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Hunt, David M.; Smith, Kirk – Management Teaching Review, 2019
Classroom methods that facilitate student learning from iteration have received little attention from scholars. Iterative learning requires students to repeat a problem-solving task in new contexts each time applying lessons from previous applications. Iterative learning formats improve students' learning outcomes and help instructors ensure that…
Descriptors: Case Method (Teaching Technique), Repetition, Problem Solving, Sequential Learning
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Woolcott, Geoff – Australian Mathematics Teacher, 2018
Southern Cross University (SCU) educators and local teachers have developed a five-lesson instructional sequence built around fluke identification as a way of resolving the question: How fast do humpback whales travel up the east coast of Australia?
Descriptors: Mathematics Education, Mathematics Instruction, Teaching Methods, Sequential Approach
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Saw, Kim Guan – Turkish Online Journal of Distance Education, 2017
This article revisits the cognitive load theory to explore the use of worked examples to teach a selected topic in a higher level undergraduate physics course for distance learners at the School of Distance Education, Universiti Sains Malaysia. With a break of several years from receiving formal education and having only minimum science…
Descriptors: Foreign Countries, Cognitive Processes, Difficulty Level, Undergraduate Students
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Ng, Kelvin H. R.; Hartman, Kevin; Liu, Kai; Khong, Andy W. H. – International Educational Data Mining Society, 2016
During the semester break, 36 second-grade students accessed a set of resources and completed a series of online math activities focused on the application of the model method for arithmetic in two contexts 1) addition/subtraction and 2) multiplication/division. The learning environment first modeled and then supported the use of a scripted series…
Descriptors: Word Problems (Mathematics), Mathematics Instruction, Arithmetic, Problem Solving
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Suthisung, Nisara – Journal of Education and Learning, 2014
The distinction between procedural and conceptual learning has long been a topic of discussion in mathematics education and the idea of compression into thinkable concepts that enable the individual make links between them (Tall, 2007). In addition to, the compression to thinkable concept was to be thinking mechanism arising naturally and…
Descriptors: Foreign Countries, Mathematics Instruction, Problem Solving, Teaching Methods
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Radakovic, Davorka; Herceg, Dorde – Acta Didactica Napocensia, 2013
Dynamic geometry software (DGS) is often used for development of interactive teaching materials in many subjects, not only mathematics. These interactive materials can contain hundreds of elements in order to represent complex objects, and script programs to control their behavior. We propose an approach for creating, importing and using…
Descriptors: Educational Games, Mathematics Instruction, Instructional Materials, Geometry
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Duke, Daniel L. – Management in Education, 2014
Prompted by the need for leaders able to turn around chronically low-performing schools, states, universities, education groups, and school districts in the US have initiated a variety of principal development programs. Some programs focus on enhancing the skills of experienced administrators, while others target talented teachers and even…
Descriptors: Low Achievement, Disadvantaged Schools, Leadership Training, Training Methods
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Diamond, Nina; Koernig, Stephen K.; Iqbal, Zafar – Journal of Marketing Education, 2008
This article describes an innovative strategic tools course designed to enhance the problem-solving skills of marketing majors. The course serves as a means of preparing students to capitalize on opportunities afforded by a case-based capstone course and to better meet the needs and expectations of prospective employers. The course format utilizes…
Descriptors: Active Learning, Problem Solving, Business Administration Education, Undergraduate Study
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Flores, Alfinio; Turner, Erin E.; Bachman, Renee C. – Teaching Children Mathematics, 2005
The way in which two teachers, Elizabeth and Carolyn, posed problems to develop their own conceptual understanding of division of fractions in terms that would also be meaningful for their students is described. Carolyn and Elizabeth's approach is to pose several problems of various degrees of difficulty and complexity for each aspect of the…
Descriptors: Arithmetic, Problem Solving, Sequential Learning, Word Problems (Mathematics)
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Park, Hyoung Seo – EURASIA Journal of Mathematics, Science & Technology Education, 2006
The purpose of the study was to develop an MST Integrated Program for making a Maglev hands-on activity for higher elementary school students in Korea. In this MST Integrated Program, students will apply Mathematics, Science, and Technology principles and concepts to the design, construction, and evaluation of a magnetically levitated vehicle. The…
Descriptors: Foreign Countries, Mathematics Education, Science Education, Technology Education
Foriska, Terry J. – Schools in the Middle, 1992
At a middle school in suburban Pittsburgh, Pennsylvania, administrators and teachers used the cognitive domain of the National Association of Secondary School Principals' Learning Style Profile to design "products" that helped compensate for underachieving sixth and seventh graders' skill deficits in mathematics and science. Success…
Descriptors: Academic Achievement, Cognitive Style, Grade 6, Grade 7
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Savage, Louise; Lombardi, Thomas P. – B.C. Journal of Special Education, 1993
This article describes methods for teaching higher level thinking skills to children. A four-step teaching plan utilizing Beyer's Taxonomy of thinking skills provides a sequential technique for teaching these skills as do increased verbal interaction, skillful questioning, and use of knowledge organizers. The I PLAN strategy can aid decision…
Descriptors: Abstract Reasoning, Cognitive Development, Decision Making Skills, Elementary Secondary Education
Bawden, Richard; Valentine, Ian – Programmed Learning and Educational Technology, 1984
Outlines innovations associated with development of a learning environment designed around problem-solving/situation-improving strategies for farming and other agricultural systems at Australia's Hawkesbury Agricultural College. The situation at the school is described; observations and reflections are noted; and conceptualizations and actions for…
Descriptors: Agricultural Colleges, Agricultural Education, Change Strategies, Curriculum Design