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Forringer, Edward – Physics Teacher, 2021
When authoring physics problems, professors may develop an intuition for how much information they need to provide such that the problem has a unique answer and is not over constrained. It is an open question as to whether using intuition leads to a sufficiently broad range of problems. In this paper we discuss a systematic way of authoring…
Descriptors: Motion, Physics, Science Instruction, College Science
Burke, Jon; Goukasian, Levon; Shearer, Robert – Journal of Statistics Education, 2020
Students often struggle with the concept of dependence of events or random variables. We present a simple coin flipping game that yields surprising results due to the dependencies within the game. The game is simple enough for young children to understand and play, yet complex enough to yield results that are counterintuitive to even most graduate…
Descriptors: Statistics Education, Teaching Methods, Games, Problem Solving
Martins, Rui Manuel da Costa – Teaching Statistics: An International Journal for Teachers, 2018
Using the famous Birthday problem, we present here a practical activity that allows students to perceive the basic reasoning behind simulation and explore its potential. Through a playful approach with probabilities, students are led along a path that illustrates difficulties with intuition and introduces them to theoretical results for sample…
Descriptors: Learning Activities, Probability, Intuition, Statistics
Tuohilampi, Laura; Nieminen, Juuso Henrik; Beswick, Kim – For the Learning of Mathematics, 2023
When a Year 7 student physically reacted to a prompt of another student by anxiously drumming the desk with his ruler, exclaiming "uuuuhh", the initial thought of the observing researcher, Laura, was: "this is an interesting account". This started a reflective journey of first applying robust research methodologies to the…
Descriptors: Logical Thinking, Problem Solving, Grade 7, Researchers
Bao, Lei; Koenig, Kathleen; Xiao, Yang; Fritchman, Joseph; Zhou, Shaona; Chen, Cheng – Physical Review Physics Education Research, 2022
Abilities in scientific thinking and reasoning have been emphasized as core areas of initiatives, such as the Next Generation Science Standards or the College Board Standards for College Success in Science, which focus on the skills the future will demand of today's students. Although there is rich literature on studies of how these abilities…
Descriptors: Physics, Science Instruction, Teaching Methods, Thinking Skills
Hodges, Thomas E.; Johnson, Malisa; Roy, George J. – Teaching Children Mathematics, 2017
Children's intuitive understandings of mathematical ideas--both correct, generalizable strategies alongside misconceptions--showcase the complexity of their thinking. However, recognizing children as complex thinkers is one thing but it is another thing altogether to leverage their ideas to plan for and carry out mathematics instruction. The…
Descriptors: Grade 4, Elementary School Students, Elementary School Mathematics, Mathematics Instruction
Star, Jon R.; Pollack, Courtney – ZDM: The International Journal on Mathematics Education, 2015
The topic of inhibition in mathematics education is both well timed and important. In this commentary, we reflect on the role of inhibition in mathematics learning through four themes that relate to how inhibition is defined, measured, developed, and applied. First, we consider different characterizations of inhibition and how they may shape the…
Descriptors: Inhibition, Mathematics Education, Definitions, Research Methodology
Sisk, Dorothy A. – Gifted Education International, 2016
This article will share the intellectual journey E. Paul Torrance and I traveled in 2001, in which we explored psychology, science and ancient wisdom and traditions, including Native American and indigenous traditions, to establish a foundation for spiritual intelligence. This section will be followed by ways to develop and nurture spiritual…
Descriptors: Spiritual Development, Intuition, Visualization, Problem Solving
Dickman, Benjamin – Mathematics Teacher, 2016
Guessing, for Pólya, is an important way of getting an initial handle on a mathematical problem. An argument can be made to place guessing in any one of the first three steps of the four-step approach to problem solving as described in "How to Solve It" (Pólya 1945). It could be a part of understanding the problem, devising a plan, or…
Descriptors: Problem Solving, Mathematics Instruction, Calculus, Fractions
Sole, Marla A. – PRIMUS, 2016
Open-ended questions that can be solved using different strategies help students learn and integrate content, and provide teachers with greater insights into students' unique capabilities and levels of understanding. This article provides a problem that was modified to allow for multiple approaches. Students tended to employ high-powered, complex,…
Descriptors: Problem Solving, Mathematics Instruction, Feedback (Response), Teaching Methods
Greenstein, George – Astronomy Education Review, 2013
I discuss a pedagogical strategy in which we ask students to write about science. Such writing is to be done regularly and often, in class and out of class, in the format of brief "letters to a friend" and longer essays. The goal of this technique is not to teach students how to write; it is to use their writing to help them learn the science.…
Descriptors: Teaching Methods, Content Area Writing, Astronomy, Science Instruction
Chen, Ying; Irving, Paul W.; Sayre, Eleanor C. – Physical Review Special Topics - Physics Education Research, 2013
Previous research into problem solving in physics resulted in researchers introducing six epistemic games to describe the organizational structures of locally coherent resources. We present a new epistemic game--the "answer-making epistemic game"--which was identified in this paper through the analysis of interviews carried out to validate a…
Descriptors: Physics, Educational Games, Epistemology, Problem Solving
Berjano, E.; Lozano-Nieto, A. – European Journal of Engineering Education, 2011
One of the most important issues in the reorganisation of engineering education is to consider new pedagogical techniques to help students develop skills and an adaptive expertise. This expertise consists of being able to recognise the nature of a problem intuitively, and also recognising recurring patterns in different types of problems. In the…
Descriptors: Expertise, Engineering Education, Mathematical Models, Electronics
Ratliff, Thomas C. – College Mathematics Journal, 2010
The Dodgson winner seems very intuitive and reasonable: when a Condorcet winner doesn't exist, pick the candidate that is closest, under some measure, to being a Condorcet winner. However, Dodgson's method is computationally intensive. Approximate methods are more tractable. By placing these methods in a geometric framework, we can understand how…
Descriptors: Correlation, Geometric Concepts, College Mathematics, Teaching Methods
Ross, Victor E. – Thinking Skills and Creativity, 2006
Despite significant progress over the past six decades, a number of obstacles still exist as far as the understanding and application of inventive ideation techniques is concerned. This paper describes the development of a model aimed at simplifying the selection and application of these techniques. Analysis of a diverse range of creative thinking…
Descriptors: Problem Solving, Creative Thinking, Models, Creativity
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