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Peer reviewedReeder, Kenneth – English Education, 1982
Reviews current theories of language teaching and learning. Considers thinking and problem solving as the impetus to linguistic growth and change. Encourages teachers to devise genuine problem solving tasks for young children that begin by observing/examining and end in expression through writing. (RL)
Descriptors: Child Development, Critical Thinking, Elementary Education, English Teacher Education
Peer reviewedWhimbey, Arthur; And Others – Journal of Reading, 1980
Describes a summer program for prefreshman science students entering Xavier University, designed to develop their problem-solving and academic abilities by emphasizing the connection between reading comprehension and analytical skills. (MKM)
Descriptors: Cognitive Processes, Critical Reading, Critical Thinking, Educational Research
Peer reviewedKimball, Edward L.; Farmer, Larry G. – Journal of Legal Education, 1979
Described is an experiment to test the effectiveness of alternative methods of teaching Evidence to students at Brigham Young University's law school. The methods tested were the traditional casebook approach, the problem approach, and a programed format. Examples of instructional materials and a transcript excerpt are appended. (JMD)
Descriptors: College Instruction, Comparative Analysis, Conventional Instruction, Course Descriptions
Lyublinskaya, Irina – NCSSSMST Journal, 1996
A mathematical preview program in physics was developed at the Arkansas School for Mathematics and Sciences to introduce students to mathematical concepts, then use these as tools in physics while concurrently studying them in mathematics. The topics and time frame for the mathematical preview in calculus-based physics courses is presented, along…
Descriptors: Calculus, Course Organization, Curriculum Development, Educational Change
Peer reviewedKing, Beverly – TEACHING Exceptional Children, 1997
Describes a collaborative consultative program used with 26 elementary school teachers in three schools. Emphasis was on encouraging teachers' creativity and innovation in selecting and implementing teaching strategies. Workshops demonstrated a problem-solving approach to selecting appropriate interventions with individual children. A chart shows…
Descriptors: Behavior Problems, Consultation Programs, Educational Strategies, Elementary Education
Peer reviewedKann, Charles; Lindeman, Robert W.; Heller, Rachelle – Computers & Education, 1997
In the past, algorithm animation has yielded mixed results as a teaching tool in computer science. This article presents a study in which undergraduates at George Washington University (DC) viewed algorithm animations and then programmed the same algorithms. Results suggest that combing the two is an effective way to use animation and to produce…
Descriptors: Algorithms, Animation, Computer Science, Computer Uses in Education
Peer reviewedGallagher, Shelagh A.; Stepien, William J. – Journal for the Education of the Gifted, 1996
This study found no differences in content acquisition (as measured by a standardized test) of 167 gifted 10th graders in American Studies classes who received either a problem-based learning approach or traditional instruction. Results did not support the common assumption that curriculum fostering higher order thinking skills inevitably results…
Descriptors: Academic Achievement, Academically Gifted, American Studies, Critical Thinking
Peer reviewedPek, Peng-Kiat – Journal of Science Education and Technology, 1996
Discusses the use of computer-aided instruction (CAI) packages in promoting active student learning. Describes the development of a CAI package that highlights discussion of real engineering cases and students' ability to transfer knowledge to new engineering problems. Concludes that the students' problem-solving skills can be improved with the…
Descriptors: Computer Assisted Instruction, Computer Uses in Education, Educational Strategies, Educational Technology
Peer reviewedRoss, Michael R.; Fulton, Robert B. – Journal of Chemical Education, 1994
Describes an analytical chemistry course restructured around the use of cooperative groups to help students become active learners in a non-competitive environment. Five years of experience with the course indicates that the syllabus covers almost exactly the same content as old courses and that test scores compare favorably on the national level.…
Descriptors: Active Learning, Chemistry, Cooperative Learning, Group Activities
Peer reviewedFuson, Karen C.; And Others – Journal for Research in Mathematics Education, 1997
Researchers from four projects with a problem-solving approach to teaching and learning multidigit number concepts and operations describe a common framework of conceptual structures children construct for multidigit numbers, and categories of methods children devise for multidigit addition and subtraction. Conceptions include unitary, decade and…
Descriptors: Classroom Techniques, Cognitive Development, Comprehension, Concept Formation
Peer reviewedRoberts, Tamsin – Australian Primary Mathematics Classroom, 1996
Explores what is important when choosing a mathematics word problem and when modifying it to suit particular students' backgrounds and cultures. For example, potentially good problems have multiple entry and exit points which can have several right answers, blending of different mathematical ideas, linkages to problems in other situations, and…
Descriptors: Constructivism (Learning), Cooperative Learning, Foreign Countries, Indigenous Populations
Peer reviewedRodriguez, Alberto J. – Science Teacher, 1997
Criticizes the National Science Education Standards for using an example lesson that contradicts support for students engaging in scientific inquiry. Suggests a multiculturally inclusive approach engaging students in a role-playing activity as members of the University of Alexandria. Students are involved in scientific inquiry with Eratosthenes,…
Descriptors: Cultural Context, Educational Objectives, Females, Inquiry
Peer reviewedCarroll, William M.; Porter, Denise – Teaching Children Mathematics, 1997
Describes teaching strategies in which children are encouraged to develop computational procedures that are meaningful to them. Authors state that classroom observation reveals most primary students to be capable of developing their own accurate solution procedures for multi-digit addition and subtraction as well as for simple multiplication and…
Descriptors: Algorithms, Associative Learning, Computation, Cooperative Learning
Peer reviewedSuomala, Jyrki – Scandinavian Journal of Educational Research, 1996
Social problem solving, effectance motivation, and information processing were studied with 38 Finnish eight-year olds using the LOGO computer programming language learned through discovery learning. Results suggest that LOGO promotes the development of problem-solving skills if each student receives sufficient support from the teacher. (SLD)
Descriptors: Computer Assisted Instruction, Discovery Learning, Educational Environment, Elementary Education
Peer reviewedShumway, Richard – For the Learning of Mathematics, 1990
Discussed are supercalculator capabilities and possible teaching implications. Included are six examples that use a supercalculator for topics that include volume, graphing, algebra, polynomials, matrices, and elementary calculus. A short review of the research on supercomputers in education and the impact they could have on the curriculum is…
Descriptors: Algebra, Calculators, Calculus, Cognitive Development


