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Nachtigall, Valentina; Rummel, Nikol – Instructional Science: An International Journal of the Learning Sciences, 2021
Out-of-school labs (OSLs) aim to foster students' interest in and knowledge about scientific ways of thinking and working by engaging them in authentic activities that emulate processes of scientific inquiry. However, research has not yet focused on investigating whether students perceive those activities as authentic and whether students'…
Descriptors: After School Programs, Science Laboratories, Science Interests, Science Process Skills
Drysdale, Timothy D.; Kelley, Simon; Scott, Anne-Marie; Dishon, Victoria; Weightman, Andrew; Lewis, Richard James; Watts, Stephen – Higher Education Pedagogies, 2020
Traditional practical work for higher education in STEM subjects is under pressure from rising student numbers and a desired increase in active learning. Investing in more buildings and staff is financially challenging, while stretching existing resources affects outcomes, health, and participation. A more pragmatic approach is to embrace a less…
Descriptors: Nontraditional Education, STEM Education, Higher Education, Foreign Countries
Koenig, Kathleen; Wood, Krista E.; Bortner, Larry J.; Bao, Lei – Journal of College Science Teaching, 2019
This article showcases how a physics lab course was successfully redesigned to promote important reasoning abilities not explicitly addressed in the typical college setting. Student development of such abilities is essential for sound decision making, particularly when living in an information age. Essential features of our guiding curricular…
Descriptors: Science Laboratories, Physics, Science Instruction, Logical Thinking
Baldwin, Nicole; Orgill, MaryKay – Chemistry Education Research and Practice, 2019
Practicing chemists use models, diagrams, symbols, and figures to represent phenomena which cannot be detected by the human senses. Although research suggests that these external representations (ERs) can also be used to address the challenges that students have in learning chemistry, it is not clear how instructors' use of ERs aligns with their…
Descriptors: Teaching Assistants, College Science, Chemistry, Science Laboratories
Michalek, Anne M. P.; Phalen, Lisa; Bobzien, Jonna L.; Chen, Chung-Hao; Urbano, Maria; Hartmann, Kathrin; Okwara, Leonore; Gorrepati, Purnima; Deutsch, Stephen; Williams, Takeshia – Preventing School Failure, 2020
Social communication deficits associated with Autism Spectrum Disorder are often exacerbated during adolescence. Group based approaches are effective intervention techniques for facilitating improved social communication skills in people with ASD; however, science, technology, engineering, and math activities, while highly preferred areas of…
Descriptors: STEM Education, Adolescents, Autism, Pervasive Developmental Disorders
Schmidt, Jennifer A.; Rosenberg, Joshua M.; Beymer, Patrick N. – Journal of Research in Science Teaching, 2018
Science education reform efforts in the Unites States call for a dramatic shift in the way students are expected to engage with scientific concepts, core ideas, and practices in the classroom. This new vision of science learning demands a more complex conceptual understanding of student engagement and research models that capture both the…
Descriptors: Science Education, Learner Engagement, Learning Activities, Multivariate Analysis
Ryker, Katherine D.; McConnell, David A. – Journal of Geoscience Education, 2017
Many agencies, organizations, and researchers have called for the incorporation of inquiry-based learning in college classrooms. Providing inquiry-based activities in laboratory courses is one way to promote reformed, student-centered teaching in introductory geoscience courses. However, the literature on inquiry has relatively few geoscience…
Descriptors: Geology, Laboratory Manuals, Inquiry, Active Learning
Ghani, I. B. A.; Ibrahim, N. H.; Yahaya, N. A.; Surif, J. – Chemistry Education Research and Practice, 2017
Educational transformation in the 21st century demands in-depth knowledge and understanding in order to promote the development of higher-order thinking skills (HOTS). However, the most commonly reported problem with respect to developing a knowledge of chemistry is poor mastery of basic concepts. Chemistry laboratory educational activities are…
Descriptors: Thinking Skills, Skill Development, Science Laboratories, Laboratory Training
Hallyburton, Chad L.; Lunsford, Eddie – Bioscene: Journal of College Biology Teaching, 2013
The history of learning biology through distance education is documented. A review of terminology and unique problems associated with biology instruction is presented. Using published research and their own teaching experience, the authors present recommendations and best practices for managing biology in distance-based formats. They offer ideas…
Descriptors: Biology, Science Instruction, Distance Education, Educational History
Redfern, James; Burdass, Dariel; Verran, Joanna – Journal of Biological Education, 2013
School science laboratory classes and hands-on public engagement activities share many common aims and objectives in terms of science learning and literacy. This article describes the development and evaluation of a microbiology public engagement activity, "The Good, the Bad and the Algae", from a school laboratory activity. The school…
Descriptors: Microbiology, Program Descriptions, Service Learning, Science Laboratories
Peer reviewedThompson, Susan – Science and Children, 1993
Describes an assignment and the results of having elementary school students design their own interesting and exciting science classroom environment. (PR)
Descriptors: Classroom Environment, Elementary Education, Elementary School Science, Learning Activities
Peer reviewedWang, Denis – Science Teacher, 1994
Describes an innovative, but not revolutionary, secondary education science program that is modeled after American graduate education. Discussions include a comparison of pedagogical approaches, implementation, the teacher, facilities, and teaching strategies. (ZWH)
Descriptors: Demonstration Programs, High Schools, Learning Activities, Science Activities
Peer reviewedHershey, David R. – Science Activities, 1992
Discusses traditional school demonstrations and experiments in hydrotropism. Explains that these experiments seem to "prove" hydrotropism, but yet most botanists reject hydrotropism. Teachers continue to teach the concept because it is logical and the experiments are simple. (PR)
Descriptors: Biology, Botany, Demonstrations (Educational), High Schools
Stuessy, Carol L.; Metty, Jane S. – Journal of Science Teacher Education, 2007
A science teacher and her mentor reflect on their participation in the Learning Research Cycle, a professional learning model that bridges research and practice in both university and public school contexts. Teachers do scientific research in scientists' laboratories, then bridge their scientific experiences with the design of new classroom…
Descriptors: Scientific Research, Scientists, Science Laboratories, Science Teachers
Ward, R. Bruce; Sadler, Philip M.; Shapiro, Irwin I. – Astronomy Education Review, 2008
We report on an evaluation of the effectiveness of Project ARIES, an astronomy-based physical science curriculum for upper elementary and middle school children. ARIES students use innovative, simple, and affordable apparatus to carry out a wide range of indoor and outdoor hands-on, discovery-based activities. Student journals and comprehensive…
Descriptors: Student Journals, Grade 4, Grade 3, Teaching Methods

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