from an array of data sources including student design interviews, written design …
Exploring Authenticity Through An Engineering-Based Context In A Project-Based Learning Mathematics Activity, Bradley Bowen, Bryanne Peterson
Exploring Authenticity Through An Engineering-Based Context In A Project-Based Learning Mathematics Activity, Bradley Bowen, Bryanne Peterson
Journal of Pre-College Engineering Education Research (J-PEER)
As education works to reconnect student learning to something more than standardized testing, project-based learning (PBL) has become a popular way to increase student engagement while providing more authentic applications of student knowledge. While research regarding PBL is bountiful, little has been done to connect this body of research with student perceptions regarding its classroom application, especially concerning authenticity and student engagement. This research focuses on the topic of ‘‘task authenticity’’ as a means to improve student outcomes. Two groups of seventh-grade students were presented the concept of slope and y-intercept in the context of engineering-based activities. The research …
Stem Roles: How Students’ Ontological Perspectives Facilitate Stem Identities, Dina Verdín, Allison Godwin, Monique Ross
Stem Roles: How Students’ Ontological Perspectives Facilitate Stem Identities, Dina Verdín, Allison Godwin, Monique Ross
Journal of Pre-College Engineering Education Research (J-PEER)
Educational researchers have explored the importance of performance, recognition, and interest in establishing and maintaining a STEM identity. Research has also demonstrated that the ways students describe themselves and how they participate in STEM communities can provide insight into their role identity salience; however, there has been little work to explore the ontological beliefs of students about STEM people and how this influences their ability to see themselves as possessing a STEM identity. This research explores the ontological beliefs of high school students, with specific attention to the ways in which they describe what constitutes a math person, science person, …
Why Teach With Pbl? Motivational Factors Underlying Middle And High School Teachers’ Use Of Problem-Based Learning, Huei-Chen Lee, Margaret R. Blanchard
Why Teach With Pbl? Motivational Factors Underlying Middle And High School Teachers’ Use Of Problem-Based Learning, Huei-Chen Lee, Margaret R. Blanchard
Interdisciplinary Journal of Problem-Based Learning
This quantitative study examined factors underlying middle and high school teachers’ choices about whether to use problem-based learning (PBL). Survey items measured respondents’ perceived competence, autonomy, and relatedness, and the value and costs they placed on implementing PBL. Teachers who have taught with PBL (n = 126) had significantly more formal PBL professional development, higher levels of perceived competence and value for this pedagogy, perceived more support from peers, and perceived lower costs than did the non–PBL use teachers (n = 30). Findings highlight the importance of formal PBL professional development in increasing teachers’ intention to implement PBL …
Taking Professional Development From 2d To 3d: Design-Based Learning, 2d Modeling, And 3d Fabrication For Authentic Standards-Aligned Lesson Plans, Darran R. Cairns, Reagan Curtis, Konstantinos A. Sierros, Johnna J. Bolyard
Taking Professional Development From 2d To 3d: Design-Based Learning, 2d Modeling, And 3d Fabrication For Authentic Standards-Aligned Lesson Plans, Darran R. Cairns, Reagan Curtis, Konstantinos A. Sierros, Johnna J. Bolyard
Interdisciplinary Journal of Problem-Based Learning
There is currently significant interest in 3D fabrication in middle school classrooms. At its best 3D printing can be utilized in authentic design projects that integrate math, science, and technology, which facilitate deep learning by students. In essence, students are able to tinker in a virtual world using 3D design software and then tinker in the real world using printed parts. We describe a professional development activity we designed to enable middle school teachers who had taken part in a three-year Math Science Partnership program to authentically integrate 3D printing into design-based lessons. We include some examples of successful design-based …
Exploring Problem-Based Learning For Middle School Design And Engineering Education In Digital Fabrication Laboratories, Monica M. Chan, Paulo Blikstein
Exploring Problem-Based Learning For Middle School Design And Engineering Education In Digital Fabrication Laboratories, Monica M. Chan, Paulo Blikstein
Interdisciplinary Journal of Problem-Based Learning
This is a research study of design and engineering classes that use a problem-based learning (PBL) approach in digital fabrication makerspaces in two middle schools. In these studies, teachers employ a PBL approach and provide an ill-structured problem scenario to facilitate design and engineering lessons in the FabLab (fabrication laboratory). Students in each school tackled different challenges that they defined for themselves in groups. This study provides examples of student-student interactions separated into key themes—defining specifications with teammates, personal exploration, and communication about discoveries. This study also provides examples of teacher-student interactions, and themes include demonstrations with tangible objects, discussing …
Zooming Into A Tinkering Project: The Progression Of Learning Through Transitional Objects, Priyanka Parekh, Elisabeth R. Gee
Zooming Into A Tinkering Project: The Progression Of Learning Through Transitional Objects, Priyanka Parekh, Elisabeth R. Gee
Interdisciplinary Journal of Problem-Based Learning
The Maker Movement has been received by the field of K–12 education with great enthusiasm as a way of teaching STEM content to children. We call attention to and identify learning opportunities in children’s projects created in a playful, informal environment with easily available materials. In keeping with research in the field of maker education and learning sciences, we describe tinkering as a constructionist learning activity in which meaning making is captured through transitional objects (Bamberger, 1995). First, we examine one specific tinkering project and identify transitional objects within the project. Next, we discuss the process of meaning making as …
They Choose To Attend Academic Summer Camps? A Mixed Methods Study Exploring The Impact Of A Nasa Academic Summer Pre-Engineering Camp On Middle School Students In A Latino Community, Araceli Martinez Ortiz, Laura Rodriguez Amaya, Hiroko Kawaguchi Warshauer, Sara Garcia Torres, Erin Scanlon, Michelle Pruett
They Choose To Attend Academic Summer Camps? A Mixed Methods Study Exploring The Impact Of A Nasa Academic Summer Pre-Engineering Camp On Middle School Students In A Latino Community, Araceli Martinez Ortiz, Laura Rodriguez Amaya, Hiroko Kawaguchi Warshauer, Sara Garcia Torres, Erin Scanlon, Michelle Pruett
Journal of Pre-College Engineering Education Research (J-PEER)
Early exposure to engineering and mathematics career opportunities has been indicated to influence students’ decisions regarding their academic majors and career goals. This study utilized mixed methods to analyze how changes in middle school students’ affective characteristics might be linked to their future career decision-making, following participation in an integrated science, technology, engineering, and mathematics summer camp. As part of the summer camp, rising sixth- through eighth-grade students attended a weeklong learning experience based on a specific engineering context. Each grade level cohort participated with their same grade peers in a 36-hour, 6-day event focused on sparking their interest in …
Teaching Engineering Design Through Wearable Device Design Competition (Evaluation), Elena N. Veety, Jesse S. Sur, Hannah K. Elliott, James E. Lamberth Iii
Teaching Engineering Design Through Wearable Device Design Competition (Evaluation), Elena N. Veety, Jesse S. Sur, Hannah K. Elliott, James E. Lamberth Iii
Journal of Pre-College Engineering Education Research (J-PEER)
The Wearable Device Challenge was developed at the Nanosystems Engineering Research Center for Advanced Self-Powered Systems of Integrated Sensors and Technologies (ASSIST). The Challenge is rooted in the research and innovation ecosystem of the Center and its vision: to have a transformational impact on the way doctors and patients manage wellness through wearable, self-powered health and environmental monitoring systems. At its core, the program teaches middle and high school teachers and students how to apply the engineering design process to solve real-world problems through a project-based approach. The program impacts several hundred students in North Carolina annually through real-world, relevant, …
Tinkering With Logo In An Elementary Mathematics Methods Course, Keri Duncan Valentine
Tinkering With Logo In An Elementary Mathematics Methods Course, Keri Duncan Valentine
Interdisciplinary Journal of Problem-Based Learning
With an increased push to integrate coding and computational literacy in K–12 learning environments, teacher educators will need to consider ways they might support preservice teachers (PSTs). This paper details a tinkering approach used to engage PSTs in thinking computationally as they worked with geometric concepts they will be expected to teach in K–5. Experiences programming in Logo to construct authentic artifacts in the form of two-dimensional geometric graphics not only supported PSTs’ understanding of core geometric and spatial concepts, but also helped them to make connections between mathematics and computational literacy. Artifacts and discourse are discussed as they relate …
Teaching The Next Generation Of Researchers: An Inquiry Into Aviation Research Education, David C. Ison
Teaching The Next Generation Of Researchers: An Inquiry Into Aviation Research Education, David C. Ison
Journal of Aviation Technology and Engineering
Research in aviation fields has become increasingly important to institutions and their faculties. Expectations to conduct such research have escalated, with tenure and employment decisions often hanging on evidence of research skill and advanced educational attainment. Considering the importance of research to aviation higher education, this study investigated how research skills are conveyed to undergraduate and graduate aviation students. Further, the subjects and methods of instruction were evaluated. This inquiry was guided by content analysis. To bolster the findings of this study, a series of interviews with program directors and faculty teaching research courses were conducted to explore faculty perceptions …
Problem-Based Learning In The Life Science Classroom, K–12, Theresa Cullen, Cat D. Jackson
Problem-Based Learning In The Life Science Classroom, K–12, Theresa Cullen, Cat D. Jackson
Interdisciplinary Journal of Problem-Based Learning
No abstract provided.