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Jenna Koenen; Lars Mariot; Rüdiger Tiemann – European Educational Researcher, 2023
In the future, learning will be essentially characterized by the ability to regulate the learning process and monitor success independently from a teacher. The technical possibilities offer better access to learning contents, precise and more individualized feedback, and learning phases adapted precisely to the needs of the learner in terms of…
Descriptors: Laboratory Manuals, Glossaries, Printed Materials, Multimedia Materials
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Nainggolan, Bajoka; Hutabarat, Wesly; Situmorang, Manihar; Sitorus, Marham – International Journal of Instruction, 2020
The research was carried out through research and development to produce an innovative chemistry laboratory workbook (InoChemLaW) followed by the implementation of the learning package in the teaching of chemistry. The result showed that a standard InoChemLaW has successfully been developed on the topic of Colligative Properties of solutions. The…
Descriptors: Curriculum Development, Educational Innovation, Chemistry, Laboratory Manuals
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Adlim, Muhammad; Nuzulia, Rusydi; Nurmaliah, Cut – Journal of Turkish Science Education, 2018
This study explored the effect of conventional laboratory practical manuals on pre-service teachers' integrated science process skills (ISPS). A validated multiple-choice questionnaire with the ISPS components was used to collect data. No significant difference between pre-service subject-specific teachers' (biology, physics and chemistry) ISPS…
Descriptors: Laboratory Manuals, Preservice Teachers, Science Process Skills, Scores
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Cacciatore, Kristen L. – Journal of Chemical Education, 2014
To support teaching and learning in the advanced placement (AP) chemistry laboratory, the College Board published a laboratory manual, "AP Chemistry Guided-Inquiry Experiments: Applying the Science Practices," in 2013 as part of the redesigned course. This article provides a discussion of the rationale for the existence of the manual as…
Descriptors: Chemistry, Science Instruction, Science Laboratories, Guides
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King, Daniel; Fernandez, Jorge; Nalliah, Ruth – Journal of Chemical Education, 2012
Because of the rapidly changing nature of chemical instrumentation, students must be trained in how to learn and understand new instruments. Toward this end, students are asked to create small instrument manuals, or instrument profiles, for the major pieces of equipment studied during an instrumental analysis course. This writing-intensive process…
Descriptors: Chemistry, College Science, Undergraduate Study, Instrumentation
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Laredo, Thamara – Journal of Chemical Education, 2013
For students who are not science majors, problem-based (PB) laboratories for first-year chemistry provide a more comprehensive experience than conventional expository ones. Implementing PB labs is reasonably easy, as the lab experiments may not need to change; what changes is the way the lab manual is set up and how the actual session is carried…
Descriptors: Laboratory Manuals, Chemistry, Educational Change, Curriculum Development
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van der Kolk, Koos; Beldman, Gerrit; Hartog, Rob; Gruppen, Harry – Journal of Chemical Education, 2012
The design, usage, and evaluation of a Web-based laboratory manual (WebLM) are described. The main aim of the WebLM is to support students while working in the laboratory by providing them with just-in-time information. Design guidelines for this electronic manual were derived from literature on cognitive load and user interface design. The WebLM…
Descriptors: Chemistry, Internet, Student Behavior, Research Tools
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Harrison, Timothy G.; Shallcross, Dudley E.; Heslop, William J.; Eastman, John R.; Baldwin, Anthony J. – Acta Didactica Napocensia, 2009
Pre-laboratory work has been shown to be an effective investment at undergraduate level in chemistry at the University of Bristol. A Dynamic Laboratory Manual (DLM) has been developed to allow undergraduate students to rehearse practicals using virtual experiments, video clips and a range of assessment support. The DLM has been shown to be highly…
Descriptors: Foreign Countries, Undergraduate Study, Chemistry, Science Instruction
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Meenakshi, Viswanathan; Babayan, Yelizaveta; Odom, Teri W. – Journal of Chemical Education, 2007
This paper outlines several benchtop nanoscale patterning experiments that can be incorporated into undergraduate laboratories or advanced high school chemistry curricula. The experiments, supplemented by an online video lab manual, are based on soft lithographic techniques such as replica molding, micro-molding in capillaries, and micro-contact…
Descriptors: Chemistry, Laboratory Manuals, Science Instruction, High School Students
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Barden-Gabbei, Laura M.; Moffitt, Deborah L. – American Biology Teacher, 2006
Chromatography is a process by which mixtures can be separated or substances can be purified. Biological and chemical laboratories use many different types of chromatographic processes. For example, the pharmaceutical industry uses chromatographic techniques to purify drugs, medical labs use them to identify blood components such as cholesterol,…
Descriptors: Inquiry, Laboratory Experiments, Science Activities, Chemistry
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Myers, R. Thomas – Journal of Chemical Education, 1983
Discusses the values presented in various handbooks for the boiling point and heat of vaporization of sulfuric acid, noting discrepencies. Analyzes various approaches to data presentation, discussing the data on sulfuric acid in light of the Trouton constant. Points out the need for a more critical use of tables. (JM)
Descriptors: Acids, Chemical Bonding, Chemical Engineering, Chemistry
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Johnstone, A. H. – Journal of Chemical Education, 1984
Hypothesizes that overloading the working memory may leave no space for thought and organization such that faulty (or even no) learning takes place. Provides examples of this hypothesis and possible remedies. These remedies focus on design of laboratory manuals and equipment and on curriculum content order. (JN)
Descriptors: Chemistry, College Science, Curriculum Design, Higher Education
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Kempa, R. F.; Ward, J. E. – International Journal of Science Education, 1988
Reported are observational limits of detectability for several single stimulus and multi-stimuli observation tasks in secondary level chemistry. Provided are tables of actual results obtained including type of observation, chemical system used, method of determining stimulus magnitude, and observational thresholds. (Author/YP)
Descriptors: Chemistry, Data Interpretation, Experiments, Laboratory Experiments
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Hart, Charles – Journal of Chemical Education, 1989
Discusses the selection of gloves for the chemistry laboratory. Provides checklists for the purposes of the gloves, and the factors including permeation rate, breakthrough time, friction, and cost. Lists eight rules for preventing skin exposure and minimizing area contamination. Lists six references. (YP)
Descriptors: Check Lists, Chemistry, Guides, Higher Education
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Parkinson, Jean; Adendorff, Ralph – Language and Education, 1997
Reports on an ethnographic study of laboratory sessions in the departments of Physics and Chemistry at the University of Natal in Durban, South Africa, with specific focus on the comparison of the function of verbs in three first-year laboratory manuals. Several pedagogical implications are discussed. (JL)
Descriptors: Apartheid, Chemistry, Comparative Analysis, English for Academic Purposes
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