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Amy Adair – ProQuest LLC, 2024
Developing models, using mathematics, and constructing explanations are three practices essential for science inquiry learning according to education reform efforts, such as the Next Generation Science Standards (NGSS Lead States, 2013). However, students struggle with these intersecting practices, especially when developing and interpreting…
Descriptors: Artificial Intelligence, Evaluation Methods, Scaffolding (Teaching Technique), Mathematics
Amy Adair; Michael Sao Pedro; Janice Gobert; Jessica A. Owens – Grantee Submission, 2023
Developing models and using mathematics are two key practices in internationally recognized science education standards such as the Next Generation Science Standards (NGSS, 2013). In this paper, we used a virtual performance-based formative assessment to capture students' competencies at both "developing" and "evaluating"…
Descriptors: Student Evaluation, Mathematical Models, Competence, Scientific Research
Lydia Bradford – ProQuest LLC, 2024
In randomized control trials (RCT), the recent focus has shifted to how an intervention yields positive results on its intended outcome. This aligns with the recent push of implementation science in healthcare (Bauer et al., 2015) but goes beyond this. RCTs have moved to evaluating the theoretical framing of the intervention as well as differing…
Descriptors: Hierarchical Linear Modeling, Mediation Theory, Randomized Controlled Trials, Research Design
Janice D. Gobert; Michael A. Sao Pedro; Haiying Li; Christine Lott – Grantee Submission, 2023
In this entry, we define Intelligent Tutoring Systems (ITSs) and present a description of their core components. We outline a history of the development of ITSs with a focus on key issues that have driven change and innovation in ITSs from their inception to present day. We also present a brief case study on a specific ITS, Inq-ITS (Inquiry…
Descriptors: Intelligent Tutoring Systems, Student Evaluation, Evaluation Methods, Natural Language Processing
Unlu, Serkan; Kiray, Seyit Ahmet – Online Submission, 2022
This book has been prepared to introduce common technological tools that can be used in science education in the distance education process. Although most of the applications introduced in the book are used in face-to-face education, this book focuses on their use in the distance science education process. In the Introduction part of the book, the…
Descriptors: Computer Software, Videoconferencing, Distance Education, Pandemics
Ma, Irene W. Y.; Zalunardo, Nadia; Pachev, George; Beran, Tanya; Brown, Melanie; Hatala, Rose; McLaughlin, Kevin – Advances in Health Sciences Education, 2012
The use of checklists is recommended for the assessment of competency in central venous catheterization (CVC) insertion. To explore the use of a global rating scale in the assessment of CVC skills, this study seeks to compare its use with two checklists, within the context of a formative examination using simulation. Video-recorded performances of…
Descriptors: Health Education, Science Education, Comparative Analysis, Simulation
Chen, Sufen – Computers & Education, 2010
With an increasing number of studies evincing the effectiveness of simulation-based virtual laboratories (VLs), researchers have discussed replacing traditional laboratories. However, the approach of doing science endorsed by VLs has not been carefully examined. A survey of 233 online VLs revealed that hypothetico-deductive (HD) logic prevails in…
Descriptors: Laboratories, Scientific Literacy, Science Education, Inquiry
Lee, Chwee Beng; Jonassen, David; Teo, Timothy – Interactive Learning Environments, 2011
This study examines the effects of the activity of building systems models for school-based problems on problem solving and on conceptual change in elementary science classes. During a unit on the water cycle in an Asian elementary school, students constructed systems models of the water cycle. We found that representing ill-structured problems as…
Descriptors: Elementary School Science, Water, Problem Solving, Models
Frezzo, Dennis C.; Behrens, John T.; Mislevy, Robert J. – Journal of Science Education and Technology, 2010
Simulation environments make it possible for science and engineering students to learn to interact with complex systems. Putting these capabilities to effective use for learning, and assessing learning, requires more than a simulation environment alone. It requires a conceptual framework for the knowledge, skills, and ways of thinking that are…
Descriptors: Computer Simulation, Computer Networks, Educational Environment, Models
Quellmalz, Edys S.; Davenport, Jodi L.; Timms, Michael J.; DeBoer, George E.; Jordan, Kevin A.; Huang, Chun-Wei; Buckley, Barbara C. – Journal of Educational Psychology, 2013
How can assessments measure complex science learning? Although traditional, multiple-choice items can effectively measure declarative knowledge such as scientific facts or definitions, they are considered less well suited for providing evidence of science inquiry practices such as making observations or designing and conducting investigations.…
Descriptors: Science Education, Educational Assessment, Psychometrics, Science Tests
Feng, Xingdong – ProQuest LLC, 2009
Probe-level microarray data are usually stored in matrices. Take a given probe set (gene), for example, each row of the matrix corresponds to an array, and each column corresponds to a probe. Often, people summarize each array by the gene expression level. Is one number sufficient to summarize a whole probe set for a specific gene in an array?…
Descriptors: Intervals, Computation, Genetics, Data Analysis
Vallance, Michael; Martin, Stewart; Wiz, Charles; van Schaik, Paul – International Journal of Virtual and Personal Learning Environments, 2010
Science education is concerned with the meaningful pursuit of comprehension, knowledge and understanding of scientific concepts and processes. In Vygotskian social constructivist learning, personal interpretation, decision-making and community cooperation fosters long-term understanding and transference of learned concepts. The construction of…
Descriptors: Instructional Design, Science Instruction, Science Education, Computer Simulation
Standing, Roy A.; Tidball, Charles S. – Physiology Teacher, 1977
Computer simulations are becoming more feasible for use in the teaching of physiology. Discussed are the advantages and limitations of using computer assisted instruction. Also given, are criteria for evaluation and the appropriateness of their application. Illustrations explaining the limitations of simulations are included, as well as a…
Descriptors: Biology, Computer Assisted Instruction, Educational Assessment, Evaluation Criteria

Baxter, Gail P. – Journal of Science Education and Technology, 1995
Two methods of assessing student learning of a hands-on instructional unit are compared. One method involves manipulation of concrete materials, and the other method involves manipulation of icons on a computer to solve an electric circuits problem. Sixth-grade students in an inquiry-based science program completed both assignments. (LZ)
Descriptors: Computer Assisted Testing, Computer Simulation, Computer Uses in Education, Computers
Collins, Angelo – 1991
Research of the biology component of the Teacher Assessment Project (BioTAP) was conducted to explore the feasibility of using performance-based assessments to evaluate high school biology teachers. Three modes of performance-based assessment were employed: portfolios, portfolio-based simulations, and simulation exercises. Fifteen high school…
Descriptors: Biology, Competence, Evaluation Methods, Performance Based Assessment
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