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Seyhan, Hatice Güngör – Asia-Pacific Forum on Science Learning and Teaching, 2015
This study was conducted with 98 prospective science teachers, who were composed of 50 prospective teachers that had participated in problem-solving applications and 48 prospective teachers who were taught within a more researcher-oriented teaching method in science laboratories. The first aim of this study was to determine the levels of…
Descriptors: Foreign Countries, Preservice Teachers, Science Teachers, Problem Solving
Hockicko, Peter; Krišták, Luboš; Nemec, Miroslav – European Journal of Engineering Education, 2015
Video analysis, using the program Tracker (Open Source Physics), in the educational process introduces a new creative method of teaching physics and makes natural sciences more interesting for students. This way of exploring the laws of nature can amaze students because this illustrative and interactive educational software inspires them to think…
Descriptors: Video Technology, Teaching Methods, Science Instruction, Physics
Mashood, K. K.; Singh, Vijay A. – Physics Education, 2013
Research suggests that problem-solving skills are transferable across domains. This claim, however, needs further empirical substantiation. We suggest correlation studies as a methodology for making preliminary inferences about transfer. The correlation of the physics performance of students with their performance in chemistry and mathematics in…
Descriptors: Physics, Problem Solving, Science Process Skills, Correlation
Deaton, Cynthia C. M.; Chessin, Debby; Coskey, Shawn – Science Activities: Classroom Projects and Curriculum Ideas, 2012
Build It Up! is an engaging activity that integrates science with mathematics through a process that encourages problem-solving, principles of design, creativity, and developing a sense of one's community. This activity, aimed at third- and fourth-grade students, allows students to use manipulatives to design, construct, and test buildings they…
Descriptors: Science Process Skills, Mathematics, Interdisciplinary Approach, Problem Solving
Love, Edwin; Stelling, Pete – Marketing Education Review, 2012
The reaction that occurs when Mentos are added to bottled soft drinks has become a staple demonstration in earth science courses to explain how volcanoes erupt. This paper presents how this engaging exercise can be used in a marketing research course to provide hands-on experience with problem formation, hypothesis testing, and causal research. A…
Descriptors: Marketing, Research, Comparative Analysis, Experiments
Pratt, Kyle – Tech Directions, 2011
In Mr. Wood's technology class, students learned about many aspects of engineering, including design of a product, teamwork, testing hypotheses, and testing the final product. In this article, the author describes how his class, particularly his team, applied everything they learned about the process to their kayak design challenge using the IDEAL…
Descriptors: Problem Solving, Teamwork, Program Descriptions, Program Design
Czworkowski, John; Seethaler, Sherry – Journal of College Science Teaching, 2013
The California Teach Program at the University of California, San Diego, recruits and prepares undergraduates interested in teaching science and mathematics. One of the products of the program is a set of courses taught by faculty in science disciplines that integrate subject matter with theories of learning and instruction, with the goal of…
Descriptors: Course Content, Undergraduate Students, Science Education, Student Surveys
Broman, Karolina; Bernholt, Sascha; Parchmann, Ilka – Research in Science & Technological Education, 2015
Background: Context-based learning approaches are used to enhance students' interest in, and knowledge about, science. According to different empirical studies, students' interest is improved by applying these more non-conventional approaches, while effects on learning outcomes are less coherent. Hence, further insights are needed into the…
Descriptors: Science Education, Chemistry, Context Effect, Problem Solving
Chen, Chen-Yuan – Educational Research and Reviews, 2013
In recent years, researches had shown that the development of problem solving skill became important for education, and the educational robots are capable for promoting students not only understand the physical and mathematical concepts, but also have active and constructive learning. Meanwhile, the importance of situation in education is rising,…
Descriptors: Problem Solving, Learning Theories, Problem Based Learning, Learning Activities
Hegde, Balasubrahmanya; Meera, B. N. – Physical Review Special Topics - Physics Education Research, 2012
A perceived difficulty is associated with physics problem solving from a learner's viewpoint, arising out of a multitude of reasons. In this paper, we have examined the microstructure of students' thought processes during physics problem solving by combining the analysis of responses to multiple-choice questions and semistructured student…
Descriptors: Student Problems, Physics, Identification, Problem Solving
Saldana, Matt; Rodden, Leslie – Leadership, 2012
In this article, the authors discuss how educators can engage students in real world learning using their academic knowledge and technical skills. They describe how school districts have discovered that the world of robotics can help students use technical skills to solve simulated problems found in the real world, while understanding the…
Descriptors: Teaching Methods, Technology Education, World Problems, Problem Based Learning
Reiser, Brian J.; Berland, Leema K.; Kenyon, Lisa – Science Teacher, 2012
"A Framework for K-12 Science Education" identifies eight science and engineering practices for K-12 classrooms. These practices, along with core ideas and crosscutting concepts, define the nation's learning goals for science. An important advance from earlier standards (AAAS 1993, NRC 1996), these practices are clearly identified "not" as…
Descriptors: Thinking Skills, Elementary School Science, Secondary School Science, Science Education
Toews, Carl – PRIMUS, 2012
Mathematical modeling occupies an unusual space in the undergraduate mathematics curriculum: typically an "advanced" course, it nonetheless has little to do with formal proof, the usual hallmark of advanced mathematics. Mathematics departments are thus forced to decide what role they want the modeling course to play, both as a component of the…
Descriptors: Majors (Students), Mathematics Curriculum, Undergraduate Students, Communication Skills
Ribeiro, Laura; Severo, Milton; Pereira, Margarida; Ferreira, Maria Amélia – International Journal of Science Education, 2015
Background: Scientific excellence is one of the most fundamental underpinnings of medical education and its relevance is unquestionable. To be involved in research activities enhances students' critical thinking and problem-solving capacities, which are mandatory competences for new achievements in patient care and consequently to the improvement…
Descriptors: Science Process Skills, Competence, Medical Education, Medical Students
Garofalo, Joe; Trinter, Christine P. – Mathematics Teacher, 2012
By working through well-designed tasks, students can expand their thinking about mathematical ideas and their approaches to solving mathematical problems. They can come to see the value of looking at tasks from different perspectives and of using different representations. This article discusses four tasks that encourage high school students and…
Descriptors: Mathematics Instruction, Secondary School Mathematics, Mathematical Concepts, Preservice Teacher Education

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