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Peer reviewedFavero, Terry – American Biology Teacher, 1998
Recommends that teachers avoid cookbook-type exercises and predescribed protocols for laboratory work and instead engage students in research that can teach critical thinking, problem solving, and analytical skills. (DDR)
Descriptors: Data Collection, Educational Strategies, Higher Education, Inquiry
Peer reviewedKeller, J. David; Berry, Kimberly A. – Science Scope, 2001
Uses questioning techniques to teach about caloric consumption and weight gain. Starts with defining questions about calories and includes the stages of measuring calories, analyzing data, and conducting inquiry research. Includes directions for the experiment. (YDS)
Descriptors: Chemistry, Curriculum Development, Inquiry, Middle Schools
Christie, Christina A. – American Journal of Evaluation, 2006
This interview with Dr. Hallie Preskill focuses on the organizational change method known as appreciative inquiry (AI), which is described as a process that builds on past successes (and peak experiences) in an effort to design and implement future actions. Preskill takes the philosophy and principles put forth by organizational change AI…
Descriptors: Interviews, Evaluators, Inquiry, Evaluation Methods
Dull, Laura J. – International Journal of Educational Development, 2004
The author assesses the 1987 educational reforms in Ghana that mandated increased emphasis on inquiry and problem-solving teaching methods in training colleges. While teaching practices were not as rote and dictatorial as scholars have often claimed, trainees and teachers shied away from methods that could lead to ''indiscipline.'' Their concern…
Descriptors: Foreign Countries, Teaching Methods, Discipline, Democracy
Foster, Patrick N. – Technology Teacher, 2006
Almost every K-8 technology activity includes feedback. Technology teachers generally view the input-process-output paradigm as being incomplete. A step toward completion would be the inclusion of a "feedback" component incorporating reengineering. This article provides an example of how one activity evolved through several stages to include…
Descriptors: Feedback, Technology Education, Class Activities, Teaching Methods
Derrington, Mary Lynne; Larsen, Donald – International Journal of Educational Leadership Preparation, 2009
Educational administration instructors seek methods that will engage students' interest in the subject matter and also link educational theory to realities experienced on the job. An equally important goal and a most important lesson to impart to aspiring education administrators are the competencies exhibited in ISLLC Standard 5, act with…
Descriptors: Case Studies, Student Developed Materials, Ethics, Leadership
Exploring an Inquiry-Based Learning Approach with First-Year Students in a Large Undergraduate Class
Oliver, Ron – Innovations in Education and Teaching International, 2007
This paper describes an exploration of an inquiry-based learning approach undertaken with a group of first-year students in a large undergraduate class. An innovative technology support was used to manage the process and an exploration was undertaken to determine students' responses to learning based on problem-solving activities. The study…
Descriptors: Problem Solving, Student Attitudes, Undergraduate Students, Learning Strategies
Edwards, Ronald – 1995
This resource book contains 18 magic number tricks that spark the interest and imagination of students as they are led through a variety of mathematical computations and discoveries. Following each activity, students are asked to write about their discoveries and create their own magic tricks. A matrix of skills for all the activities and lists of…
Descriptors: Communication Skills, Critical Thinking, Discovery Learning, Elementary Education
Peer reviewedLeyden, Michael B. – Science and Children, 1975
Describes various elementary school activities using a loaf of raisin bread to promote inquiry skills. Activities include estimating the number of raisins in the loaf by constructing histograms of the number of raisins in a slice. (MLH)
Descriptors: Elementary Education, Elementary School Science, Graphs, Inquiry
Peer reviewedMolitor, Loretta L. – Science and Children, 1975
Discusses the fact that when the materials or interactions used as a basis for a science activity posses a high degree of familiarity, the student may rely on past experience rather than on gathering data to use in making judgments. In such cases, a simple request for observed evidence should be made. (MLH)
Descriptors: Elementary Education, Elementary School Science, Inquiry, Instruction
Hayward, O. T.; And Others – 1971
This publication is one of a series of single-topic problem modules designed for use in undergraduate geology and earth science courses. The first section, "Ain't It Flat? A Series of Experiments in Geodesy," presents various experiments for determining the earth's circumference (historically) and describes the use of satellites in determining the…
Descriptors: College Science, Earth Science, Geology, Inquiry
Peer reviewedNewton, Richard F. – Teachers College Record, 1975
This article points out the flaws inherent in the hypothetico-deductive formulation of inquiry. (CD)
Descriptors: Conceptual Schemes, Critical Thinking, Hypothesis Testing, Inquiry
Peer reviewedFelton, Randall G.; Allen, Rodney F. – Social Education, 1986
This exercise shows how to turn the expository treatment of a topic or event into a mystery or puzzling situation that students are asked to solve. Once a puzzle is presented, students may pose only questions that can be answered yes or no. Three sample lessons are included to illustrate the process. (JDH)
Descriptors: Basic Skills, Concept Teaching, Inquiry, Junior High Schools
Peer reviewedFelton, Randall G.; Allen, Rodney F. – Journal of Geography, 1987
This article shows how to convert expository textbook material into puzzling mysteries for students. The five-step instructional process is illustrated with two sample lessons. Includes student handouts. (JDH)
Descriptors: Geography, Geography Instruction, Inquiry, Junior High Schools
Peer reviewedBirnie, Howard H.; Ryan, Alan – Science and Children, 1984
Discusses inquiry and discovery methods in elementary school science education; emphasizes the importance of teachers knowing whether they are using the inquiry approach and to what extent. Presents a chart listing the steps involved in problem solving, indicating whether a step is teacher- or student-controlled. (BC)
Descriptors: Discovery Learning, Elementary Education, Elementary School Science, Inquiry

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