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Clopton, Joe R. – American Biology Teacher, 2008
For teachers, a common difficulty when introducing scientific thinking is finding ways to engage the participation of the students. Because most scientific problems require at least some specialized knowledge to formulate and solve, it can be hard to go beyond merely discussing the steps of the scientific method and illustrating them with the…
Descriptors: Scientific Methodology, Teaching Methods, Science Instruction, Biological Sciences
Powell, Debbie; Needham, Dick; Aram, Roberta – Science and Children, 2008
Planning effective, engaging lessons and units are challenging tasks for a teacher, but the process can also be meaningful and rewarding. Using a "big understanding"--a guiding statement describing essential content you want students to learn throughout the unit--teachers can successfully plan and create lessons around substantive science content…
Descriptors: State Standards, Science Process Skills, Science Instruction, Educational Change
Elliott, M. J.; Stewart, K. K.; Lagowski, J. J. – Journal of Chemical Education, 2008
In an attempt to establish the role of the laboratory in chemistry instruction, an historical perspective is developed, in the hope of extracting the consensus of commentators on the subject concerning the important features of the laboratory experience. We present arguments to support the idea that laboratory instruction involves student…
Descriptors: Chemistry, Science Laboratories, Science Instruction, Laboratory Experiments
Bourdeau, Virginia; Arnold, Mary E. – Science Scope, 2008
The Oregon 4-H Wildlife Stewards program has been training teachers and volunteers to convert school grounds to education sites by constructing schoolyard wildlife habitats since 1997. The publication "What Can We Learn at the Pond? 4-H Wildlife Stewards Master Leader Guide" (Bourdeau 2004a) was written to support the program's focus on developing…
Descriptors: Environmental Education, Wildlife, Science Activities, Inquiry
Canada, Dan; Gilbert, Mike; Adolphson, Keith – Mathematics Teaching in the Middle School, 2008
Teachers know that real mathematical understanding includes the higher-level skills of comparing, contrasting, and making connections among different computational approaches. What mathematical connections can students make when asked to explore a task that is posed in three different ways? This article describes a unique task structure that helps…
Descriptors: Mathematical Concepts, Mathematics Activities, Mathematical Applications, Mathematics Instruction
Kastens, Kim A.; Rivet, Ann – Science Teacher, 2008
To help teachers enrich their students' understanding of inquiry in Earth science, this article describes six modes of inquiry used by practicing geoscientists (Earth scientists). Each mode of inquiry is illustrated by using examples of seminal or pioneering research and provides pointers to investigations that enable students to experience these…
Descriptors: Investigations, Earth Science, Inquiry, Science Instruction
Lavoie, Jean-Michel; Chornet, Esteban; Pelletier, Andre – Journal of Chemical Education, 2008
This experiment targets undergraduate students in an analytical or organic instructional context. Using a simple extraction, this protocol allows students to quantify and qualify monoterpenes in essential oils from citrus fruit peels. The procedures involve cooling down the peels by immersing them into icy water. After a few minutes, the chilled…
Descriptors: Undergraduate Students, Organic Chemistry, Biochemistry, Spectroscopy
Kuhn, Deanna; Iordanou, Kalypso; Pease, Maria; Wirkala, Clarice – Cognitive Development, 2008
We identify three aspects of scientific thinking beyond the control-of-variables strategy that we claim are essential for students to master as a foundation for skilled scientific thinking. The first is strategic and involves the ability to coordinate effects of multiple causal influences on an outcome. The second is a mature understanding of the…
Descriptors: Science Instruction, Concept Formation, Science Process Skills, Scientific Concepts
Constible, Juanita; Sandro, Luke – Journal of College Science Teaching, 2008
In this problem-based learning activity designed for nonscience majors, students assume the roles of scientists working for a public relations firm. Teams of students design communication products illustrating links between climate change and pollen allergies. Students develop a variety of process skills critical to scientists, including working…
Descriptors: Allergy, Problem Based Learning, Science Process Skills, Climate
Meuler, Debra – American Biology Teacher, 2008
A central theme of the "National Science Education Standards" is teaching science as an inquiry process, allowing students to explore an authentic problem using the tools and skills of the discipline. Research indicates that more active participation by the student, which usually requires higher-order thinking skills, results in deeper learning.…
Descriptors: Animals, Laboratory Procedures, Biology, Anatomy
Harper, Jeffrey S.; Harder, Joseph T. – Decision Sciences Journal of Innovative Education, 2009
This article describes the development of a systematic and practical methodology for assessing program effectiveness and monitoring student development in undergraduate decision sciences programs. The model we present is based on a student's progression through learning stages associated with four key competencies: technical, analytical,…
Descriptors: Program Effectiveness, Program Evaluation, Evaluation Methods, Program Descriptions
Kralina, Linda M. – ProQuest LLC, 2009
Extracurricular activities (ECA) are informal settings offering free-choice experiences that are generally voluntary, open-ended, non-sequential, self-directed, hands-on, and evaluation-free. This mixed methods study investigates participation in a high school science ECA by collecting the memories of former student members for their perceptions…
Descriptors: Extracurricular Activities, Informal Education, Science Education, Learner Engagement
Fah, Lay Yoon – Journal of Science and Mathematics Education in Southeast Asia, 2009
The science curriculum in Malaysia emphasizes the acquisition of scientific skills, thinking skills, and the inculcation of scientific attitudes and noble values. Besides that, the acquisition of scientific and technological knowledge and its application to the natural phenomena and students' daily experiences are also equally emphasized. The…
Descriptors: Curriculum Development, Scientific Attitudes, Science Achievement, Logical Thinking
Carvalho-Knighton, Kathleen M.; Smoak, Joseph M. – International Journal of Environmental and Science Education, 2009
The aim of this study was to investigate if integrating basic analytical methods and computer interface technology would result in a positive change in student attitude. Students' self-concept of science knowledge and skills (Capability), opinion towards science (Affect), and perceptions of the value of science (Value) were determined with…
Descriptors: Water Quality, Student Attitudes, Computer Interfaces, Test Construction
Emereole, Hezekiah Ukegbu – International Journal of Science and Mathematics Education, 2009
The conceptual knowledge of science processes possessed by University of Botswana science students and senior secondary school science teachers was sought through a three-part questionnaire. One part requested demographic data of subjects, the second part asked them to select their level of familiarity with the processes, and the third part probed…
Descriptors: Definitions, Teacher Attitudes, Student Attitudes, Scientific Principles

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