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Sally F. Shady – Biomedical Engineering Education, 2025
Challenge: As biomedical engineers revolutionize medicine, biomedical engineering programs must adapt to the diverse learning styles of the current student population. Students are learning in new ways and instructional strategies need to be adopted. Novel Initiative: Understanding generational attributes is crucial for developing effective…
Descriptors: Undergraduate Students, Biomechanics, Science Instruction, Problem Based Learning
Kim, Nam Ju; Vicentini, Cristiane Rocha; Belland, Brian R. – International Journal of Science and Mathematics Education, 2022
Success in problem-based learning requires both strong information literacy to search for, evaluate, and use information effectively, and argumentation skills to generate coherent arguments. This study investigated the positive and negative effects of computer-based scaffolding to support high-school credit recovery students' information literacy…
Descriptors: Scaffolding (Teaching Technique), Information Literacy, Persuasive Discourse, Field Trips
Nanda Putri Pertiwi; Sulistyo Saputro; Sri Yamtinah; Azlan Kamari – Journal of Baltic Science Education, 2024
One of the skills needed in the 21st century is critical thinking skills that need to be developed for secondary school students. Currently, upper-secondary students' critical thinking skills are still low. To overcome the problem, websitebased E-module learning media was developed using a STEM approach with a Problem-Based Contextual Learning…
Descriptors: Foreign Countries, Secondary School Students, Secondary School Teachers, Secondary School Science
Belland, Brian R.; Weiss, D. Mark; Kim, Nam Ju; Piland, Jacob; Gu, Jiangyue – International Journal of Science and Mathematics Education, 2019
In this study, we investigated how high school credit recovery students worked in small groups and used computer-based scaffolds to conduct scientific inquiry in a problem-based learning unit centered on water quality. We examined how students searched for and evaluated information from different sources, and used evidence to support their claims.…
Descriptors: Science Instruction, High School Students, Scientific Research, Scaffolding (Teaching Technique)
Belland, Brian R.; Gu, Jiangyue; Kim, Nam Ju; Turner, David J. – Educational Technology Research and Development, 2016
Science educators increasingly call for students to address authentic scientific problems in science class. One form of authentic science problem--socioscientific issue--requires that students engage in complex reasoning by considering both scientific and social implications of problems. Computer-based scaffolding can support this process by…
Descriptors: Middle School Students, Ethnography, Grade 7, Cooperative Learning
Schielack, Jane F., Ed.; Knight, Stephanie L., Ed. – Teachers College Press, 2012
How can we use new technology to support and educate the science leaders of tomorrow? This unique book describes the design, development, and implementation of an effective science leadership program that promotes collaboration among scientists and science educators, provides authentic research experiences for educators, and facilitates adaptation…
Descriptors: Leadership, Science Education, Information Technology, Graduate Students
Lim, Cher Ping; Tay, Lee Yong; Hedberg, John – Journal of Educational Computing Research, 2011
Two grade 5 classes (11-12-year-olds) were introduced through an inquiry-based pedagogy to scientific ideas and concepts within a 3D game-like multi-user virtual environment (MUVE). This article explores how a particular set of strategies and conditions might encourage and sustain the use of the MUVE, Quest Atlantis (QA), as a problem-based…
Descriptors: Foreign Countries, Problem Based Learning, Educational Innovation, Grade 5
Laverty, David M.; Milliken, Jonny; Milford, Matthew; Cregan, Michael – European Journal of Engineering Education, 2012
This paper presents a new laboratory-based module for embedded systems teaching, which addresses the current lack of consideration for the link between hardware development, software implementation, course content and student evaluation in a laboratory environment. The course introduces second year undergraduate students to the interface between…
Descriptors: Foreign Countries, Engineering Education, Student Evaluation, Computer Assisted Instruction
Rossiter, Diane; Petrulis, Robert; Biggs, Catherine A. – Chemical Engineering Education, 2010
This paper describes the development of a first-year chemical engineering course over 5 years through action research based on evidence from student feedback. As a result of this research, the course has evolved into a blended approach which incorporates problem based learning (PBL) and online learning tools. Through the use of PBL, the students…
Descriptors: Electronic Learning, Feedback (Response), Action Research, Problem Based Learning
Williams, Dylan P.; Woodward, Jonathan R.; Symons, Sarah L.; Davies, David L. – Chemistry Education Research and Practice, 2010
Year 1 of the chemistry degree at the University of Leicester has been significantly changed by the integration of a problem based learning (PBL) component into the introductory inorganic/physical chemistry module, "Chemical Principles". Small groups of 5-6 students were given a series of problems with real world scenarios and were then…
Descriptors: Feedback (Response), Computer Assisted Instruction, Problem Based Learning, Chemistry
Horton, Lucas; Liu, Min; Olmanson, Justin; Toprac, Paul – Online Submission, 2011
In this paper we explore students' engagement in a new media enhanced problem-based learning (PBL) environment and investigate the characteristics of these environments that facilitate learning. We investigated both student experiences using a new media enhanced PBL environment and the specific elements students found most supportive of their…
Descriptors: Learner Engagement, Problem Based Learning, Grade 6, Information Processing
Pepper, Coral – Issues in Educational Research, 2009
Problem based learning (PBL) is a recognised teaching and learning strategy used to engage students in deep rather than surface learning. It is also viewed as a successful strategy to align university courses with the real life professional work students are expected to undertake on graduation (Biggs, 2003). Problem based learning is practised…
Descriptors: Feedback (Response), College Students, Relevance (Education), Science Laboratories
Kaberman, Zvia; Dori, Yehudit Judy – Instructional Science: An International Journal of the Learning Sciences, 2009
Posing questions about an article might improve one's knowledge--a cognitive function, or monitor one's thought processes--a metacognitive function. This study focuses on guided question posing while using a metacognitive strategy by 12th grade honors chemistry students. We investigated the ways by which the metacognitive strategy affected…
Descriptors: Experimental Groups, Difficulty Level, Chemistry, Laboratories
Ketelhut, Diane Jass; Nelson, Brian C.; Clarke, Jody; Dede, Chris – British Journal of Educational Technology, 2010
This study investigated novel pedagogies for helping teachers infuse inquiry into a standards-based science curriculum. Using a multi-user virtual environment (MUVE) as a pedagogical vehicle, teams of middle-school students collaboratively solved problems around disease in a virtual town called River City. The students interacted with "avatars" of…
Descriptors: Urban Areas, Virtual Classrooms, Science Education, Science Curriculum
Coleman, Iain P. L.; Watts, Adam S. – Bioscience Education e-Journal, 2007
Pharmacology is taught on a dedicated module for nurse prescribers who have a limited physical science background. To facilitate learning a problem-based approach was adopted. However, to enhance students' knowledge of drug action a PharmaCALogy software package from the British Pharmacological Society was used. Students were alternately given a…
Descriptors: Nurses, Prior Learning, Pharmacology, Computer Software
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