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Nadine El-Awar – ProQuest LLC, 2023
As schools continue to focus on outcome-based instructional practices, less emphasis is placed on the creativity and reasoning necessary for students to become effective critical thinkers. As a result, students struggle to demonstrate creative problem-solving skills in the classroom. This study examines how the facilitation of an instructional…
Descriptors: Grade 7, Middle School Students, Science Instruction, Problem Solving
Pawlak, Alanna; Irving, Paul W.; Caballero, Marcos D. – Physical Review Physics Education Research, 2020
An increasing number of introductory physics courses are seeking to incorporate "authentic practices," and a large area of focus in this trend is the incorporation of computational problems into the curriculum. These problems offer students an opportunity to engage with the programming practices and numerical problem-solving methods used…
Descriptors: Problem Based Learning, Physics, Science Instruction, Programming
Miha Slapnicar; Valerija Tompa; Saša A. Glažar; Iztok Devetak – Journal of Baltic Science Education, 2018
Learning and presenting chemical concepts at the triple level of chemical concepts provides opportunities for the development of misconceptions. The research aimed to identify potential misconceptions of chemical concepts: the states of matter, a pure substance, a mixture, an element, a compound, a physical change, and a chemical reaction at the…
Descriptors: Chemistry, Science Instruction, Scientific Concepts, Learning Processes
Cheruvelil, Kendra Spence; De Palma-Dow, Angela; Smith, Karl A. – American Biology Teacher, 2020
Biology labs often make use of student teams. However, some students resist working in teams, often based on poor experiences. Although instructors sometimes struggle with student teams, effective teams in biology labs are achievable. We increased student learning and satisfaction when working in research teams by (1) including in the syllabus a…
Descriptors: Student Research, Teamwork, Biology, Science Laboratories
Hodgson, Jay Y. S.; Mateer, Scott C. – American Biology Teacher, 2015
The compound microscope is an important tool in biology, and mastering it requires repetition. Unfortunately, introductory activities for students can be formulaic, and consequently, students are often unengaged and fail to develop the required experience to become proficient in microscopy. To engage students, increase repetition, and develop…
Descriptors: Inquiry, Biology, Science Instruction, Teaching Methods
Mudau, Awelani V. – EURASIA Journal of Mathematics, Science & Technology Education, 2016
The purpose of this paper is to present a conceptual framework for diagnosing teaching difficulties of a science topic in the science classroom. The development of the framework is presented as well as descriptions of the features of the framework. How the framework can be used is also elaborated? Furthermore, there is a detailed indication of an…
Descriptors: Classroom Techniques, Models, Teaching Methods, Problem Solving
Kurth, Laurie L.; Kurth, Mark J. – Journal of Chemical Education, 2014
Organic chemistry problems that interrelate and integrate synthesis with spectroscopy are presented. These synthesis-spectroscopy roadmap (SSR) problems uniquely engage second-year undergraduate organic chemistry students in the personal discovery of organic chemistry. SSR problems counter the memorize-or-bust strategy that many students tend to…
Descriptors: Spectroscopy, Synthesis, Organic Chemistry, Integrated Activities
Coppola, Brian P.; Pontrello, Jason K. – Journal of Chemical Education, 2014
Using errors as a method of learning has been made explicit through a two-staged peer review and discussion. During organic chemistry discussion sessions, quizzes are followed by a structured peer review designed to help students identify and discuss student errors. After the face-to-face discussion, a second stage of review involves analyzing and…
Descriptors: Peer Evaluation, Tests, Organic Chemistry, Discussion (Teaching Technique)
Windsor, Sarah A. M.; Rutter, Kerry; McKay, David B.; Meyers, Noel – Journal of Chemical Education, 2014
Future employers increasingly require work-ready graduates. Higher education institutions throughout the world have responded through reforming the curriculum of major strands of study to incorporate graduate attributes. In this case study, we explicitly taught graduate attributes, obliged students to practice their newfound capabilities, gave…
Descriptors: Chemistry, Science Instruction, Education Work Relationship, Job Skills
Schwartz, Daniel L.; Chase, Catherine C.; Bransford, John D. – Educational Psychologist, 2012
Many approaches to instruction focus on helping people learn to recognize "the old in the new"--to turn what would otherwise be novel problems into familiar patterns that can be solved efficiently through the reuse of prior learning. Instruction that leads to efficient transfer is important, but it can also promote what we call "overzealous"…
Descriptors: Transfer of Training, Prior Learning, Teaching Methods, Science Instruction
Jones, Rachael Adams – Science Teacher, 2012
Too often, teachers scratch their heads and ask, "What were my students thinking?" then answer, "I don't want to know." But teachers should want to know, and students should question their own thinking, as well. Critical thinking involves not just problem solving, creativity, analysis, and synthesis but also self-awareness of learning and learning…
Descriptors: Educational Strategies, Learning Strategies, Critical Thinking, Misconceptions
Lankford, Deanna; vom Saal, Fredrick – Journal of College Science Teaching, 2012
In order to be effective competitors in the marketplace, students must be able to think critically, communicate complex ideas through writing, collaborate with peers, and apply their knowledge of biological science to generate solutions for issues facing society. In this paper we examine the nature of the instructional tools, strategies, and…
Descriptors: Majors (Students), Educational Strategies, Cooperation, Biology
Improving Students' Problem Solving in a Virtual Chemistry Simulation through Metacognitive Messages
Beal, Carole R.; Stevens, Ronald H. – Society for Research on Educational Effectiveness, 2011
Recent assessments indicate that American students do not score well on tests of scientific problem solving, relative to students in other nations. IMMEX is a web-based virtual environment that provides students with opportunities to solve science problems by viewing information resources through a suite of menu options, developing a hypothesis…
Descriptors: Feedback (Response), Chemistry, Problem Solving, Educational Technology
Hollenbeck, James E.; Hristova-Hollenbeck, Darina Z. – Online Submission, 2010
This paper describes successful strategies based on research and practical applications used in the Greater Clark School Corporation in bringing many languages and cultures together. The most reasonable and correct course of action for teachers to take is to include the students in all class activities that will be enhanced by cooperative…
Descriptors: Class Activities, Student Attitudes, Cooperative Learning, Teaching Methods
Shen, Chun-Yi; Tsai, Hui-Chun – Journal of Instructional Psychology, 2009
Many researchers investigated the efficacy of using worked examples in classroom instruction and provided evidence in the effectiveness of worked example instruction in mathematics, computer programming, physics, and etc. However, there are limited studies in worked example design. The purpose of this study is to generate the instructional design…
Descriptors: Instructional Design, Research Reports, Literature Reviews, Demonstrations (Educational)

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