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Ottem, Ernst – American Annals of the Deaf, 1980
A new way of classifying tasks and problems used in studies with deaf people is presented. It is claimed that this classification system allows for the specification of tasks on which deaf people perform equally well as hearing people and of tasks on which they fail in comparison. (Author)
Descriptors: Classification, Cognitive Processes, Deafness, Problem Solving
Dunlap, William P.; McKnight, Martha – Academic Therapy, 1980
Fourteen steps are suggested: perceive problem, decode written symbols, formulate general meaning, translate the general message into the mathematical message, determine question(s), gather data, analyze relationships, decide on processes, estimate answers, encode data into mathematical sentences, perform operations, answer questions, and check…
Descriptors: Elementary Education, Mathematics, Problem Solving, Teaching Methods
Albert Shanker Institute, 2009
This report examines the importance and efficacy of oral language, literacy, mathematics, and science preschool curricula and how these curricula can be improved through alignment with research on early childhood development and learning. Detailed, research-driven recommendations are presented for what preschool-aged children should be learning in…
Descriptors: Preschool Curriculum, Oral Language, Literacy Education, Mathematics Instruction
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Ervin, Ruth A.; Schaughency, Elizabeth; Matthews, Amy; Goodman, Steven D.; McGlinchey, Margaret T. – Psychology in the Schools, 2007
This article focuses on the development and implementation of primary and secondary behavior supports at a schoolwide level. The approach described is consistent with previous efforts to address behavior at a systems level (e.g., G. Sugai, R.H. Horner, & F.M. Gresham, 2002). In this article, we illustrate this process through a school-based…
Descriptors: Discipline, Discipline Problems, Educational Change, Behavior Problems
Sharma, Mahesh C. – Math Notebook, 1985
Discusses the nature and role of visualization in the study of mathematics. Also includes a list of seven broad methods (often referred to as the design spectrum) by which individuals solve problems. (JN)
Descriptors: Elementary Secondary Education, Mathematics Education, Problem Solving, Visualization
Graham, Terry Lynne; Knight, Michael E. – Learning, 1985
A teacher offers six suggestions for giving students opportunities to exercise their commonsense thinking skills. This allows the teacher to ask rather than tell, listen rather than talk, and allows the children to provide for themselves. (MT)
Descriptors: Elementary Education, Learning Strategies, Logical Thinking, Problem Solving
Baines, Stephen – Gifted Education International, 1984
Impact Problem Solving, an approach to teaching gifted students, concentrates upon relevant skills rather than factual content, and teaches methodology of analyzing and clarifying the nature of problems, collecting the necessary data; thinking of all the possible solutions; and assessing, altering, and testing those suggestions to provide the most…
Descriptors: Elementary Secondary Education, Gifted, Problem Solving, Teaching Methods
Koons, Theresa L. – Academic Therapy, 1985
A step-by-step procedure for teaching students to solve time-lapse problems allows the student to convert what is normally a pure mental process to a systematic paper and pencil activity coupled with a step-by-step thought pattern. (CL)
Descriptors: Disabilities, Problem Solving, Teaching Methods, Time Factors (Learning)
Parker, Jeanette – G/C/T, 1978
The steps involved in creative problem solving (CPS) are described, and suggestions are made for incorporating CPS into instruction for gifted and talented students. (CL)
Descriptors: Creative Thinking, Gifted, Problem Solving, Talent
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Ballew, Hunter – Mathematics Teacher, 1994
Shows the connections between Sherlock Holmes's investigative methods and mathematical problem solving, including observations, characteristics of the problem solver, importance of data, questioning the obvious, learning from experience, learning from errors, and indirect proof. (MKR)
Descriptors: Mathematics Instruction, Problem Solving, Proof (Mathematics), Secondary Education
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Ritz, John M.; Deal, Walter F., III – Technology Teacher, 1992
Presents a design brief to illustrate a simple technique that can be used to teach problem-solving and critical thinking skills. (JOW)
Descriptors: Critical Thinking, Learning Activities, Problem Solving, Teaching Methods
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Frydenberg, Erica; Lewis, Ramon – British Journal of Guidance and Counselling, 2004
This paper reports the coping strategies characterising self-professed weak copers. In order to do so it examines strategies reported by a subset of a sample of 976 adolescents, as measured by the Adolescent Coping Scale. What is of interest in this investigation are the coping strategies of the most vulnerable adolescent group. Such information…
Descriptors: Adolescents, Coping, Stress Management, Measures (Individuals)
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Wilkinson, Lee A. – International Journal of Behavioral Consultation and Therapy, 2007
The trend in school psychology services is a shift from an emphasis on an assessment-based paradigm to one of consultation problem-solving and behavioral intervention. A critical component of consultation-derived interventions and behavior change is "treatment integrity." Treatment integrity (or fidelity) refers to the extent to which an…
Descriptors: Intervention, School Psychologists, Behavior Modification, Integrity
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Technology Teacher, 1987
Introduces the concept of artificial intelligence, discusses where it is currently used, and describes an expert computer system that can be used in the technology laboratory. Included is a learning activity that describes ideas for using intelligent computers as problem-solving tools. (Author/CH)
Descriptors: Artificial Intelligence, Computers, Problem Solving, Secondary Education
Cawley, John F.; And Others – Learning Disabilities Focus, 1987
Analysis of arithmetic problem-solving difficulties among secondary school learning disabled students (N=63) indicated students had the most difficulty with problems of the indirect type and problems that contained extraneous information. Teaching suggestions are offered. (Author/DB)
Descriptors: Arithmetic, Learning Disabilities, Problem Solving, Secondary Education
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