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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
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Kayacan, Kadriye; Sonmez Ektem, Isil – European Journal of Educational Research, 2019
Self-regulation is an active and constructive process in which students regulate and observe their own behaviour, motivations and cognition by setting their own goals during their learning process. In this study, the aim is to investigate the effects of biology laboratory practices that are supported by self-regulated learning strategies on…
Descriptors: Foreign Countries, Biology, Science Instruction, Self Management
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Young, Sherri C.; Colabroy, Keri L.; Baar, Marsha R. – Journal of Chemical Education, 2016
The laboratory is a mainstay in STEM education, promoting the development of critical thinking skills, dexterity, and scientific curiosity. The goals in the laboratory for nonchemistry, prehealth majors, though, could be distinguished from those for chemistry majors. In service courses such as organic chemistry, much laboratory time is often spent…
Descriptors: Organic Chemistry, Science Laboratories, Nonmajors, Undergraduate Students
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Stavrianeas, Stasinos – Advances in Physiology Education, 2009
In a recent influential report by the National Research Council, the role of the laboratory was introduced as follows: "Science courses and the laboratories associated with them should cultivate the ability of students to think independently. They should provide students with exposure to realistic scientific questions and highlight those aspects…
Descriptors: Independent Study, Teacher Role, Physiology, Science Laboratories
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Kember, David – Distance Education, 1982
Describes three methods for offering practical work for external science courses: residential sessions on campus, local centers, and use of home laboratory kits. The advantages and disadvantages of each are discussed and examples of each in operation are given. A 21-item bibliography is provided. (EAO)
Descriptors: Continuing Education Centers, Extension Education, Foreign Countries, Higher Education
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Dreisbach, Joseph H. – Journal of Chemical Education, 1986
Describes a new biochemistry laboratory course offered at the University of Scranton (Pennsylvania) which is designed to promote scientific curiosity and creativity. Uses a problems-oriented approach which provides students with independent learning experiences. Provides a listing of some of the course's laboratory exercises. (TW)
Descriptors: Biochemistry, College Science, Course Descriptions, Experiential Learning