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Komang Setemen; I. Gede Sudirtha; I. Wayan Widiana – Journal of Technology and Science Education, 2023
The results of online learning were not optimal, as evidenced by the unsatisfactory learning outcomes. These issues influenced students who had a poor understanding of concepts and those who were quick to learn. It was the reason for the study that aims to analyze the effectiveness of study, explore, implement, evaluate (SEIE) model e-learning…
Descriptors: Electronic Learning, Models, Problem Based Learning, Active Learning
Muhammet Mustafa Alpaslan; Bugrahan Yalvac – Journal of Problem Based Learning in Higher Education, 2023
Climate change put most species' survival in danger because it substantially affects the climate in which the species live, the quality of the water they drink, as well as the temperature of the air or water. When climate change increases the temperature of the climate, excessive evaporation occurs in lands, lakes, seas, and oceans. Our purpose in…
Descriptors: Problem Based Learning, Teaching Methods, Mathematics Instruction, Mathematical Models
Kwon, Kyungbin; Ottenbreit-Leftwich, Anne T.; Brush, Thomas A.; Jeon, Minji; Yan, Ge – Educational Technology Research and Development, 2021
This study investigated how a computer science (CS) problem-based curriculum impacted elementary students' CS learning and attitudes. Four sixth-grade teachers and 200 of their students participated in the study. Researchers developed a CS curriculum in collaboration with the teachers, which consisted of two main units: (1) an introduction to…
Descriptors: Problem Based Learning, Elementary School Curriculum, Elementary School Students, Student Attitudes
Uus, Õnne; Mettis, Kadri; Väljataga, Terje – Cogent Education, 2022
Prior findings highlight school students' low motivation to study science, while 21st-century education aims to achieve their key competencies: scientific literacy and autonomous problem-solving to be prepared for smooth adaption to quickly changing circumstances. Real-life learning scenarios can meet these shortfalls to engage the learners by the…
Descriptors: Independent Study, Outdoor Education, Student Motivation, Science Education
Asshoff, Roman; Düsing, Katharina; Winkelmann, Tamara; Hammann, Marcus – Journal of Biological Education, 2020
Students often have misconceptions about terrestrial carbon flows and there is a lack of coherence in students' explanations regarding the different levels of biological organisation at which these processes occur. In this study, problem-based teaching materials on the topic of terrestrial carbon flows were developed and tested with 15 students…
Descriptors: Teaching Methods, Science Instruction, Biology, Problem Based Learning
Tawfik, Andrew A.; Hung, Woei; Giabbanelli, Philippe J. – Interdisciplinary Journal of Problem-based Learning, 2020
To date, there are currently many variations of inquiry-based instruction including problem-based learning (PBL), lecture prior to problem solving, and case-based learning (CBL). While each claim to support problem-solving, they also include different levels of student-centeredness and instructor support. From an educational perspective, further…
Descriptors: Active Learning, Inquiry, Outcomes of Education, Problem Based Learning
Erickson, H. Lynn; Lanning, Lois A.; French, Rachel – Corwin, 2017
Knowing the facts is not enough. If we want students to develop intellectually, creatively problem-solve, and grapple with complexity, the key is in "conceptual understanding." A Concept-Based curriculum recaptures students' innate curiosity about the world and provides the thrilling feeling of engaging one's mind. This updated edition…
Descriptors: Thinking Skills, Skill Development, Concept Formation, Problem Solving
Deaner, Kat; McCreery-Kellert, Heather – Childhood Education, 2018
Design thinking is a methodology that emphasizes reasoning and decision-making as part of the problem-solving process. It is a structured framework for identifying challenges, gathering information, generating potential solutions, refining ideas, and testing solutions. Design thinking offers valuable skills that will serve students well as they…
Descriptors: Design, Thinking Skills, Problem Solving, STEM Education
Cunningham, Ben – Journal of Problem Based Learning in Higher Education, 2018
To promote the development of greater creativity in my students' design work, I created an online tool--called Reflective Inquiry (RI)--that accompanies all of my open-ended assignments and that I require students to submit with each project. The RI is composed of a series of prompts that students must respond to, almost daily, to explain and…
Descriptors: Creativity, Creative Development, Design, Studio Art
Bledsoe, Karen E. – Bioscience Education, 2011
Problem-based learning can enhance reasoning and concept development among undergraduate college students by presenting content within authentic contexts. However, large lecture sections present problems and barriers to implementing PBL. This article discusses approaches used by the author to infuse PBL into large biology lecture sections, and…
Descriptors: Problem Based Learning, Concept Formation, Lecture Method, Undergraduate Students
Leonard, William J.; Gerace, William J.; Dufresne, Robert J. – 1999
This document identifies five types of learning experiences which are relevant to understanding students' understanding of concepts and principles. These include exploring existing concepts, honing and clustering concepts, developing analytical and reasoning skills, developing problem solving skills, and structuring knowledge in memory. Each of…
Descriptors: Concept Formation, Constructivism (Learning), Elementary Secondary Education, Physics
Leonard, William J.; Gerace, William J.; Dufresne, Robert J.; Mestre, Jose P. – 1999
This paper identifies five types of learning experiences which are relevant to understanding students' grasp of concepts and principles. These include exploring existing concepts, honing and clustering concepts, developing analytical and reasoning skills, developing problem solving skills, and structuring knowledge in memory. Each of these…
Descriptors: Concept Formation, Constructivism (Learning), Elementary Secondary Education, Experiential Learning
Peer reviewedSoderberg, Patti; Price, Frank – International Journal of Science Education, 2003
Examines a lesson in which students are engaged in inquiry in evolutionary biology to develop better understanding of concepts and reasoning skills necessary to support knowledge claims about changes in the genetic structure of populations known as microevolution. Explains how a software simulation, EVOLVE, can be used to foster discussions about…
Descriptors: Biology, Computer Simulation, Computer Uses in Education, Concept Formation

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