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Ijirana; Aminah, Sitti; Supriadi; Magfirah – Journal of Technology and Science Education, 2022
Critical thinking skills has to be sharpened particularly during the COVID-19 pandemic. This circumstance leads to the lack of student's passion to apply their thinking skills in doing something necessary. Therefore, it requires a learning improving critical thinking skills. This study aims to describe the critical thinking skills of chemistry…
Descriptors: Critical Thinking, COVID-19, Pandemics, Chemistry
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Eslinger, Melissa; Kent, Elizabeth – Bioscene: Journal of College Biology Teaching, 2018
Emphasizing scientific literacy in the core science curriculum promotes informed students within a liberal arts education. In our Introduction to Biology course, which enrolls predominantly humanities majors in their final science course of their academic careers, we designed a project to advance these analytical processes through the deliberate…
Descriptors: Science Instruction, Scientific Literacy, Science Curriculum, Introductory Courses
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Srougi, Melissa C.; Miller, Heather B.; Witherow, D. Scott; Carson, Susan – Biochemistry and Molecular Biology Education, 2013
Providing students with assignments that focus on critical thinking is an important part of their scientific and intellectual development. However, as class sizes increase, so does the grading burden, prohibiting many faculty from incorporating critical thinking assignments in the classroom. In an effort to continue to provide our students with…
Descriptors: Undergraduate Study, College Science, Science Instruction, Molecular Biology
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Grannas, Amanda M.; Lagalante, Anthony F. – Journal of Chemical Education, 2010
A new curricular approach in our undergraduate second-year instrumental analysis laboratory was implemented. Students work collaboratively on scenarios in diverse fields including pharmaceuticals, forensics, gemology, art conservation, and environmental chemistry. Each laboratory section (approximately 12 students) is divided into three groups…
Descriptors: Role Playing, Chemistry, Undergraduate Students, Science Instruction
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Schwarz, Baruch B.; Schur, Yaron; Pensso, Haim; Tayer, Naama – International Journal of Computer-Supported Collaborative Learning, 2011
Changing practices in schools is a very complex endeavor. This paper is about new practices we prompted to foster collaboration and critical reasoning in science classrooms: the presentation of pictures representing different perspectives, small group synchronous argumentation, and moderation of synchronous argumentation. A CSCL tool helped in…
Descriptors: Persuasive Discourse, Perspective Taking, Concept Formation, Grade 8
Lapp, Diane, Ed.; Moss, Barbara, Ed. – Guilford Publications, 2011
Offering fresh alternatives to common instructional practices that fail to get results, this accessible, highly practical guide highlights ways to motivate middle school students while enhancing content-area learning. Each chapter features an enlightening case study of a teacher whose current strategies are not supported by research; describes…
Descriptors: Adolescent Literature, Writing Across the Curriculum, Visual Arts, Written Language
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Keller, George E., III – Journal of General Education, 2002
Argues that problem-based learning (PBL) shows students that the best scientists are not those who memorize facts, but rather those who apply facts in a creative manner. Explains that the author, who incorporated group learning into a general education science course, found that PBL led to increased class attendance and participation. (Contains…
Descriptors: Community Colleges, Cooperative Learning, Critical Thinking, General Science
Rushton, Erik; Ryan, Emily; Swift, Charles – 2001
In this activity, students build a city out of sugar cubes, bouillon cubes, and gelatin cubes. The city is then put through simulated earthquakes to see which cube structures withstand the shaking the best. This activity requires a 50-minute time period for completion. (Author/SOE)
Descriptors: Creative Activities, Critical Thinking, Design, Engineering
Rushton, Erik; Ryan, Emily; Swift, Charles – 2001
Working in teams of four, students build a tetrahedral kite following a specific set of directions and using specific provided materials. Students use basic processes of manufacturing systems-- cutting, shaping, forming, conditioning, assembling, joining, finishing, and quality control--to manufacture a complete tetrahedral kite within a given…
Descriptors: Alternative Assessment, Critical Thinking, Design, Engineering
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Hopkins, Martha H. (Marty) – Teaching Children Mathematics, 1997
Describes a mathematical investigation centered on collecting and analyzing data in a scientific setting. The first experiment teaches the basics of data collection--students should be able to identify variables that might have affected experimental results. The second activity includes designing an experiment to control for these variables. The…
Descriptors: Critical Thinking, Data Analysis, Elementary Education, Elementary School Mathematics
National Aeronautics and Space Administration (NASA), 2007
Field Trip to the Moon uses an inquiry-based learning approach that fosters team building and introduces participants to careers in science and engineering. The program components include the Field Trip to the Moon DVD [not included here], Lunar Reconnaissance Orbiter (LRO)/Lunar Crater Observation and Sensing Satellite (LCROSS) Activities, and…
Descriptors: Group Activities, Informal Education, Workshops, Astronomy
Segal, Gilda – 1997
The purposes of this study were to: (1) investigate the process of development of young children's ideas when (and if) they appropriate science from the conceptual area (i.e., light) during whole-class and small-group interactions; and (2) advance understanding of relationships between a collaboratively designed learning and teaching model and…
Descriptors: Active Learning, Cognitive Processes, Concept Formation, Cooperation
Adams, Dennis; Hamm, Mary – 1996
Using collaborative learning activities means structuring student interaction in small, mixed-ability groups, encouraging interdependence, and providing for individual accountability. By taking part in cooperative experiences, students are encouraged to learn by assimilating their ideas and creating new knowledge through interaction with others.…
Descriptors: Art Education, Classroom Environment, Classroom Techniques, Cognitive Style