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Mirowsky, Jaime E. – Journal of Chemical Education, 2020
In mid-March 2020, due to the novel coronavirus, my 300-level Environmental Sampling Methods lecture/laboratory course transitioned to distance learning. After this move, the primary focus of the course became the laboratory. To do this, I revised my three remaining laboratory exercises (i.e., water quality, soil quality, environmental microbes)…
Descriptors: Active Learning, Inquiry, Science Experiments, Distance Education
Seyhan, Hatice Güngör – Education Quarterly Reviews, 2022
The aim of the present research is to determine the current situation in the readiness levels of 11th grade high school students for self-directed learning, to examine the effectiveness of laboratory activities developed with with mobile technology integrated into the 5E learning model in various chemistry subjects on students' self-directed…
Descriptors: Educational Technology, Technology Uses in Education, Telecommunications, Handheld Devices
Babincáková, Mária; Bernard, Pawel – Journal of Chemical Education, 2020
The COVID-19 lockout situation affected people all over the world. Despite all of the disadvantages, this situation offered new experiences and perspectives and pushed education advances forward as never before. Something that seemed to be unreal became a worldwide reality within a few days. Instructors of all subjects at all educational levels…
Descriptors: COVID-19, Pandemics, School Closing, Teaching Methods
Cranwell, P. B.; Davis, F. J.; Elliott, J. M.; McKendrick, J. E.; Page, E. M.; Spillman, M. J. – New Directions in the Teaching of Physical Sciences, 2017
The transition from A-level to degree-level practical classes then to a research project, hence from dependent learner to independent researcher, is a hurdle that all students face when studying for a chemistry degree. This can be daunting so any innovations that aid this transition are of great value. At the University of Reading, the first year…
Descriptors: Foreign Countries, College Students, Independent Study, Thinking Skills
Gonza´lez-Go´mez, David; Rodríguez, Diego Airado; Can~ada-Can~ada, Florentina; Jeong, Jin Su – Journal of Chemical Education, 2015
Currently, there are a number of educational applications that allow students to reinforce theoretical or numerical concepts through an interactive way. More precisely, in the field of the analytical chemistry, MATLAB has been widely used to write easy-to-implement code, facilitating complex performances and/or tedious calculations. The main…
Descriptors: Science Education, Secondary School Science, College Science, High School Students
Slabaugh, W. H. – J Chem Educ, 1969
Descriptors: Chemistry, College Science, Honors Curriculum, Independent Study
Peer reviewedWehry, E. L. – Journal of Chemical Education, 1970
Descriptors: Chemical Reactions, Chemistry, College Science, Independent Study
Inner London Education Authority (England). – 1983
This unit is one of 10 first year units produced by the Independent Learning Project for Advanced Chemistry (ILPAC). The unit, which consists of two levels, focuses on the elements and compounds of Group IV (halogens) of the periodic table. Level one deals with the physical and chemical properties of the individual elements. Level two considers…
Descriptors: Chemical Reactions, Chemistry, High Schools, Independent Study
Inner London Education Authority (England). – 1983
This unit on the principles of equilibrium is one of 10 first year units produced by the Independent Learning Project for Advanced Chemistry (ILPAC). The unit consists of two levels. After a treatment of non-mathematical aspects in level one (the idea of a reversible reaction, characteristics of an equilibrium state, the Le Chatelier's principle),…
Descriptors: Chemical Equilibrium, Chemistry, Energy, High Schools
Inner London Education Authority (England). – 1983
The Independent Learning Project for Advanced Chemistry (ILPAC) has produced units of study for students in A-level chemistry. Students completing ILPAC units assume a greater responsibility for their own learning and can work, to some extent, at their own pace. By providing guidance, and detailed solutions to exercises in the units, supported by…
Descriptors: Chemistry, High Schools, Independent Study, Science Education
Inner London Education Authority (England). – 1983
This unit on chemical bonding is one of 10 first year units produced by the Independent Learning Project for Advanced Chemistry (ILPAC). The unit, which consists of two levels, provides an introduction to the main types of chemical bonding and important aspects of structure. The main emphasis is placed on such topics as ionic and covalent bonding,…
Descriptors: Chemical Bonding, Chemistry, High Schools, Independent Study
Inner London Education Authority (England). – 1983
This unit on the gaseous state is one of 10 first year units produced by the Independent Learning Project for Advanced Chemistry (ILPAC). The unit consists of two levels. Level one deals with the distinctive characteristics of gases, then considers the gas laws, in particular the ideal gas equation and its applications. Level two concentrates on…
Descriptors: Chemistry, High Schools, Independent Study, Kinetic Molecular Theory
Inner London Education Authority (England). – 1983
This unit on the mole is one of 10 first year units produced by the Independent Learning Project for Advanced Chemistry (ILPAC). The unit, designed to help students consolidate some of the ideas about the mole learned in previous courses, consists of two levels. The first level focuses on: (1) relative mass; (2) the concept of the mole as the unit…
Descriptors: Chemical Reactions, Chemistry, High Schools, Independent Study
Inner London Education Authority (England). – 1983
This unit on atomic structure is one of 10 first year units produced by the Independent Learning Project for Advanced Chemistry (ILPAC). The unit consists of two levels. Level one focuses on the atomic nucleus. Level two focuses on the arrangement of extranuclear electrons, approaching atomic orbitals through both electron bombardment and spectra.…
Descriptors: Atomic Structure, Chemistry, High Schools, Independent Study
Inner London Education Authority (England). – 1983
This unit is one of 10 first year units produced by the Independent Learning Project for Advanced Chemistry (ILPAC). The unit, which consists of two sections and an appendix, focuses on the elements and compounds of Groups I and II (the s-block) of the periodic table. The groups are treated concurrently to note comparisons between groups and to…
Descriptors: Chemical Industry, Chemical Reactions, Chemistry, High Schools
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