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Joachim Kranz; Ru¨diger Tiemann – Journal of Chemical Education, 2022
The acquisition of scientific knowledge through problem solving offers the possibility to consider different requirements for inclusive chemistry lessons. The architecture of the "model for inclusive chemistry teaching" (MiC) is designed in a way that teachers can derive concrete, planning-guiding assistance from it. Following this…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Teacher Attitudes
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Wilson, Sarah Beth; Varma-Nelson, Pratibha – Journal of Chemical Education, 2019
The purpose of this parallel convergent mixed methods study was to characterize organic chemistry students' expression of electron-pushing formalism skills who had participated in peer-led team learning (PLTL) and cyber peer-led team learning (cPLTL), a synchronous online version of peer-led team learning (PLTL) workshops. A new electron-pushing…
Descriptors: Science Instruction, Organic Chemistry, College Science, Undergraduate Study
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Wegwerth, Sarah E.; Overby, Jason S.; Douglas, Christopher J.; Winter, Julia E.; Manchester, Gianna J.; Engalan, Joseph – Journal of Chemical Education, 2021
As digital educational media use becomes more widespread, an opportunity exists to develop new methods to present abstract ideas to provide a more meaningful learning experience. Drawing from psychology and dynamic visualization research, new interactive tools can be thoughtfully designed but it is also necessary to establish how these media are…
Descriptors: Science Instruction, College Science, Undergraduate Study, Hands on Science
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Agnello, Armélinda; Vanberg, Stéphane; Tonus, Céline; Boigelot, Bernard; Leduc, Laurent; Damblon, Christian; Focant, Jean-François – Journal of Chemical Education, 2020
Performing the identification of organic chemical compounds from a set of spectroscopic data gives the opportunity to students to develop critical thinking and problem-solving skills. In this context, we developed a student-centered methodology for teaching molecular structural analysis to first-year undergraduate students. This systematic…
Descriptors: Organic Chemistry, Science Instruction, Teaching Methods, Critical Thinking
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Putri, Agnesi Sekarsari; Aznam, Nurfina – Journal of Science Learning, 2019
The 21st -century learning paradigm requires teachers to provide teaching materials that can develop students' thinking skills. This research aims to determine the effect of the web module science integrated local batik potential toward the thinking ability of seventh-grade students of junior high school. The research method used was…
Descriptors: Web Based Instruction, Critical Thinking, Problem Solving, Thinking Skills
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Gross, David; Pietri, Evava S.; Anderson, Gordon; Moyano-Camihort, Karin; Graham, Mark J. – CBE - Life Sciences Education, 2015
Active-learning environments such as those found in a flipped classroom are known to increase student performance, although how these gains are realized over the course of a semester is less well understood. In an upper-level lecture course designed primarily for biochemistry majors, we examine how students attain improved learning outcomes, as…
Descriptors: Outcomes of Education, Science Instruction, Gender Differences, Grade Point Average
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Huang, Kun; Chen, Ching-Huei; Wu, Wen-Shiuan; Chen, Wei-Yu – Educational Technology & Society, 2015
This study investigated how question prompts and feedback influenced knowledge acquisition and cognitive load when learning Newtonian mechanics within a web-based multimedia module. Participants were one hundred eighteen 9th grade students who were randomly assigned to one of four experimental conditions, forming a 2 x 2 factorial design with the…
Descriptors: Prompting, Feedback (Response), Cues, Science Instruction
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Winschel, Grace A.; Everett, Renata K.; Coppola, Brian P.; Shultz, Ginger V. – Journal of Chemical Education, 2015
Cooperative learning was employed as an instructional approach to facilitate student development of spectroscopy problem solving skills. An interactive online environment was used as a framework to structure weekly discussions around spectroscopy problems outside of class. Weekly discussions consisted of modified jigsaw-style problem solving…
Descriptors: Spectroscopy, Science Instruction, Molecular Structure, Cooperative Learning
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Li, Lie-Ming; Li, Bin; Luo, Ying – Physical Review Special Topics - Physics Education Research, 2015
We modified the Just-in-Time Teaching approach and developed a dual safeguard web-based interactive (DGWI) teaching system for an introductory physics course. The system consists of four instructional components that improve student learning by including warm-up assignments and online homework. Student and instructor activities involve activities…
Descriptors: Web Based Instruction, Teaching Methods, Surveys, Teacher Student Relationship
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Lee, Young-Jin – Computers & Education, 2012
This paper presents a computational method that can efficiently estimate the ability of students from the log files of a Web-based learning environment capturing their problem solving processes. The computational method developed in this study approximates the posterior distribution of the student's ability obtained from the conventional Bayes…
Descriptors: Web Based Instruction, Problem Solving, Goodness of Fit, Educational Environment
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Beal, Carole R.; Stevens, Ronald H. – Technology, Instruction, Cognition and Learning, 2011
The goal of the study was to improve high school students' problem solving performance as they worked with IMMEX, an online chemistry problem solving simulation. The intervention included brief text messages added to the simulation to encourage students to reflect on their problem solving strategies and to adopt more effective problem solving…
Descriptors: High School Students, Grade 9, Secondary School Science, Chemistry
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Ellis, Jennifer T. – Journal of Chemical Education, 2013
This study was designed to evaluate the effects of a proprietary software program on students' conceptual and visual understanding of dimensional analysis. The participants in the study were high school general chemistry students enrolled in two public schools with different demographics (School A and School B) in the Chattanooga, Tennessee,…
Descriptors: Science Instruction, Secondary School Science, High Schools, Chemistry
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Schuttlefield, Jennifer D.; Kirk, John; Pienta, Norbert J.; Tang, Hui – Journal of Chemical Education, 2012
Undergraduate students were asked to complete gas law questions using a Web-based tool as a first step in our understanding of the role of cognitive load in chemistry word questions and in helping us assess student problem-solving. Each question contained five different complexity factors, which were randomly assigned by the tool so that a…
Descriptors: Cognitive Processes, Difficulty Level, Short Term Memory, Chemistry
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Evagorou, Maria; Jimenez-Aleixandre, Maria Pilar; Osborne, Jonathan – International Journal of Science Education, 2012
A problem that is still unexplored in the field of socioscientific issues (SSI) and that was explored in this study is how different students decide upon a SSI they are discussing, how their justifications change during the instruction and how they use (or not) the evidence from the learning environment to support their justifications. For the…
Descriptors: Relevance (Education), Evidence, Student Attitudes, Foreign Countries
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
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