NotesFAQContact Us
Collection
Advanced
Search Tips
Publication Date
In 20250
Since 20240
Since 2021 (last 5 years)0
Since 2016 (last 10 years)2
Since 2006 (last 20 years)5
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
Showing all 8 results Save | Export
Glowa, Liz; Goodell, Jim – International Association for K-12 Online Learning, 2016
The realities of the 21st-century learner require that schools and educators fundamentally change their practice. "Educators must produce college- and career-ready graduates that reflect the future these students will face. And, they must facilitate learning through means that align with the defining attributes of this generation of…
Descriptors: Student Centered Learning, Transformative Learning, Electronic Learning, Learning Processes
Peer reviewed Peer reviewed
Direct linkDirect link
Marshman, Margaret – Australian Mathematics Teacher, 2014
Within the "Australian Curriculum: Mathematics" the Understanding proficiency strand states, "Students build understanding when they connect related ideas, when they represent concepts in different ways, when they identify commonalities and differences between aspects of content, when they describe their thinking mathematically and…
Descriptors: Foreign Countries, Concept Mapping, Secondary School Mathematics, Secondary School Students
Peer reviewed Peer reviewed
PDF on ERIC Download full text
McConell, David A.; Chapman, LeeAnna; Czaijka, C. Douglas; Jones, Jason P.; Ryker, Katherine D.; Wiggen, Jennifer – Journal of Geoscience Education, 2017
The adoption of active learning instructional practices in college science, technology, engineering, and mathematics (STEM) courses has been shown to result in improvements in student learning, contribute to increased retention rates, and reduce the achievement gap among different student populations. Descriptions of active learning strategies…
Descriptors: Instructional Effectiveness, Active Learning, Learning Strategies, STEM Education
Peer reviewed Peer reviewed
Direct linkDirect link
Montagna, Erik; Guerreiro, Juliano R.; Torres, Bayardo B. – Biochemistry and Molecular Biology Education, 2010
The understanding of complex physiological processes requires information from many different areas of knowledge. To meet this interdisciplinary scenario, the ability of integrating and articulating information is demanded. The difficulty of such approach arises because, more often than not, information is fragmented through under graduation…
Descriptors: Foreign Countries, Biochemistry, Physiology, Biomedicine
Peer reviewed Peer reviewed
Okebukola, Peter Akinsola – Educational Psychology: An International Journal of Experimental Educational Psychology, 1992
Describes a study of concept mapping as a means of learning problem-solving skills. Concludes that the concept mapping subjects were significantly more successful at solving biological test questions than were the controls. Reports no significant differences between cooperative and individual mapping and mixed results for gender. (DK)
Descriptors: Concept Mapping, Cooperative Learning, Educational Research, Higher Education
Peer reviewed Peer reviewed
Cobern, William W.; And Others – Science Teacher, 1995
Presents a lesson, Scientific Literacy Is a Lifetime Skill, that provides thought and discussion on science as an aspect of everyday life. Uses concept mapping to help students explore from their perspective the relationship between formal science education and real-world situations. (JRH)
Descriptors: Concept Mapping, Cooperative Learning, Lesson Plans, Science Activities
Kalman, Calvin S. – Jossey-Bass, An Imprint of Wiley, 2006
This book offers broad, practical strategies for teaching science and engineering courses and describes how faculty can provide a learning environment that helps students comprehend the nature of science, understand science concepts, and solve problems in science courses. The student-centered approach focuses on two main themes: reflective writing…
Descriptors: Teaching Methods, Scientific Principles, Misconceptions, Science Laboratories
Peters, Thomas T.; Wissmann, Janet L. – 1991
This curriculum guide is designed to help teachers in the middle grades facilitate student understanding of the social and environmental implications and limitations of technological development. The nine activities offer students opportunities to explore social issues arising from the science and technology of the production and management of…
Descriptors: Class Activities, Concept Mapping, Consumer Education, Cooperative Learning