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Seyedahmad Rahimi; Valerie J. Shute; Curt Fulwider; Katie Bainbridge; Renata Kuba; Xiaotong Yang; Ginny Smith; Ryan S. Baker; Sidney K. D'Mello – Grantee Submission, 2022
Learning does not automatically occur by playing educational games; instead, learning opportunities should be carefully designed in such games. For instance, research has indicated the importance of embedding learning supports within educational games to promote learning and other outcomes (e.g., enjoyment). However, more research is needed to…
Descriptors: Educational Games, Time Factors (Learning), Instructional Design, Problem Solving
Jenny Yun-Chen Chan; Erin R. Ottmar; Ji-Eun Lee – Grantee Submission, 2022
We examined the influences of pre-solving pause time, algebraic knowledge, mathematics self-efficacy, and mathematics anxiety on middle-schoolers' strategy efficiency in an algebra learning game. We measured strategy efficiency using (a) the number of steps taken to complete a problem; (b) the proportion of problems completed on the initial…
Descriptors: Problem Solving, Algebra, Self Efficacy, Mathematics Anxiety
Bloom, Howard; Bell, Andrew; Reiman, Kayla – Grantee Submission, 2020
This article assesses the likely generalizability of educational treatment-effect estimates from regression discontinuity designs (RDDs) when treatment assignment is based on academic pretest scores. Our assessment uses data on outcome and pretest measures from six educational experiments, ranging from preschool through high school, to estimate…
Descriptors: Data Use, Randomized Controlled Trials, Research Design, Regression (Statistics)
Chan, Jenny Yun-Chen; Lee, Ji-Eun; Mason, Craig A.; Sawrey, Katharine; Ottmar, Erin – Grantee Submission, 2021
Understanding equivalence is fundamental to STEM disciplines, yet misunderstandings and misconceptions inhibit students from fully appreciating or leveraging the concept. Using the game-based algebraic notation system, From Here to There! (FH2T), students explore ideas of equivalence by dynamically transforming expressions or equations among…
Descriptors: Middle School Students, Mathematics Instruction, Prior Learning, Teaching Methods
McCarthy, Kathryn S.; Guerrero, Tricia A.; Kent, Kevin M.; Allen, Laura K.; McNamara, Danielle S.; Chao, Szu-Fu; Steinberg, Jonathan; O'Reilly, Tenaha; Sabatini, John – Grantee Submission, 2018
Background knowledge is a strong predictor of reading comprehension; yet little is known about how different types of background knowledge affect comprehension. The study investigated the impacts of both domain and topic-specific background knowledge on students' ability to comprehend and learn from science texts. High school students (n = 3650)…
Descriptors: Knowledge Level, Reading Comprehension, High School Students, Pretests Posttests
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McCarthy, Kathryn S.; Likens, Aaron D.; Kopp, Kristopher K.; Perret, Cecile A.; Watanabe, Micah; McNamara, Danielle S. – Grantee Submission, 2018
The current study explored relations between non-cognitive traits (Grit, Learning Orientation, Performance Orientation), reading skill, and performance across three experiments conducted in the context of two intelligent tutoring systems, iSTART and Writing Pal. Results showed that learning outcomes (comprehension score, holistic essay score) were…
Descriptors: Persistence, Individual Characteristics, Reading Skills, Performance
Sumi, W. Carl; Woodbridge, Michelle W.; Wei, Xin; Thornton, S. Patrick; Roundfield, Katrina D. – Grantee Submission, 2021
This study examines differential effects of the Cognitive Behavioral Intervention for Trauma in Schools (CBITS) program on behavioral and academic outcomes of middle school students. Researchers administered screenings to grade 6 students to assess traumatic stress and then randomized those with elevated levels to the CBITS treatment (n = 150; 47%…
Descriptors: Trauma, Group Therapy, Middle School Students, Cognitive Restructuring
Liu, Ran; Stamper, John; Davenport, Jodi – Grantee Submission, 2018
Temporal analyses are critical to understanding learning processes, yet understudied in education research. Data from different sources are often collected at different grain sizes, which are difficult to integrate. Making sense of data at many levels of analysis, including the most detailed levels, is highly time-consuming. In this paper, we…
Descriptors: Intelligent Tutoring Systems, Learning, Data Analysis, Student Development
Davenport, Jodi L.; Rafferty, Anna N.; Yaron, David J. – Grantee Submission, 2018
How can we help students develop an understanding of chemistry that integrates conceptual knowledge with the experimental and computational procedures needed to apply chemistry in authentic contexts? The current work describes ChemVLab +, a set of online chemistry activities that were developed using promising design principles from chemistry…
Descriptors: Science Instruction, Chemistry, Science Laboratories, Educational Technology
Levitan, Joseph; Schussler, Deborah L.; Mahfouz, Julia; Frank, Jennifer L.; Kohler, Kimberly M.; Broderick, Patricia C.; Mitra, Joy; Oh, Yoonkyung; Berrena, Elaine; Greenberg, Mark T. – Grantee Submission, 2018
Between 2014 and 2017, an interdisciplinary group of researchers examined whether a high school health class that incorporated mindfulness techniques lowered students' stress and improved their wellbeing. We received a grant from the Institute of Educational Sciences from the United States Department of Education to (1) train high school health…
Descriptors: Metacognition, Health Education, Well Being, Stress Variables
Barbieri, Christina A.; Rodrigues, Jessica; Dyson, Nancy; Jordan, Nancy C. – Grantee Submission, 2019
The effectiveness of an experimental middle school fraction intervention was evaluated. The intervention was centered on the number line and incorporated key principles from the science of learning. Sixth graders (N = 51) who struggled with fraction concepts were randomly assigned at the student level to the experimental intervention (n = 28) or…
Descriptors: Fractions, Mathematics Instruction, Intervention, Mathematical Concepts
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McCarthy, Kathryn S.; Jacovina, Matthew E.; Snow, Erica L.; Guerrero, Tricia A.; McNamara, Danielle S. – Grantee Submission, 2017
iSTART is an intelligent tutoring system designed to provide self-explanation instruction and practice to improve students' comprehension of complex, challenging text. This study examined the effects of extended game-based practice within the system as well as the effects of two metacognitive supports implemented within this practice. High school…
Descriptors: Reading Comprehension, Reading Instruction, Intelligent Tutoring Systems, Reading Strategies
O'Connor, Rollanda E.; Beach, Kristen D.; Sanchez, Victoria; Bocian, Kathleen M.; Roberts, Sarana; Chan, Olivia – Grantee Submission, 2017
Helping struggling readers to learn history content in middle school can be difficult due to heavy reading demands. In this study, researchers taught poor readers with and without disabilities in 8th grade to generate main idea statements, create compare and contrast paragraphs, and identify cause and effect relationships, along with relevant…
Descriptors: Reading Difficulties, Middle School Students, Grade 8, Disabilities
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Clinton, Virginia; Cooper, Jennifer L.; Michaelis, Joseph; Alibali, Martha W.; Nathan, Mitchell J. – Grantee Submission, 2017
Mathematics curricula are frequently rich with visuals, but these visuals are often not designed for optimal use of students' limited cognitive resources. The authors of this study revised the visuals in a mathematics lesson based on instructional design principles. The purpose of this study is to examine the effects of these revised visuals on…
Descriptors: Mathematics Instruction, Visual Stimuli, Eye Movements, Cognitive Processes
Booth, Julie L.; Oyer, Melissa H.; Pare-Blagoev, Juliana; Elliot, Andrew J.; Barbieri, Christina; Augustine, Adam; Koedinger, Kenneth R. – Grantee Submission, 2015
Math and science textbook chapters invariably supply students with sets of problems to solve, but this widely used approach is not optimal for learning; instead, more effective learning can be achieved when many problems to solve are replaced with correct and incorrect worked examples for students to study and explain. In the present study, the…
Descriptors: Algebra, Mathematics Instruction, Problem Solving, Prior Learning
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