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Good, Melanie; Marshman, Emily; Yerushalmi, Edit; Singh, Chandralekha – Physical Review Physics Education Research, 2020
We examined physics graduate teaching assistants' views about introductory physics problem "types," i.e., different ways of posing the same underlying physics problem, within the context of a semester-long teaching assistant (TA) professional development course. Here, we focus on TAs' views about two types of broken-into-parts problems…
Descriptors: Graduate Students, Teaching Assistants, Student Attitudes, Introductory Courses
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Good, Melanie; Marshman, Emily; Yerushalmi, Edit; Singh, Chandralekha – Physical Review Physics Education Research, 2018
Physics problems can be posed in different ways. Given a physics scenario, different problem types presenting that scenario in various ways can emphasize different instructional goals. In this investigation, we examined the views of physics graduate teaching assistants (TAs) enrolled in a semester-long TA professional development course about the…
Descriptors: Science Teachers, Physics, Graduate Students, Teaching Assistants
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Lin, Shih-Yin; Henderson, Charles; Mamudi, William; Singh, Chandralekha; Yerushalmi, Edit – Physical Review Special Topics - Physics Education Research, 2013
As part of a larger study to understand instructors' considerations regarding the learning and teaching of problem solving in an introductory physics course, we investigated beliefs of first-year graduate teaching assistants (TAs) regarding the use of example solutions in introductory physics. In particular, we examine how the goal of promoting…
Descriptors: Physics, Teaching Methods, Problem Solving, Teaching Assistants
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Safadi, Rafi'; Yerushalmi, Edit – International Journal of Science and Mathematics Education, 2014
We compared the materialization of knowledge integration processes in class discussions that followed troubleshooting (TS) and problem-solving (PS) tasks and examined the impact of these tasks on students' conceptual understanding. The study was conducted in two sixth-grade classes taught by the same teacher, in six lessons that constituted a…
Descriptors: Problem Solving, Troubleshooting, Grade 6, Electronics
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Yerushalmi, Edit; Cohen, Elisheva; Heller, Kenneth; Heller, Patricia; Henderson, Charles – Physical Review Special Topics - Physics Education Research, 2010
This study investigates how the beliefs and values of physics faculty influence their choice of physics problems for their students in an introductory physics course. The study identifies the goals these instructors have for their students, the problem features they believe facilitate those goals, and how those features correspond to problems they…
Descriptors: Physics, Problem Solving, Calculus, Science Instruction
Henderson, Charles; Heller, Kenneth; Heller, Patricia; Kuo, Vince H.; Yerushalmi, Edit – 2002
Based on an analysis of structured interviews with 6 research university physics faculty members, this paper presents our initial hypothesis of instructors' beliefs about how their students learn to solve problems in an introductory physics courses. The hypothesis shows that these instructors have very general beliefs about the process of student…
Descriptors: Attitudes, Higher Education, Physics, Problem Solving
Henderson, Charles; Heller, Kenneth; Heller, Patricia; Kuo, Vince H.; Yerushalmi, Edit – 2001
The Physics Education Research Group at the University of Minnesota has developed an interview tool to investigate physics faculty views about the learning and teaching of problem solving. In the part of the interview dealing with grading, faculty members were asked to evaluate a set of five student solutions and explain their reasons for the…
Descriptors: Evaluation, Evaluation Problems, Higher Education, Learning Processes
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Henderson, Charles; Yerushalmi, Edit; Kuo, Vince H.; Heller, Kenneth; Heller, Patricia – Physical Review Special Topics - Physics Education Research, 2007
To identify and describe the basis upon which instructors make curricular and pedagogical decisions, we have developed an artifact-based interview and an analysis technique based on multilayered concept maps. The policy capturing technique used in the interview asks instructors to make judgments about concrete instructional artifacts similar to…
Descriptors: Concept Mapping, College Faculty, Physics, Problem Solving
Henderson, Charles; Heller, Kenneth; Heller, Patricia; Kuo, Vince H.; Yerushalmi, Edit – 2001
This paper presents preliminary hypotheses about a common core of faculty beliefs about how their students learn to solve problems in their introductory courses. Using a process of structured interviews and a concept map based analysis, we find that faculty appear to believe that students learn problem solving primarily through a process of…
Descriptors: Concept Mapping, Higher Education, Learning Processes, Metacognition
Henderson, Charles; Heller, Kenneth; Heller, Patricia; Kuo, Vince H.; Yerushalmi, Edit – 2001
This paper presents preliminary hypotheses about the relationship between faculty goals for the introductory calculus-based physics course and their beliefs about student learning of problem solving. All faculties have problem solving as a major goal for their courses. There appears to be however, an instructional paradox. When discussing how…
Descriptors: Calculus, Educational Objectives, Higher Education, Interdisciplinary Approach